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187 peer-reviewed articles • 49,231 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Aged and BRCA -Mutated Stromal Cells Drive Epithelial Cell Transformation
Cancer Discovery, 2025, 15, 1203-1224
25.18Citations (PDF)
2ERK pathway reactivation prevents anthrax toxin lethality in mice
Nature Microbiology, 2025, 10, 1145-1155
16.05Citations (PDF)
3ATP depletion in anthrax edema toxin pathogenesis
PLoS Pathogens, 2025, 21, e1013017
4.45Citations (PDF)
4Dietary methionine restriction started late in life promotes healthy aging in a sex-specific manner
Science Advances, 2025, 11,
10.911Citations (PDF)
5Inhibition of virally induced TFEB proteasomal degradation as a host-centric therapeutic approach for coronaviral infection
Science Advances, 2025, 11,
10.97Citations (PDF)
6Abstract 1567 Acetyl-CoA metabolism drives the secretory phenotype in oncogene-induced senescence2.21Citations (PDF)
7Mitophagy mitigates mitochondrial fatty acid β-oxidation deficient cardiomyopathy13.712Citations (PDF)
8DNA damage response pathway regulates Nrf2 in response to oxidative stress
Science Advances, 2025, 11,
10.920Citations (PDF)
9Metabolic Regulation of Cardiovascular Aging2.92Citations (PDF)
10Endothelial Heterogeneity in the Response to Autophagy Drives Small Vessel Muscularization in Pulmonary Hypertension
Circulation, 2024, 150, 466-487
18.033Citations (PDF)
11The AKT2/SIRT5/TFEB pathway as a potential therapeutic target in non-neovascular AMD13.729Citations (PDF)
12Anthrax lethal toxin exerts potent metabolic inhibition of the cardiovascular system
MBio, 2024, 15,
4.45Citations (PDF)
13ERK and c-Myc signaling in host-derived tumor endothelial cells is essential for solid tumor growth7.536Citations (PDF)
14Abstract 2101: Modulating Alzheimer's Disease by mTORC1 inhibition to augment lysosomal activity2.20Citations (PDF)
15Speaking the Same Language: Team Science Approaches in Aging Research for Integrating Basic and Translational Science With Clinical Practice0.14Citations (PDF)
16Lysosomes in senescence and aging
EMBO Reports, 2023, 24,
5.2134Citations (PDF)
17Mitohormesis
Cell Metabolism, 2023, 35, 1872-1886
25.299Citations (PDF)
18Post-GWAS functional analysis identifies CUX1 as a regulator of p16INK4a and cellular senescence
Nature Aging, 2022, 2, 140-154
14.522Citations (PDF)
19Cardiovascular disease and the biology of aging3.853Citations (PDF)
20Local hyperthermia therapy: a novel strategy turning white fat brown
2022, 1, 78-80
2Citations (PDF)
21Progerin modulates the IGF-1R/Akt signaling involved in aging
Science Advances, 2022, 8,
10.928Citations (PDF)
22A potent tumor-selective ERK pathway inactivator with high therapeutic index
PNAS Nexus, 2022, 1,
3.17Citations (PDF)
23A phosphoinositide signalling pathway mediates rapid lysosomal repair
Nature, 2022, 609, 815-821
37.9358Citations (PDF)
24A Fbxo48 inhibitor prevents pAMPKα degradation and ameliorates insulin resistance
Nature Chemical Biology, 2021, 17, 298-306
11.835Citations (PDF)
25The secretome mouse provides a genetic platform to delineate tissue-specific in vivo secretion7.551Citations (PDF)
26Transcriptional and Proteomic Characterization of Telomere-Induced Senescence in a Human Alveolar Epithelial Cell Line2.415Citations (PDF)
27A high-throughput screen for TMPRSS2 expression identifies FDA-approved compounds that can limit SARS-CoV-2 entry13.776Citations (PDF)
28Forestalling age-impaired angiogenesis and blood flow by targeting NOX: Interplay of NOX1, IL-6, and SASP in propagating cell senescence7.535Citations (PDF)
29The role of mitochondria in cellular senescence
FASEB Journal, 2021, 35,
0.657Citations (PDF)
30The mitochondria regulation of stem cell aging4.720Citations (PDF)
31Prioritized Research for the Prevention, Treatment, and Reversal of Chronic Disease: Recommendations From the Lifestyle Medicine Research Summit2.484Citations (PDF)
32Sequential CRISPR-Based Screens Identify LITAF and CDIP1 as the Bacillus cereus Hemolysin BL Toxin Host Receptors
Cell Host and Microbe, 2020, 28, 402-410.e5
15.129Citations (PDF)
33Kelch-like protein 42 is a profibrotic ubiquitin E3 ligase involved in systemic sclerosis
Journal of Biological Chemistry, 2020, 295, 4171-4180
2.223Citations (PDF)
34Metabolic Regulation of Cell Fate and Function
Trends in Cell Biology, 2020, 30, 201-212
12.0103Citations (PDF)
35Mitochondria as intracellular signaling platforms in health and disease5.4110Citations (PDF)
36TFEB-driven lysosomal biogenesis is pivotal for PGC1α-dependent renal stress resistance
JCI Insight, 2020, 4,
5.457Citations (PDF)
37EMRE is essential for mitochondrial calcium uniporter activity in a mouse model
JCI Insight, 2020, 5,
5.463Citations (PDF)
38Acetylation-mediated remodeling of the nucleolus regulates cellular acetyl-CoA responses
PLoS Biology, 2020, 18, e3000981
5.035Citations (PDF)
39Identification of the transcription factor Miz1 as an essential regulator of diphthamide biosynthesis using a CRISPR-mediated genome-wide screen
PLoS Genetics, 2020, 16, e1009068
3.24Citations (PDF)
40Assessment of mitophagy in mt‐Keima Drosophila revealed an essential role of the PINK1‐Parkin pathway in mitophagy induction in vivo
FASEB Journal, 2019, 33, 9742-9751
0.687Citations (PDF)
41T cell stemness and dysfunction in tumors are triggered by a common mechanism
Science, 2019, 363,
36.3521Citations (PDF)
42AMPK-mediated activation of MCU stimulates mitochondrial Ca2+ entry to promote mitotic progression
Nature Cell Biology, 2019, 21, 476-486
16.3148Citations (PDF)
43Cyclophilin D-mediated regulation of the permeability transition pore is altered in mice lacking the mitochondrial calcium uniporter
Cardiovascular Research, 2019, 115, 385-394
5.583Citations (PDF)
44Endothelial to Mesenchymal Transition in Cardiovascular Disease2.3606Citations (PDF)
45Macrophage fatty acid oxidation inhibits atherosclerosis progression3.865Citations (PDF)
46Ablation of PPARγ in subcutaneous fat exacerbates age‐associated obesity and metabolic decline
Aging Cell, 2018, 17,
6.843Citations (PDF)
47A Metabolic Basis for Endothelial-to-Mesenchymal Transition
Molecular Cell, 2018, 69, 689-698.e7
13.3253Citations (PDF)
48Mitochondrial Ca2+ Uptake is Tightly Regulated by the C-Terminal End of EMRE3.80Citations (PDF)
49Cyclophilin D-mediated regulation of the permeability transition pore is altered in mice lacking the mitochondrial calcium uniporter3.81Citations (PDF)
50Sonic hedgehog signaling regulates the mammalian cardiac regenerative response3.832Citations (PDF)
51Autophagy and unfolded protein response (UPR) regulate mammary gland involution by restraining apoptosis-driven irreversible changes6.233Citations (PDF)
52Sensitive Measurement of Mitophagy by Flow Cytometry Using the pH-dependent Fluorescent Reporter mt-Keima0.321Citations (PDF)
53TGF-β receptor 1 regulates progenitors that promote browning of white fat
Molecular Metabolism, 2018, 16, 160-171
5.951Citations (PDF)
54The role of mitochondria in aging
Journal of Clinical Investigation, 2018, 128, 3662-3670
10.6350Citations (PDF)
55Hepatic Gi signaling regulates whole-body glucose homeostasis10.643Citations (PDF)
56Sensitive Measurement of Mitophagy by Flow Cytometry Using the pH-dependent Fluorescent Reporter mt-Keima0.36Citations (PDF)
57The impact of aging on cardiac extracellular matrix
GeroScience, 2017, 39, 7-18
4.6218Citations (PDF)
58Key proteins and pathways that regulate lifespan
Journal of Biological Chemistry, 2017, 292, 6452-6460
2.2205Citations (PDF)
59The Intersection of Aging Biology and the Pathobiology of Lung Diseases: A Joint NHLBI/NIA Workshop3.467Citations (PDF)
60The role of ZKSCAN3 in the transcriptional regulation of autophagy
Autophagy, 2017, 13, 1235-1238
13.732Citations (PDF)
61Autophagy as a regulator of cardiovascular redox homeostasis3.764Citations (PDF)
62Reciprocal regulation of acetyl-CoA carboxylase 1 and senescence in human fibroblasts involves oxidant mediated p38 MAPK activation2.825Citations (PDF)
63Synergistic treatment of TS
Oncotarget, 2017, 8, 64653-64654
0.30Citations (PDF)
64The Mitochondrial Basis of Aging
Molecular Cell, 2016, 61, 654-666
13.31,382Citations (PDF)
65Strategic Positioning and Biased Activity of the Mitochondrial Calcium Uniporter in Cardiac Muscle
Journal of Biological Chemistry, 2016, 291, 23343-23362
2.262Citations (PDF)
66MICU1 Serves as a Molecular Gatekeeper to Prevent In Vivo Mitochondrial Calcium Overload
Cell Reports, 2016, 16, 1561-1573
6.3221Citations (PDF)
67Intact endothelial autophagy is required to maintain vascular lipid homeostasis
Aging Cell, 2016, 15, 187-191
6.8127Citations (PDF)
68Solid tumor therapy by selectively targeting stromal endothelial cells7.543Citations (PDF)
69Mitochondrial Membrane Potential Identifies Cells with Enhanced Stemness for Cellular Therapy
Cell Metabolism, 2016, 23, 63-76
25.2383Citations (PDF)
70Fatty acid oxidation in macrophage polarization
Nature Immunology, 2016, 17, 216-217
23.5364Citations (PDF)
71The Ins and Outs of Mitochondrial Calcium
Circulation Research, 2015, 116, 1810-1819
13.1281Citations (PDF)
72The metabolic regulation of aging
Nature Medicine, 2015, 21, 1416-1423
33.0312Citations (PDF)
73Measuring In Vivo Mitophagy
Molecular Cell, 2015, 60, 685-696
13.3658Citations (PDF)
74The Essential Autophagy Gene ATG7 Modulates Organ Fibrosis via Regulation of Endothelial-to-Mesenchymal Transition
Journal of Biological Chemistry, 2015, 290, 2547-2559
2.2112Citations (PDF)
75The Role of Autophagy in Vascular Biology
Circulation Research, 2015, 116, 480-488
13.1239Citations (PDF)
76MitoRCA-seq reveals unbalanced cytocine to thymine transition in Polg mutant mice3.423Citations (PDF)
77Assessment of cardiac function in mice lacking the mitochondrial calcium uniporter3.8118Citations (PDF)
78Celastrol Protects against Obesity and Metabolic Dysfunction through Activation of a HSF1-PGC1α Transcriptional Axis
Cell Metabolism, 2015, 22, 695-708
25.2329Citations (PDF)
79Autophagy-Dependent Metabolic Reprogramming Sensitizes TSC2-Deficient Cells to the Antimetabolite 6-Aminonicotinamide
Molecular Cancer Research, 2014, 12, 48-57
3.156Citations (PDF)
80Mitohormesis
Cell Metabolism, 2014, 19, 757-766
25.2615Citations (PDF)
81Cyclin B1/Cdk1 Coordinates Mitochondrial Respiration for Cell-Cycle G2/M Progression
Developmental Cell, 2014, 29, 217-232
7.7370Citations (PDF)
82Cellular mechanisms and physiological consequences of redox-dependent signalling78.11,975Citations (PDF)
83Aging: The Blurry Line between Life and Death
Current Biology, 2014, 24, R610-R613
3.63Citations (PDF)
84Cardiac Aging and Rejuvenation — A Sense of Humors?34.517Citations (PDF)
85Metabolic regulation of the cell cycle3.966Citations (PDF)
86Key tissue targets responsible for anthrax-toxin-induced lethality
Nature, 2013, 501, 63-68
37.9112Citations (PDF)
87Autophagy regulates endothelial cell processing, maturation and secretion of von Willebrand factor
Nature Medicine, 2013, 19, 1281-1287
33.0249Citations (PDF)
88The physiological role of mitochondrial calcium revealed by mice lacking the mitochondrial calcium uniporter
Nature Cell Biology, 2013, 15, 1464-1472
16.3653Citations (PDF)
89Metabolic Regulation by the Mitochondrial Phosphatase PTPMT1 Is Required for Hematopoietic Stem Cell Differentiation
Cell Stem Cell, 2013, 12, 62-74
16.4326Citations (PDF)
90Inhibiting glycolytic metabolism enhances CD8+ T cell memory and antitumor function
Journal of Clinical Investigation, 2013, 123, 4479-4488
10.6915Citations (PDF)
91The NAD-dependent deacetylase SIRT2 is required for programmed necrosis
Nature, 2012, 492, 199-204
37.9133Citations (PDF)
92Mitochondrial Metabolism, Sirtuins, and Aging7.2210Citations (PDF)
93Guidelines for the use and interpretation of assays for monitoring autophagy
Autophagy, 2012, 8, 445-544
13.73,259Citations (PDF)
94Relief with Rapamycin: mTOR Inhibition Protects against Radiation-Induced Mucositis
Cell Stem Cell, 2012, 11, 287-288
16.411Citations (PDF)
95Signal Transduction by Mitochondrial Oxidants
Journal of Biological Chemistry, 2012, 287, 4434-4440
2.2365Citations (PDF)
96TGF‐β/Smad3 signaling inhibition protects from obesity and diabetes through modulation of adipocyte biology
FASEB Journal, 2012, 26,
0.60Citations (PDF)
97Disruption of Mitochondrial Phosphatase Ptpmt1 Induces Bioenergetic Stress and Differentiation Block in Hematopoietic Stem Cells
Blood, 2012, 120, 857-857
4.80Citations (PDF)
98Protection from Obesity and Diabetes by Blockade of TGF-β/Smad3 Signaling
Cell Metabolism, 2011, 14, 67-79
25.2687Citations (PDF)
99Signal transduction by reactive oxygen species
Journal of Cell Biology, 2011, 194, 7-15
5.42,160Citations (PDF)
100Wnt Signaling Regulates Hepatic Metabolism5.4178Citations (PDF)
101Oxidants, metabolism, and stem cell biology3.724Citations (PDF)
102Caenorhabditis elegans UCP4 Protein Controls Complex II-mediated Oxidative Phosphorylation through Succinate Transport
Journal of Biological Chemistry, 2011, 286, 37712-37720
2.247Citations (PDF)
103Tumorigenesis in tuberous sclerosis complex is autophagy and p62/sequestosome 1 (SQSTM1)-dependent7.5180Citations (PDF)
104A Critical Role of Mitochondrial Phosphatase Ptpmt1 in Embryogenesis Reveals a Mitochondrial Metabolic Stress-Induced Differentiation Checkpoint in Embryonic Stem Cells
Molecular and Cellular Biology, 2011, 31, 4902-4916
2.547Citations (PDF)
10553BP1 Inhibits Homologous Recombination in Brca1-Deficient Cells by Blocking Resection of DNA Breaks
Cell, 2010, 141, 243-254
33.61,611Citations (PDF)
106Xanthine Oxidoreductase Depletion Induces Renal Interstitial Fibrosis Through Aberrant Lipid and Purine Accumulation in Renal Tubules
Hypertension, 2009, 54, 868-876
6.669Citations (PDF)
107Regulation of Autophagy by the p300 Acetyltransferase
Journal of Biological Chemistry, 2009, 284, 6322-6328
2.2257Citations (PDF)
108Bmi1 regulates mitochondrial function and the DNA damage response pathway
Nature, 2009, 459, 387-392
37.9450Citations (PDF)
109Recent progress in the biology and physiology of sirtuins
Nature, 2009, 460, 587-591
37.91,443Citations (PDF)
110A Selective Requirement for 53BP1 in the Biological Response to Genomic Instability Induced by Brca1 Deficiency
Molecular Cell, 2009, 35, 534-541
13.3283Citations (PDF)
111The ClinSeq Project: Piloting large-scale genome sequencing for research in genomic medicine
Genome Research, 2009, 19, 1665-1674
4.6247Citations (PDF)
112Free radicals and senescence
Experimental Cell Research, 2008, 314, 1918-1922
3.1298Citations (PDF)
113Redox-based regulation of signal transduction: Principles, pitfalls, and promises3.7738Citations (PDF)
114A role for the NAD-dependent deacetylase Sirt1 in the regulation of autophagy7.51,437Citations (PDF)
115Interplay among BRCA1, SIRT1, and Survivin during BRCA1-Associated Tumorigenesis
Molecular Cell, 2008, 32, 11-20
13.3354Citations (PDF)
116A role for the mitochondrial deacetylase Sirt3 in regulating energy homeostasis7.51,247Citations (PDF)
117SIRT1 Contributes in Part to Cisplatin Resistance in Cancer Cells by Altering Mitochondrial Metabolism
Molecular Cancer Research, 2008, 6, 1499-1506
3.1109Citations (PDF)
118Mitochondrial Metabolism Modulates Differentiation and Teratoma Formation Capacity in Mouse Embryonic Stem Cells
Journal of Biological Chemistry, 2008, 283, 28506-28512
2.2188Citations (PDF)
119Xanthine Oxidoreductase Is a Regulator of Adipogenesis and PPARγ Activity
Cell Metabolism, 2007, 5, 115-128
25.2189Citations (PDF)
120The common biology of cancer and ageing
Nature, 2007, 448, 767-774
37.9967Citations (PDF)
121Intracellular Redox Regulation by the Family of Small GTPases6.367Citations (PDF)
122The Mammalian Target of Rapamycin (mTOR) Pathway Regulates Mitochondrial Oxygen Consumption and Oxidative Capacity
Journal of Biological Chemistry, 2006, 281, 27643-27652
2.2556Citations (PDF)
123The Mammalian Longevity-associated Gene Product p66 Regulates Mitochondrial Metabolism
Journal of Biological Chemistry, 2006, 281, 10555-10560
2.2139Citations (PDF)
124Interactions between E2F1 and SirT1 regulate apoptotic response to DNA damage
Nature Cell Biology, 2006, 8, 1025-1031
16.3425Citations (PDF)
125Time, tumours and telomeres
EMBO Reports, 2006, 7, 479-483
5.22Citations (PDF)
126Human mesenchymal stem cells exert potent antitumorigenic effects in a model of Kaposi's sarcoma
Journal of Experimental Medicine, 2006, 203, 1235-1247
9.3735Citations (PDF)
127Mitochondrial signaling, TOR, and life span2.198Citations (PDF)
128Endothelial Progenitor Cells
Annual Review of Medicine, 2005, 56, 79-101
18.7344Citations (PDF)
129Radical medicine: treating ageing to cure disease78.1235Citations (PDF)
130Effect of a Histone Deacetylase Inhibitor on Human Cardiac Mass2.15Citations (PDF)
131Phosphorylation of p66Shc and forkhead proteins mediates Aβ toxicity
Journal of Cell Biology, 2005, 169, 331-339
5.498Citations (PDF)
132Granulocyte Colony-Stimulating Factor Mobilizes Functional Endothelial Progenitor Cells in Patients With Coronary Artery Disease6.0242Citations (PDF)
133Redox-Dependent Transcriptional Regulation
Circulation Research, 2005, 97, 967-974
13.1420Citations (PDF)
134SIRT1 Functionally Interacts with the Metabolic Regulator and Transcriptional Coactivator PGC-1α
Journal of Biological Chemistry, 2005, 280, 16456-16460
2.2992Citations (PDF)
135Mitochondria, Oxidants, and Aging
Cell, 2005, 120, 483-495
33.64,118Citations (PDF)
136Xanthine Oxidoreductase Is an Endogenous Regulator of Cyclooxygenase-2
Circulation Research, 2004, 95, 1118-1124
13.198Citations (PDF)
137Circulating Endothelial Progenitor Cells, Vascular Function, and Cardiovascular Risk34.53,343Citations (PDF)
138Oxidant signals and oxidative stress3.91,311Citations (PDF)
139Uncoupling the agony from ecstasy
Nature, 2003, 426, 403-404
37.9134Citations (PDF)
140Identification of a Specific Molecular Repressor of the Peroxisome Proliferator-activated Receptor γ Coactivator-1 α (PGC-1α)
Journal of Biological Chemistry, 2002, 277, 50991-50995
2.2137Citations (PDF)
141Regulation of Cellular Oncosis by Uncoupling Protein 2
Journal of Biological Chemistry, 2002, 277, 27385-27392
2.2105Citations (PDF)
142Redox Regulation of Cdc25C
Journal of Biological Chemistry, 2002, 277, 20535-20540
2.2203Citations (PDF)
143A role for mitochondria as potential regulators of cellular life span2.175Citations (PDF)
144Regulation of the Werner helicase through a direct interaction with a subunit of protein kinase A
FEBS Letters, 2002, 521, 170-174
2.712Citations (PDF)
145Reactive Oxygen Species and Signal Transduction
IUBMB Life, 2001, 52, 3-6
2.9273Citations (PDF)
146Ras Regulates NFAT3 Activity in Cardiac Myocytes
Journal of Biological Chemistry, 2001, 276, 3524-3530
2.288Citations (PDF)
147Oxidants, oxidative stress and the biology of ageing
Nature, 2000, 408, 239-247
37.98,672Citations (PDF)
148Role for Mitochondrial Oxidants as Regulators of Cellular Metabolism
Molecular and Cellular Biology, 2000, 20, 7311-7318
2.5373Citations (PDF)
149Homocysteine accelerates endothelial cell senescence
FEBS Letters, 2000, 470, 20-24
2.7190Citations (PDF)
150Redox-dependent signal transduction
FEBS Letters, 2000, 476, 52-54
2.7510Citations (PDF)
151Identification of Oxidant-Sensitive Proteins:  TNF-α Induces Protein Glutathiolation
Biochemistry, 2000, 39, 11121-11128
2.4215Citations (PDF)
152The Actin Cytoskeleton Reorganization Induced by Rac1 Requires the Production of Superoxide6.390Citations (PDF)
153Ras Proteins Induce Senescence by Altering the Intracellular Levels of Reactive Oxygen Species
Journal of Biological Chemistry, 1999, 274, 7936-7940
2.2615Citations (PDF)
154Relationship of the C242Tp22phox gene polymorphism to angiographic coronary artery disease and endothelial function0.560Citations (PDF)
155VEGF Stimulates MAPK through a Pathway That Is Unique for Receptor Tyrosine Kinases2.1105Citations (PDF)
156Regulation of Endothelial Cell Adherens Junctions by a Ras-Dependent Signal Transduction Pathway2.15Citations (PDF)
157Signal transduction by reactive oxygen species in non-phagocytic cells
Journal of Leukocyte Biology, 1999, 65, 337-340
2.9240Citations (PDF)
158A requirement for rac1 in the PDGF‐stimulated migration of fibroblasts and vascular smooth cells
IUBMB Life, 1998, 45, 279-287
2.925Citations (PDF)
159Oxygen radicals and signaling3.91,078Citations (PDF)
160Bcl-2 Regulates Nonapoptotic Signal Transduction: Inhibition of c-Jun N-terminal Kinase (JNK) Activation by IL-1β and Hydrogen Peroxide1.323Citations (PDF)
161Expression of Id1 Results in Apoptosis of Cardiac Myocytes through a Redox-dependent Mechanism
Journal of Biological Chemistry, 1998, 273, 25922-25928
2.256Citations (PDF)
162Rac1 is required for cell proliferation and G2/M progression
Biochemical Journal, 1997, 326, 17-20
3.876Citations (PDF)
163Regulation of endothelial cell adhesion by profilin
Current Biology, 1997, 7, 24-30
3.644Citations (PDF)
164Inhibition of Vascular Smooth Muscle Cell Proliferation and Neointimal Accumulation by Adenovirus-Mediated Gene Transfer of Cytosine Deaminase
Circulation, 1997, 96, 621-627
18.049Citations (PDF)
165Adenovirus-mediated overexpression of profilin increases binding of endothelial cells to fibronectin2.30Citations (PDF)
166The immediate early gene products of human cytomegalovirus increase vascular smooth muscle cell migration2.31Citations (PDF)
167Superoxide-mediated Actin Response in Post-hypoxic Endothelial Cells
Journal of Biological Chemistry, 1996, 271, 26863-26867
2.292Citations (PDF)
168Reactive oxygen species are downstream mediators of p53-dependent apoptosis.7.5555Citations (PDF)
169Regulation of reactive-oxygen-species generation in fibroblasts by Rac 1
Biochemical Journal, 1996, 318, 379-382
3.8493Citations (PDF)
170Association between Prior Cytomegalovirus Infection and the Risk of Restenosis after Coronary Atherectomy34.5452Citations (PDF)
171Human cytomegalovirus increases modified low density lipoprotein uptake and scavenger receptor mRNA expression in vascular smooth muscle cells.10.682Citations (PDF)
172968-29 Cytomegalovirus Infection Increases Neointimal Formation in the Rat Model of Balloon Injury2.39Citations (PDF)
173Dynamic actin structures stabilized by profilin.7.5124Citations (PDF)
174The basis of molecular strategies for treating coronary restenosis after angioplasty2.381Citations (PDF)
175ras Proteins Regulate Multiple Mitogenic Pathways in A10 Vascular Smooth Muscle Cells2.125Citations (PDF)
176In vivo suppression of injury-induced vascular smooth muscle cell accumulation using adenovirus-mediated transfer of the herpes simplex virus thymidine kinase gene.7.5180Citations (PDF)
177Detection and modulation in vivo of helix-loop-helix protein-protein interactions.2.258Citations (PDF)
178Karyoplasmic interaction selection strategy: a general strategy to detect protein-protein interactions in mammalian cells.7.594Citations (PDF)
179Biological and biochemical properties of human rasH genes mutated at codon 61
Cell, 1986, 44, 167-176
33.6546Citations (PDF)
180Monoclonal antibody specific for an activated RAS protein.7.527Citations (PDF)
181An artefact explains the apparent association of the transferrin receptor with a ras gene product
Nature, 1984, 311, 675-675
37.90Citations (PDF)
182Activation of ras genes in human tumors does not affect localization, modification, or nucleotide binding properties of p21
Cell, 1984, 37, 151-158
33.6149Citations (PDF)
183Detection of a molecular complex between ras proteins and transferrin receptor
Cell, 1984, 36, 1115-1121
33.638Citations (PDF)
184Fertilization in the sea urchin arbacia punctulata inhibited by fluorescein dyes: Evidence for a plasma membrane mechanism
Gamete Research, 1981, 4, 219-229
2.05Citations (PDF)
185Membrane potential, pH and the activation of surf clam oocytes
Gamete Research, 1980, 3, 299-304
2.042Citations (PDF)
186Fueling the fire: metabolic dysfunction and senescence as drivers of lung aging and disease
Physiological Reviews, 0, 106, 1535-1591
25.42Citations (PDF)
187Vascular Aging
Circulation, 0, 153, 1421-1435
18.00Citations (PDF)