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232 peer-reviewed articles • 18,075 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Structure of native photosystem II assembly intermediate from Chlamydomonas reinhardtii3.04Citations (PDF)
2Investigating the Balance between Structural Conservation and Functional Flexibility in Photosystem I3.214Citations (PDF)
3Structure of plant photosystem I in a native assembly state defines PsaF as a regulatory checkpoint
Nature Plants, 2024, 10, 874-879
8.012Citations (PDF)
4Structure of Photosystem I Supercomplex Isolated from a Chlamydomonas reinhardtii Cytochrome b6f Temperature-Sensitive Mutant
Biomolecules, 2023, 13, 537
3.15Citations (PDF)
5Structure of Chlorella ohadii Photosystem II Reveals Protective Mechanisms against Environmental Stress
Cells, 2023, 12, 1971
3.420Citations (PDF)
6Coupling and Slips in Photosynthetic Reactions—From Femtoseconds to Eons
Plants, 2023, 12, 3878
2.52Citations (PDF)
7The Plasticity of Photosystem I
Plant and Cell Physiology, 2021, 62, 1073-1081
2.545Citations (PDF)
8Excitation energy transfer kinetics of trimeric, monomeric and subunit-depleted Photosystem I from Synechocystis PCC 6803
Biochemical Journal, 2021, 478, 1333-1346
2.319Citations (PDF)
9Structure of plant photosystem I-plastocyanin complex reveals strong hydrophobic interactions
Biochemical Journal, 2021, 478, 2371-2384
2.328Citations (PDF)
10Cryo-EM photosystem I structure reveals adaptation mechanisms to extreme high light in Chlorella ohadii
Nature Plants, 2021, 7, 1314-1322
8.042Citations (PDF)
11Two-Dimensional Electronic Spectroscopy of a Minimal Photosystem I Complex Reveals the Rate of Primary Charge Separation12.138Citations (PDF)
12Dimeric and high-resolution structures of Chlamydomonas Photosystem I from a temperature-sensitive Photosystem II mutant3.118Citations (PDF)
13Temperature Sensitive Photosynthesis: Point Mutated CEF-G, PRK, or PsbO Act as Temperature-Controlled Switches for Essential Photosynthetic Processes3.011Citations (PDF)
14The structure of a triple complex of plant photosystem I with ferredoxin and plastocyanin
Nature Plants, 2020, 6, 1300-1305
8.069Citations (PDF)
15Structure and energy transfer pathways of the Dunaliella Salina photosystem I supercomplex0.639Citations (PDF)
16Structure of a minimal photosystem I from the green alga Dunaliella salina
Nature Plants, 2020, 6, 321-327
8.060Citations (PDF)
17Crystal Structure of Photosystem I Monomer From Synechocystis PCC 68033.042Citations (PDF)
18Structure of the plant photosystem I2.764Citations (PDF)
19Structure and function of wild-type and subunit-depleted photosystem I in Synechocystis0.6149Citations (PDF)
20Structure and function of photosystem I in Cyanidioschyzon merolae
Photosynthesis Research, 2018, 139, 499-508
2.490Citations (PDF)
21Microalgal hydrogen production: prospects of an essential technology for a clean and sustainable energy economy
Photosynthesis Research, 2017, 133, 49-62
2.447Citations (PDF)
22Structure of the plant photosystem I supercomplex at 2.6 Å resolution
Nature Plants, 2017, 3,
8.0268Citations (PDF)
23Temperature-sensitive PSII: a novel approach for sustained photosynthetic hydrogen production
Photosynthesis Research, 2016, 130, 113-121
2.433Citations (PDF)
24Evidence for Deep Acceptor Centers in Plant Photosystem I Crystals
Journal of Physical Chemistry B, 2015, 119, 1374-1379
2.14Citations (PDF)
25Structure and Energy Transfer in Photosystems of Oxygenic Photosynthesis14.1375Citations (PDF)
26Plasmodium falciparumchloroquine resistance transporter is a H+-coupled polyspecific nutrient and drug exporter5.371Citations (PDF)
27ATP Synthase14.1360Citations (PDF)
28Evolution of photosystem I and the control of global enthalpy in an oxidizing world
Photosynthesis Research, 2013, 116, 145-151
2.431Citations (PDF)
29The evolution of photosystem I in light of phage-encoded reaction centres2.621Citations (PDF)
30Large Photovoltages Generated by Plant Photosystem I Crystals
Advanced Materials, 2012, 24, 2988-2991
17.732Citations (PDF)
31Temperature-sensitive PSII and promiscuous PSI as a possible solution for sustainable photosynthetic hydrogen production0.615Citations (PDF)
32Structure and Flexibility of the C-Ring in the Electromotor of Rotary FoF1-ATPase of Pea Chloroplasts
PLoS ONE, 2012, 7, e43045
1.531Citations (PDF)
33Photosystems and global effects of oxygenic photosynthesis0.697Citations (PDF)
34Combinatorial Method for Overexpression of Membrane Proteins in Escherichia coli
Journal of Biological Chemistry, 2010, 285, 23548-23556
1.355Citations (PDF)
35Structure Determination and Improved Model of Plant Photosystem I
Journal of Biological Chemistry, 2010, 285, 3478-3486
1.3256Citations (PDF)
36Plant Photosystem I – The Most Efficient Nano-Photochemical Machine0.670Citations (PDF)
37Plant Photosystem I Design in the Light of Evolution
Structure, 2009, 17, 637-650
2.5105Citations (PDF)
38Photosystem I gene cassettes are present in marine virus genomes
Nature, 2009, 461, 258-262
31.3208Citations (PDF)
39The little we know on the structure and machinery of V-ATPase
Journal of Experimental Biology, 2009, 212, 1604-1610
1.450Citations (PDF)
40Functional organization of a plant Photosystem I: Evolution of a highly efficient photochemical machine3.959Citations (PDF)
41Picosecond Fluorescence of Intact and Dissolved PSI-LHCI Crystals
Biophysical Journal, 2008, 95, 5851-5861
1.595Citations (PDF)
42Vacuolar H+-ATPase—an enzyme for all seasons1.764Citations (PDF)
43The structure of a plant photosystem I supercomplex at 3.4 Å resolution
Nature, 2007, 447, 58-63
31.3473Citations (PDF)
44Structural and functional features of yeast V-ATPase subunit C0.617Citations (PDF)
45STRUCTURE AND FUNCTION OF PHOTOSYSTEMS I AND II14.3971Citations (PDF)
46Cloning and expression of MDR transporters from marine bivalves, and their potential use in biomonitoring
Marine Environmental Research, 2006, 62, S118-S121
2.48Citations (PDF)
47The Emerging Structure of Vacuolar ATPases
Physiology, 2006, 21, 317-325
2.652Citations (PDF)
48The NRAMP family of metal-ion transporters2.5490Citations (PDF)
49Gradual hearing loss with bilateral labyrinthine hemorrhage in chronic myelogenous leukemia
Neurology, 2006, 67, 177-178
0.713Citations (PDF)
50The Structure of Plant Photosystem I – The First Membrane Supercomplex Solved by X‐ray Crystallography
FASEB Journal, 2006, 20,
2.30Citations (PDF)
51The structure of photosystem I and evolution of photosynthesis
BioEssays, 2005, 27, 914-922
1.794Citations (PDF)
52Novel Properties of a Mouse γ-Aminobutyric Acid Transporter (GAT4)
Journal of Membrane Biology, 2005, 203, 65-82
1.638Citations (PDF)
53Structure of Plant Photosystem I Revealed by Theoretical Modeling
Journal of Biological Chemistry, 2005, 280, 33627-33636
1.348Citations (PDF)
54Zinc inhibition of  -aminobutyric acid transporter 4 (GAT4) reveals a link between excitatory and inhibitory neurotransmission5.381Citations (PDF)
55Solving the structure of plant photosystem I—biochemistry is vital2.221Citations (PDF)
56Comparison of the Light-Harvesting Networks of Plant and Cyanobacterial Photosystem I
Biophysical Journal, 2005, 89, 1630-1642
1.581Citations (PDF)
57The Mutation F227I Increases the Coupling of Metal Ion Transport in DCT1
Journal of Biological Chemistry, 2004, 279, 53056-53061
1.331Citations (PDF)
58The complex architecture of oxygenic photosynthesis68.4624Citations (PDF)
59Crystal structure of yeast V‐ATPase subunit C reveals its stator function
EMBO Reports, 2004, 5, 1148-1152
3.5133Citations (PDF)
60Light-Harvesting Features Revealed by the Structure of Plant Photosystem I
Photosynthesis Research, 2004, 81, 239-250
2.450Citations (PDF)
61Expression, crystallization and phasing of vacuolar H+-ATPase subunit C (Vma5p) ofSaccharomyces cerevisiae3.26Citations (PDF)
62Evolution of photosystem I - from symmetry through pseudosymmetry to asymmetry
FEBS Letters, 2004, 564, 274-280
1.8169Citations (PDF)
63Title is missing!2.182Citations (PDF)
64Crystallization and initial X-ray diffraction studies of higher plant photosystem I3.223Citations (PDF)
65Crystal structure of plant photosystem I
Nature, 2003, 426, 630-635
31.3837Citations (PDF)
66Effect of sodium lithium and proton concentrations on the electrophysiological properties of the four mouse GABA transporters expressed in Xenopus oocytes
Neurochemistry International, 2003, 43, 431-443
3.419Citations (PDF)
67Biochemical support for the V-ATPase rotary mechanism: antibody against HA-tagged Vma7p or Vma16p but not Vma10p inhibits activity
Journal of Experimental Biology, 2003, 206, 3227-3237
1.416Citations (PDF)
68The first external loop of the metal ion transporter DCT1 is involved in metal ion binding and specificity5.340Citations (PDF)
69The Anticonvulsant Valproate Increases the Turnover Rate of γ-Aminobutyric Acid Transporters
Journal of Biological Chemistry, 2003, 278, 17716-17726
1.332Citations (PDF)
70Overexpression, purification, and site-directed spin labeling of the Nramp metal transporter from Mycobacterium leprae5.319Citations (PDF)
71Stabilization of iron–sulfur cluster FX by intra-subunit interactions unraveled by suppressor and second site-directed mutations in PsaB of Photosystem I0.610Citations (PDF)
72Differential effect of pH on sodium binding by the various GABA transporters expressed inXenopusoocytes
FEBS Letters, 2002, 527, 125-132
1.810Citations (PDF)
73Presteady-State and Steady-State Kinetics and Turnover Rate of the Mouse g-Aminobutyric Acid Transporter (mGAT3)
Journal of Membrane Biology, 2002, 190, 57-73
1.634Citations (PDF)
74The significance of molecular slips in transport systems68.483Citations (PDF)
75Title is missing!
Photosynthesis Research, 2002, 73, 193-206
2.450Citations (PDF)
76Features of V-ATPases that distinguish them from F-ATPases
FEBS Letters, 2001, 504, 223-228
1.832Citations (PDF)
77The Family of SMF Metal Ion Transporters in Yeast Cells
Journal of Biological Chemistry, 2000, 275, 33388-33394
1.3137Citations (PDF)
78Altered Distribution of the Yeast Plasma Membrane H+-ATPase as a Feature of Vacuolar H+-ATPase Null Mutants
Journal of Biological Chemistry, 2000, 275, 40088-40095
1.335Citations (PDF)
79Cloning and expression of cDNAs encoding plant V-ATPase subunits in the corresponding yeast null mutants0.613Citations (PDF)
80Vacuolar and Plasma Membrane Proton-Adenosinetriphosphatases
Physiological Reviews, 1999, 79, 361-385
20.2410Citations (PDF)
81A Novel Family of Yeast Chaperons Involved in the Distribution of V-ATPase and Other Membrane Proteins
Journal of Biological Chemistry, 1999, 274, 26885-26893
1.387Citations (PDF)
82Yeast SMF1 Mediates H+-coupled Iron Uptake with Concomitant Uncoupled Cation Currents
Journal of Biological Chemistry, 1999, 274, 35089-35094
1.3143Citations (PDF)
83Metal ion transporters and homeostasis
EMBO Journal, 1999, 18, 4361-4371
5.2291Citations (PDF)
84Action of bicyclic isoxazole GABA analogues on GABA transporters and its relation to anticonvulsant activity3.340Citations (PDF)
85Rapid transbilayer movement of fluorescent phospholipid analogues in the plasma membrane of endocytosis-deficient yeast cells does not require the Drs2 protein
FEBS Journal, 1999, 263, 254-264
0.253Citations (PDF)
86Developmental expression of the neurotransmitter transporter NTT4
1999, 55, 24-35
10Citations (PDF)
87Developmental expression of the neurotransmitter transporter GAT32.026Citations (PDF)
88The Family of Na+/Cl− Neurotransmitter Transporters
Journal of Neurochemistry, 1998, 71, 1785-1803
2.7331Citations (PDF)
89Negative Control of Heavy Metal Uptake by the Saccharomyces cerevisiae BSD2 Gene
Journal of Biological Chemistry, 1997, 272, 11763-11769
1.3169Citations (PDF)
90Vacuolar H+-ATPase in ocular ciliary epithelium5.342Citations (PDF)
91A yeast manganese transporter related to the macrophage protein involved in conferring resistance to mycobacteria.5.3340Citations (PDF)
92Vacuolar H+-ATPase0.10Citations (PDF)
93Vacuolar H+-ATPase: From mammals to yeast and back
Experientia, 1996, 52, 1101-1110
0.339Citations (PDF)
94P840‐Reaction Centers from Chlorobium tepidum–Quinone Analysis and Functional Reconstitution into Lipid Vesicles1.935Citations (PDF)
95Developmental Expression of the Glycine Transporters GLYT1 and GLYT2 in Mouse Brain
Journal of Neurochemistry, 1996, 67, 336-344
2.7106Citations (PDF)
96Developmental Expression of GABA Transporters GAT1 and GAT4 Suggests Involvement in Brain Maturation
Journal of Neurochemistry, 1996, 67, 857-867
2.756Citations (PDF)
97The carboxyl-terminal region of the spinach PsaD subunit contains information for its specific assembly into plant thylakoids
Photosynthesis Research, 1995, 44, 157-164
2.45Citations (PDF)
98A bovine cDNA and a yeast gene (VMA8) encoding the subunit D of the vacuolar H(+)-ATPase.5.382Citations (PDF)
99The SaccharomycescerevisiaeVMA10 Is an Intron-containing Gene Encoding a Novel 13-kDa Subunit of Vacuolar H+-ATPase
Journal of Biological Chemistry, 1995, 270, 13726-13732
1.391Citations (PDF)
100Cloning and Expression of a Yeast Gene Encoding a Protein with ATPase Activity and High Identity to the Subunit 4 of the Human 26 S Protease
Journal of Biological Chemistry, 1995, 270, 9178-9184
1.319Citations (PDF)
101Short External Loops as Potential Substrate Binding Site of γ-Aminobutyric Acid Transporters
Journal of Biological Chemistry, 1995, 270, 28712-28715
1.353Citations (PDF)
102Stable photobleaching of P840 in Chlorobium reaction center preparations: Presence of the 42-kDa bacteriochlorophyll a protein and a 17-kDa polypeptide
Biochemistry, 1995, 34, 9617-9624
1.866Citations (PDF)
103Cyanidium caldarium genes encoding subunits A and B of V-ATPase0.66Citations (PDF)
104Cellular expression of glycine transporter 2 messenger RNA exclusively in rat hindbrain and spinal cord
Neuroscience, 1995, 64, 525-535
1.887Citations (PDF)
105Localization of Glycine Neurotransmitter Transporter (GLYT2) Reveals Correlation with the Distribution of Glycine Receptor
Journal of Neurochemistry, 1995, 64, 1026-1033
2.7142Citations (PDF)
106A transcription unit for the Rieske FeS-protein and cytochrome b in Chlorobium limicola
Photosynthesis Research, 1994, 39, 163-174
2.452Citations (PDF)
107Mutagenesis of the b′-subunit of Synechocystis sp. PCC 6803 ATP-synthase0.612Citations (PDF)
108Functional analysis of conserved cysteine residues in the catalytic subunit of the yeast vacuolar H+-ATPase1.534Citations (PDF)
109Purification of the synaptic vesicle-binding protein physophilin. Identification as 39-kDa subunit of the vacuolar H(+)-ATPase.
Journal of Biological Chemistry, 1994, 269, 28329-28334
1.325Citations (PDF)
110Features of vacuolar H(+)-ATPase revealed by yeast suppressor mutants
Journal of Biological Chemistry, 1994, 269, 26479-26485
1.327Citations (PDF)
111A novel accessory subunit for vacuolar H(+)-ATPase from chromaffin granules.
Journal of Biological Chemistry, 1994, 269, 24102-24106
1.3117Citations (PDF)
112The Saccharomyces cerevisiae VMA7 gene encodes a 14-kDa subunit of the vacuolar H(+)-ATPase catalytic sector.
Journal of Biological Chemistry, 1994, 269, 24150-24155
1.361Citations (PDF)
113Identification of the subunit carrying FeS-centers A and B in the P840-reaction center preparation of Chlorobium limicola
Photosynthesis Research, 1993, 38, 111-114
2.425Citations (PDF)
114Presynaptic events involved in neurotransmission1.732Citations (PDF)
115The atp2 operon of the green bacterium Chlorobium limicola3.335Citations (PDF)
116A rat brain cDNA encoding the neurotransmitter transporter with an unusual structure
FEBS Letters, 1993, 315, 114-118
1.873Citations (PDF)
117The nuclear-encoded polypeptide Cfo-II from spinach is a real, ninth subunit of chloroplast ATP synthase
FEBS Letters, 1993, 326, 192-198
1.852Citations (PDF)
118Cloning and expression of a spinal cord- and brain-specific glycine transporter with novel structural features.
Journal of Biological Chemistry, 1993, 268, 22802-22808
1.3261Citations (PDF)
119Molecular characterization of four pharmacologically distinct gamma-aminobutyric acid transporters in mouse brain [corrected].
Journal of Biological Chemistry, 1993, 268, 2106-2112
1.3397Citations (PDF)
120Vacuolar ATPase mutants accumulate precursor proteins in a pre-vacuolar compartment
Journal of Biological Chemistry, 1993, 268, 10564-10572
1.323Citations (PDF)
121Photosynthetic reaction center genes in green sulfur bacteria and in photosystem 1 are related.5.3207Citations (PDF)
122A family of genes encoding neurotransmitter transporters.5.3118Citations (PDF)
123Organellar proton-ATPases3.786Citations (PDF)
124Structure, Function, and Mutational Analysis of V-ATPases2.68Citations (PDF)
125Cloning and expression of the bovine cardiac sodium-calcium exchanger2.284Citations (PDF)
126Evolution of organellar proton-ATPases0.6183Citations (PDF)
127The Photosystem I-like P840-reaction center of Green S-bacteria is a homodimer0.646Citations (PDF)
128Cloning and expression of a glycine transporter from mouse brain
FEBS Letters, 1992, 305, 110-114
1.8180Citations (PDF)
129Cloning and expression of a cDNA encoding the transporter of taurine and beta-alanine in mouse brain.5.3277Citations (PDF)
130Structural conservation and functional diversity of V-ATPases2.186Citations (PDF)
131An era ends
Trends in Cell Biology, 1992, 2, 30-31
14.20Citations (PDF)
132Evolution of organellar proton-ATPases
BBA - Proteins and Proteomics, 1992, 1100, 109-124
2.519Citations (PDF)
133The photosystem I-like P840-reaction center of Green S-bacteria is a homodimer0.67Citations (PDF)
134Cloning and mutational analysis of the gene encoding subunit C of yeast vacuolar H(+)-ATPase.1.372Citations (PDF)
135Expression of a mouse brain cDNA encoding novel gamma-aminobutyric acid transporter.
Journal of Biological Chemistry, 1992, 267, 17491-17493
1.3197Citations (PDF)
136Compartment acidification is required for efficient sorting of proteins to the vacuole in Saccharomyces cerevisiae.
Journal of Biological Chemistry, 1992, 267, 3416-3422
1.373Citations (PDF)
137Assembly of Two Subunits of the Cyanobacterial Photosystem I on the n-Side of Thylakoid Membranes
Plant Physiology, 1992, 99, 239-246
4.031Citations (PDF)
138Vanadate-sensitive ATPase from chromaffin granule membranes formed a phosphoenzyme intermediate and was activated by phosphatidylserine2.235Citations (PDF)
139Structure and pharmacology of the proton-ATPases11.1130Citations (PDF)
140Mutational analysis of yeast vacuolar H(+)-ATPase.5.3157Citations (PDF)
141The atp1 and atp2 operons of the cyanobacterium Synechocystis sp. PCC 6803
Plant Molecular Biology, 1991, 17, 641-652
2.160Citations (PDF)
142Molecular cloning of the genes encoding two chaperone proteins of the cyanobacterium Synechocystis sp. PCC 6803.1.398Citations (PDF)
143Molecular cloning and targeted mutagenesis of the gene psaF encoding subunit III of photosystem I from the cyanobacterium Synechocystis sp. PCC 6803.
Journal of Biological Chemistry, 1991, 266, 20146-20151
1.3122Citations (PDF)
144Disruption of genes encoding subunits of yeast vacuolar H(+)-ATPase causes conditional lethality.5.3323Citations (PDF)
145Cloning of the human brain GABA transporter
FEBS Letters, 1990, 269, 181-184
1.8169Citations (PDF)
146Molecular cloning of cDNA encoding the C subunit of H(+)-ATPase from bovine chromaffin granules
Journal of Biological Chemistry, 1990, 265, 20390-20393
1.362Citations (PDF)
147A third ADP/ATP translocator gene in yeast.
Journal of Biological Chemistry, 1990, 265, 12711-12716
1.3192Citations (PDF)
148Distribution of Thylakoid Proteins between Stromal and Granal Lamellae in Spirodela
Plant Physiology, 1989, 91, 629-635
4.050Citations (PDF)
149Structure, molecular genetics, and evolution of vacuolar H+-ATPases2.1147Citations (PDF)
150The evolution of H+-ATPases7.4330Citations (PDF)
151Cloning and nucleotide sequence analysis of genes coding for the major chlorophyll-binding protein of the moss Physcomitrella patens and the halotolerant alga Dunaliella salina
Gene, 1989, 76, 299-312
1.654Citations (PDF)
152Lysosomal H+-translocating ATPase has a similar subunit structure to chromaffin granule H+-ATPase complex1.588Citations (PDF)
153The progenitor of ATP synthases was closely related to the current vacuolar H+-ATPase
FEBS Letters, 1989, 247, 147-153
1.8163Citations (PDF)
154Reply from Nelson7.41Citations (PDF)
155Structure and targeted mutagenesis of the gene encoding 8-kDa subunit of photosystem I from the cyanobacterium Synechocystis sp. PCC 6803
Journal of Biological Chemistry, 1989, 264, 18374-18380
1.3107Citations (PDF)
156Insertional inactivation of the gene encoding subunit II of photosystem I from the cyanobacterium Synechocystis sp. PCC 6803
Journal of Biological Chemistry, 1989, 264, 18381-18385
1.393Citations (PDF)
157H+-translocating ATPase in Golgi apparatus
Journal of Biological Chemistry, 1989, 264, 18445-18450
1.3147Citations (PDF)
158Expression of the Four Subunits of the Torpedo Californica Nicotinic Acetylcholine Receptor in Saccharomyces cerevisiae
Journal of Biological Chemistry, 1989, 264, 15022-15027
1.319Citations (PDF)
159Correspondence of Minor Subunits of Plant Mitochondrial F1ATPase to F1FOATPase Subunits of Other Organisms
Journal of Biological Chemistry, 1989, 264, 3183-3186
1.319Citations (PDF)
160Cold Inactivation of Vacuolar Proton-ATPases
Journal of Biological Chemistry, 1989, 264, 3577-3582
1.3192Citations (PDF)
161A Conserved Gene Encoding the 57-kDa Subunit of the Yeast Vacuolar H+-ATPase
Journal of Biological Chemistry, 1989, 264, 1775-1778
1.3139Citations (PDF)
162Photosystem I complex
Photosynthesis Research, 1988, 19, 73-84
2.424Citations (PDF)
163Inhibition of vacuolar H+ -ATPases by fusidic acid and suramin
FEBS Letters, 1988, 234, 383-386
1.835Citations (PDF)
164Structure, Function, and Evolution of Proton-ATPases
Plant Physiology, 1988, 86, 1-3
4.0100Citations (PDF)
165cDNA sequence encoding the 16-kDa proteolipid of chromaffin granules implies gene duplication in the evolution of H+-ATPases.5.3294Citations (PDF)
166Purification and properties of a vanadate- and N-ethylmaleimide-sensitive ATPase from chromaffin granule membranes.
Journal of Biological Chemistry, 1988, 263, 8521-8527
1.385Citations (PDF)
167Cloning of cDNA encoding a 32-kDa protein. An accessory polypeptide of the H+-ATPase from chromaffin granules.
Journal of Biological Chemistry, 1988, 263, 17638-17642
1.387Citations (PDF)
168Molecular cloning and sequencing of the psaD gene encoding subunit II of photosystem I from the cyanobacterium, Synechocystis sp. PCC 6803.
Journal of Biological Chemistry, 1988, 263, 17658-17662
1.359Citations (PDF)
169Polypeptide-dependent protein kinase from bakers' yeast.5.345Citations (PDF)
170Internal anion binding site and membrane potential dominate the regulation of proton pumping by the chromaffin granule ATPase1.524Citations (PDF)
171The vacuolar proton-ATPase of eukaryotic cells
BioEssays, 1987, 7, 251-254
1.734Citations (PDF)
172Nucleotide binding sites and chemical modification of the chromaffin granule proton ATPase.
Journal of Biological Chemistry, 1987, 262, 14723-14729
1.396Citations (PDF)
173The purified ATPase from chromaffin granule membranes is an anion-dependent proton pump.
Journal of Biological Chemistry, 1987, 262, 9175-9180
1.3159Citations (PDF)
174The 5′-flanking sequences of human globin genes contribute to tissue specific expression1.523Citations (PDF)
175Cyanobacterial and chloroplast F 1 -ATPases: cross-reconstitution of photophosphorylation and subunit immunological relationships0.69Citations (PDF)
176Isolation of cDNA clones for fourteen nuclear-encoded thylakoid membrane proteins0.590Citations (PDF)
177Photosystem I reaction centers from maize bundle-sheath and mesophyll chloroplasts lack subunit III
FEBS Journal, 1986, 159, 157-161
0.221Citations (PDF)
178Purification of N-ethylmaleimide-sensitive ATPase from chromaffin granule membranes.
Journal of Biological Chemistry, 1986, 261, 9222-9227
1.396Citations (PDF)
179Polypeptides of the oxygen-evolving photosystem II complex. Immunological detection and biogenesis.
Journal of Biological Chemistry, 1986, 261, 5296-5300
1.336Citations (PDF)
180Genes and transcripts for the ATP synthase CF0 subunits I and II from spinach thylakoid membranes0.593Citations (PDF)
181Biogenesis of photosystem I reaction center during greening of oat, bean and spinach leaves
Plant Molecular Biology, 1985, 4, 377-384
2.168Citations (PDF)
182Photosystem I reaction center from Mastigocladus laminosus. Correlation between reduction state of the iron-sulfur centers and the triplet formation mechanisms0.611Citations (PDF)
183Purification and composition of photosystem I reaction center of Prochloron sp., an oxygen-evolving prokaryote containing chlorophyll b
FEBS Letters, 1985, 191, 29-33
1.827Citations (PDF)
184New molecular aspects of energy-transducing protein complexes2.117Citations (PDF)
185An immunological method for detecting gene expression in yeast colonies.5.333Citations (PDF)
186Genes and transcripts for the P700 chlorophylla apoprotein and subunit 2 of the photosystem I reaction center complex from spinach thylakoid membranes
Plant Molecular Biology, 1983, 2, 95-107
2.1106Citations (PDF)
187Differential Changes in the Amount of Protein Complexes in the Chloroplast Membrane during Senescence of Oat and Bean Leaves
Plant Physiology, 1983, 73, 507-510
4.063Citations (PDF)
188Photosystem I reaction center from the thermophilic cyanobacterium Mastigocladus laminosus5.383Citations (PDF)
189Genes and transcripts for the polypeptides of the cytochrome b6/f complex from spinach thylakoid membranes
EMBO Journal, 1983, 2, 979-986
5.2109Citations (PDF)
190Yeast mitochondrial outer membrane specifically binds cytoplasmically-synthesized precursors of mitochondrial proteins
EMBO Journal, 1983, 2, 1113-1118
5.2143Citations (PDF)
191ATP-driven proton fluxes across membranes of secretory organelles.
Journal of Biological Chemistry, 1983, 258, 11684-11688
1.383Citations (PDF)
192A novel ATPase in the chromaffin granule membrane.
Journal of Biological Chemistry, 1983, 258, 2892-2898
1.3109Citations (PDF)
193Proteolipid of adenosinetriphosphatase from yeast mitochondria forms proton-selective channels in planar lipid bilayers
Biochemistry, 1982, 21, 5787-5794
1.855Citations (PDF)
194Properties of a novel ATPase enzyme in chromaffin granules2.126Citations (PDF)
195Photosystem I reaction centers fromChlamydomonas and higher plant chloroplasts2.137Citations (PDF)
196Localization of genes for coupling factor subunits on the spinach plastid chromosome
Current Genetics, 1981, 4, 109-120
1.0176Citations (PDF)
197Purification and immunological properties of proton-ATPase complexes from yeast and rat liver mitochondria.
Journal of Biological Chemistry, 1981, 256, 9224-9228
1.3123Citations (PDF)
198Purification properties and biogenesis of Chlamydomonas reinhardii photosystem I reaction center.
Journal of Biological Chemistry, 1981, 256, 11624-11628
1.388Citations (PDF)
199Biosynthesis and assembly of the proton-translocating adenosine triphosphatase complex from chloroplasts5.3124Citations (PDF)
200Reconstitution of purified acetylcholine receptors with functional ion channels in planar lipid bilayers.5.3142Citations (PDF)
201Cytoplasmically made subunits of yeast mitochondrial F1-ATPase and cytochrome c oxidase are synthesized as individual precursors, not as polyproteins.5.3111Citations (PDF)
202Reconstitution of Photosynthetic Energy Conservation. II. Photophosphorylation in Liposomes Containing Photosystem-I Reaction Center and Chloroplast Coupling-Factor Complex
FEBS Journal, 1980, 111, 535-543
0.274Citations (PDF)
203A Light-dependent Protein Kinase Activity of Chloroplasts
Plant Physiology, 1980, 65, 730-734
4.061Citations (PDF)
204PROTON CHANNELS IN CHLOROPLAST MEMBRANES2.626Citations (PDF)
205Energy-dependent processing of cytoplasmically made precursors to mitochondrial proteins.5.3175Citations (PDF)
206Specific immunoprecipitation of ATPase fromEscherichia Coli
FEBS Letters, 1978, 91, 85-89
1.84Citations (PDF)
207Purification and properties of adenosine triphosphatase fromChromatium vinosumchromatophores
FEBS Letters, 1978, 85, 219-223
1.815Citations (PDF)
208Isolation of a chloroplast N,N'-dicyclohexylcarbodiimide-binding proteolipid, active in proton translocation.5.3193Citations (PDF)
209On the mutual orientation of pigments in Photosystem I particles from green plants0.649Citations (PDF)
210Subunit Structure of Chloroplast Photosystem I Reaction Center
Journal of Biological Chemistry, 1977, 252, 4564-4569
1.3286Citations (PDF)
211The role of δ subunit in the coupling activity of chloroplast coupling factor 1
FEBS Letters, 1976, 70, 249-253
1.847Citations (PDF)
212Salt Inactivation as a Mechanistic Probe of Membrane-Bound Chloroplast Coupling Factor 1
FEBS Journal, 1976, 69, 203-208
0.212Citations (PDF)
213Structure and function of chloroplast ATPase0.1208Citations (PDF)
214Preparation and Properties of Chloroplasts Depleted of Chloroplast Coupling Factor 1 by Sodium Bromide Treatment
Plant Physiology, 1975, 55, 282-287
4.092Citations (PDF)
215A COMBINED PROCEDURE FOR PREPARATION OP PLASTOCYANIN, FERREDOXIN AND CF10.510Citations (PDF)
216Laser Raman spectroscopy as a mechanistic probe of the phosphate transfer from adenosine triphosphate in a model system
Biochemistry, 1975, 14, 1532-1535
1.89Citations (PDF)
217Differentiation between mutants of Escherichia coli K12 defective in oxidative phosphorylation0.639Citations (PDF)
218Purification and properties of the photosystem I reaction center from chloroplasts.
Journal of Biological Chemistry, 1975, 250, 2783-2788
1.3246Citations (PDF)
219Partial resolution of the enzymes catalyzing photophosphorylation. XV. Approaches to the active site of coupling factor I.
Journal of Biological Chemistry, 1975, 250, 1041-1047
1.3218Citations (PDF)
220Purification and Properties of Mg2+-Ca2+ Adenosinetriphosphatase from Escherichia coli5.394Citations (PDF)
221Phosphate transfer from adenosine triphosphate in a model system
Biochemistry, 1973, 12, 563-566
1.822Citations (PDF)
222Partial Resolution of the Enzymes Catalyzing Photophosphorylation
Journal of Biological Chemistry, 1973, 248, 2049-2055
1.3196Citations (PDF)
223Partial Resolution of the Enzymes Catalyzing Photophosphorylation
Journal of Biological Chemistry, 1972, 247, 7657-7662
1.3250Citations (PDF)
224Partial Resolution of the Enzymes Catalyzing Photophosphorylation
Journal of Biological Chemistry, 1972, 247, 6506-6510
1.3141Citations (PDF)
225Partial Resolution of the Enzymes Catalyzing Photophosphorylation
Journal of Biological Chemistry, 1972, 247, 3848-3853
1.381Citations (PDF)
226Isolation of a Cytochrome b6-f Particle from Chloroplasts
Journal of Biological Chemistry, 1972, 247, 1817-1824
1.3123Citations (PDF)
227Photophosphorylation in Digitonin Subchloroplast Particles1.3133Citations (PDF)
228Antimycin A as an uncoupler and electron transport inhibitor in photoreactions of chloroplasts0.634Citations (PDF)
229Interaction between ferredoxin and ferredoxin-NADP reductase from chloroplasts1.542Citations (PDF)
230The structure of plant photosystem I super-complex at 2.8 Å resolution
ELife, 0, 4,
1.0208Citations (PDF)
231Crystal structures of virus-like photosystem I complexes from the mesophilic cyanobacterium Synechocystis PCC 6803
ELife, 0, 3,
1.082Citations (PDF)
232Structure of Dunaliella photosystem II reveals conformational flexibility of stacked and unstacked supercomplexes
ELife, 0, 12,
1.012Citations (PDF)