Jairaj K. Acharya
Affiliations: | National Cancer Institute, Rockville, MD, United States |
Area:
lipids, Drosophila, MouseWebsite:
https://ccr.cancer.gov/staff-directory/jairaj-k-acharyaGoogle:
"Jairaj Acharya"Mean distance: 16.12 (cluster 11) | S | N | B | C | P |
Children
Sign in to add traineeKunal Hanagandi | grad student | (FlyTree) | |
Viraj Paul | grad student | (FlyTree) |
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Publications
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Singh A, Abhilasha KV, Acharya KR, et al. (2024) A nutrient responsive lipase mediates gut-brain communication to regulate insulin secretion in Drosophila. Nature Communications. 15: 4410 |
Abimannan T, Parthibane V, Le SH, et al. (2024) Sphingolipid biosynthesis is essential for metabolic rewiring during T17 cell differentiation. Science Advances. 10: eadk1045 |
Kunduri G, Acharya JK. (2024) Live Imaging and Analysis of Meiotic Cytokinesis in Testes. Bio-Protocol. 14: e4918 |
Kunduri G, Acharya U, Acharya JK. (2022) Lipid Polarization during Cytokinesis. Cells. 11 |
Kunduri G, Le SH, Baena V, et al. (2022) Delivery of ceramide phosphoethanolamine lipids to the cleavage furrow through the endocytic pathway is essential for male meiotic cytokinesis. Plos Biology. 20: e3001599 |
Sanchez-Solana B, Wang D, Qian X, et al. (2021) The tumor suppressor activity of DLC1 requires the interaction of its START domain with Phosphatidylserine, PLCD1, and Caveolin-1. Molecular Cancer. 20: 141 |
Parthibane V, Lin J, Acharya D, et al. (2021) SSSPTA is essential for serine palmitoyltransferase function during development and hematopoiesis. The Journal of Biological Chemistry. 100491 |
Parthibane V, Acharya D, Srideshikan SM, et al. (2019) Sptlc1 is essential for myeloid differentiation and hematopoietic homeostasis. Blood Advances. 3: 3635-3649 |
Kunduri G, Turner-Evans D, Konya Y, et al. (2018) Defective cortex glia plasma membrane structure underlies light-induced epilepsy in mutants. Proceedings of the National Academy of Sciences of the United States of America |
Rahman M, Nirala NK, Singh A, et al. (2014) Drosophila Sirt2/mammalian SIRT3 deacetylates ATP synthase β and regulates complex V activity. The Journal of Cell Biology. 206: 289-305 |