Arvin Gouw, Ph.D.

Affiliations: 
Medical Education University of Pennsylvania, Philadelphia, PA, United States 
Area:
Molecular Cell Biology
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"Arvin Gouw"

Parents

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Richard Ivry research assistant HWNI, UC Berkeley (Neurotree)
Chi Van Dang grad student Johns Hopkins Medical School
Lance J. Kriegsfeld grad student UC Berkeley (Neurotree)
Mu-Ming Poo grad student HWNI, UC Berkeley
Paola  S. Timiras grad student UC Berkeley (Neurotree)
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Publications

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Gouw AM, Kumar V, Resendez A, et al. (2022) Azapodophyllotoxin Causes Lymphoma and Kidney Cancer Regression by Disrupting Tubulin and Monoglycerols. Acs Medicinal Chemistry Letters. 13: 615-622
Dhanasekaran R, Deutzmann A, Mahauad-Fernandez WD, et al. (2021) The MYC oncogene - the grand orchestrator of cancer growth and immune evasion. Nature Reviews. Clinical Oncology
Alvina FB, Gouw AM, Le A. (2021) Cancer Stem Cell Metabolism. Advances in Experimental Medicine and Biology. 1311: 161-172
Gouw AM, Margulis K, Liu NS, et al. (2019) The MYC Oncogene Cooperates with Sterol-Regulated Element-Binding Protein to Regulate Lipogenesis Essential for Neoplastic Growth. Cell Metabolism
Miess H, Dankworth B, Gouw AM, et al. (2018) The glutathione redox system is essential to prevent ferroptosis caused by impaired lipid metabolism in clear cell renal cell carcinoma. Oncogene
Altman BJ, Hsieh AL, Gouw AM, et al. (2017) Correspondence: Oncogenic MYC persistently upregulates the molecular clock component REV-ERBα. Nature Communications. 8: 14862
Swaminathan S, Mosley A, Horton C, et al. (2017) Abstract 2943: MYC functions as a master switch for natural killer cell-mediated immune surveillance of lymphoid malignancies Cancer Research. 77: 2943-2943
Gouw AM, Toal GG, Felsher DW. (2016) Metabolic vulnerabilities of MYC-induced cancer. Oncotarget
Altman BJ, Hsieh AL, Sengupta A, et al. (2015) MYC Disrupts the Circadian Clock and Metabolism in Cancer Cells. Cell Metabolism. 22: 1009-19
Shroff EH, Eberlin LS, Dang VM, et al. (2015) MYC oncogene overexpression drives renal cell carcinoma in a mouse model through glutamine metabolism. Proceedings of the National Academy of Sciences of the United States of America. 112: 6539-44
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