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Mark S. Sharpley
Mark S. Sharpley
Verified email at ucla.edu
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Cited by
Cited by
Year
Heteroplasmy of mouse mtDNA is genetically unstable and results in altered behavior and cognition
MS Sharpley, C Marciniak, K Eckel-Mahan, M McManus, M Crimi, ...
Cell 151 (2), 333-343, 2012
3932012
Interaction of the mitochondria-targeted antioxidant MitoQ with phospholipid bilayers and ubiquinone oxidoreductases
AM James, MS Sharpley, ARB Manas, FE Frerman, J Hirst, RAJ Smith, ...
Journal of Biological Chemistry 282 (20), 14708-14718, 2007
2682007
Nuclear localization of mitochondrial TCA cycle enzymes as a critical step in mammalian zygotic genome activation
R Nagaraj, MS Sharpley, F Chi, D Braas, Y Zhou, R Kim, AT Clark, ...
Cell 168 (1-2), 210-223. e11, 2017
2512017
Mouse mtDNA mutant model of Leber hereditary optic neuropathy
CS Lin, MS Sharpley, W Fan, KG Waymire, AA Sadun, V Carelli, ...
Proceedings of the National Academy of Sciences 109 (49), 20065-20070, 2012
2292012
Interactions between phospholipids and NADH: ubiquinone oxidoreductase (complex I) from bovine mitochondria
MS Sharpley, RJ Shannon, F Draghi, J Hirst
Biochemistry 45 (1), 241-248, 2006
2282006
Extracellular matrix remodeling regulates glucose metabolism through TXNIP destabilization
WJ Sullivan, PJ Mullen, EW Schmid, A Flores, M Momcilovic, MS Sharpley, ...
Cell 175 (1), 117-132. e21, 2018
2012018
Mitochondrial DNA variant associated with Leber hereditary optic neuropathy and high-altitude Tibetans
F Ji, MS Sharpley, O Derbeneva, LS Alves, P Qian, Y Wang, D Chalkia, ...
Proceedings of the National Academy of Sciences 109 (19), 7391-7396, 2012
1512012
Reduction of hydrophilic ubiquinones by the flavin in mitochondrial NADH: ubiquinone oxidoreductase (Complex I) and production of reactive oxygen species
MS King, MS Sharpley, J Hirst
Biochemistry 48 (9), 2053-2062, 2009
1152009
Glycolysis-independent glucose metabolism distinguishes TE from ICM fate during mammalian embryogenesis
F Chi, MS Sharpley, R Nagaraj, SS Roy, U Banerjee
Developmental cell 53 (1), 9-26. e4, 2020
1112020
The inhibition of mitochondrial complex I (NADH: ubiquinone oxidoreductase) by Zn2+
MS Sharpley, J Hirst
Journal of Biological Chemistry 281 (46), 34803-34809, 2006
892006
Metabolic plasticity drives development during mammalian embryogenesis
MS Sharpley, F Chi, J Ten Hoeve, U Banerjee
Developmental Cell 56 (16), 2329-2347. e6, 2021
322021
Paths and pathways that generate cell-type heterogeneity and developmental progression in hematopoiesis
JR Girard, LM Goins, DM Vuu, MS Sharpley, CM Spratford, SR Mantri, ...
Elife 10, 2021
252021
Cardiomyocytes disrupt pyrimidine biosynthesis in nonmyocytes to regulate heart repair
S Li, T Yokota, P Wang, J Ten Hoeve, F Ma, TM Le, ER Abt, Y Zhou, R Wu, ...
The Journal of clinical investigation 132 (2), 2022
202022
The Metabolic Landscape of Thymic T Cell Development In Vivo and In Vitro
V Sun, M Sharpley, KE Kaczor-Urbanowicz, P Chang, A Montel-Hagen, ...
Frontiers in Immunology, 2993, 2021
172021
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