Anand Venkataraman, Ph.D.

Affiliations: 
2009 Oregon State University, Corvallis, OR 
Area:
Cell Biology, Molecular Biology, Environmental Sciences
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"Anand Venkataraman"
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Parents

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Mark E. Leid grad student 2009 Oregon State
 (In vitro and in vivo approaches for functional characterization of the scaffold protein, GRASP.)
John B. Hogenesch post-doc 2010-2013 University of Pennsylvania Perelman School of Medicine
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Publications

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Foteinou PT, Venkataraman A, Francey LJ, et al. (2019) Reply to Furlan et al.: The role of SIRT1 in cell autonomous clock function. Proceedings of the National Academy of Sciences of the United States of America
Foteinou PT, Venkataraman A, Francey LJ, et al. (2018) Computational and experimental insights into the circadian effects of SIRT1. Proceedings of the National Academy of Sciences of the United States of America
Krishnaiah SY, Wu G, Altman BJ, et al. (2017) Clock Regulation of Metabolites Reveals Coupling between Transcription and Metabolism. Cell Metabolism. 25: 1206
Krishnaiah SY, Wu G, Altman BJ, et al. (2017) Clock Regulation of Metabolites Reveals Coupling between Transcription and Metabolism. Cell Metabolism. 25: 961-974.e4
Sengupta A, Krishnaiah SY, Rhoades S, et al. (2016) Deciphering the Duality of Clock and Growth Metabolism in a Cell Autonomous System Using NMR Profiling of the Secretome. Metabolites. 6
Altman BJ, Hsieh AL, Sengupta A, et al. (2015) MYC Disrupts the Circadian Clock and Metabolism in Cancer Cells. Cell Metabolism. 22: 1009-19
Anafi RC, Lee Y, Sato TK, et al. (2014) Machine learning helps identify CHRONO as a circadian clock component. Plos Biology. 12: e1001840
Venkataraman A, Coleman DJ, Nevrivy DJ, et al. (2014) Grp1-associated scaffold protein regulates skin homeostasis after ultraviolet irradiation. Photochemical & Photobiological Sciences : Official Journal of the European Photochemistry Association and the European Society For Photobiology. 13: 531-40
Venkataraman A, Nevrivy DJ, Filtz TM, et al. (2012) Grp1-associated scaffold protein (GRASP) is a regulator of the ADP ribosylation factor 6 (Arf6)-dependent membrane trafficking pathway. Cell Biology International. 36: 1115-28
Bajaj G, Rodriguez-Proteau R, Venkataraman A, et al. (2010) MDR1 function is sensitive to the phosphorylation state of myosin regulatory light chain. Biochemical and Biophysical Research Communications. 398: 7-12
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