Siddhesh S. Kamat

Affiliations: 
2016- Biology & Chemistry Indian Inst. of Science Education and Research (IISER) Pune 
Area:
Chemical Biology, Biochemistry
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"Siddhesh Kamat"
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Parents

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Frank M. Raushel grad student 2007-2012 Texas A & M
 (Functional annotation and mechanistic characterization of enzymes with unknown functions: studies on adenine deaminase, n-6-methyladenine deaminase and the c-p lyase pathway.)
Benjamin F. Cravatt post-doc Texas A&M University, The Scripps Research Institute
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Publications

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Kory N, Grond S, Kamat SS, et al. (2016) Mice Lacking Lipid Droplet-Associated Hydrolase, a Gene Linked to Human Prostate Cancer, Have Normal Cholesterol Ester Metabolism. Journal of Lipid Research
Kolar MJ, Kamat SS, Parsons WH, et al. (2016) Branched Fatty Acid Esters of Hydroxy Fatty Acids Are Preferred Substrates of the MODY8 Protein Carboxyl Ester Lipase. Biochemistry
Ogura Y, Parsons WH, Kamat SS, et al. (2016) A calcium-dependent acyltransferase that produces N-acyl phosphatidylethanolamines. Nature Chemical Biology
Parsons WH, Kolar MJ, Kamat SS, et al. (2016) AIG1 and ADTRP are atypical integral membrane hydrolases that degrade bioactive FAHFAs. Nature Chemical Biology
Kamat SS, Camara K, Parsons WH, et al. (2015) Immunomodulatory lysophosphatidylserines are regulated by ABHD16A and ABHD12 interplay. Nature Chemical Biology. 11: 164-71
Camara K, Kamat SS, Lasota CC, et al. (2015) Combining cross-metathesis and activity-based protein profiling: new β-lactone motifs for targeting serine hydrolases. Bioorganic & Medicinal Chemistry Letters. 25: 317-21
Korczynska M, Xiang DF, Zhang Z, et al. (2014) Functional annotation and structural characterization of a novel lactonase hydrolyzing D-xylono-1,4-lactone-5-phosphate and L-arabino-1,4-lactone-5-phosphate. Biochemistry. 53: 4727-38
Kamat SS, Burgos ES, Raushel FM. (2013) Potent inhibition of the C-P lyase nucleosidase PhnI by Immucillin-A triphosphate. Biochemistry. 52: 7366-8
Kamat SS, Raushel FM. (2013) The enzymatic conversion of phosphonates to phosphate by bacteria. Current Opinion in Chemical Biology. 17: 589-96
Kamat SS, Williams HJ, Dangott LJ, et al. (2013) The catalytic mechanism for aerobic formation of methane by bacteria. Nature. 497: 132-6
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