Omer Kabil, Ph.D.

Affiliations: 
2003 The University of Nebraska - Lincoln, Lincoln, NE 
Area:
General Biophysics
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"Omer Kabil"

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Ruma Banerjee grad student 2003 University of Nebraska - Lincoln
 (Structural and spectroscopic characterization of human cystathionine beta-synthase.)
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Publications

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Goudarzi S, Babicz JT, Kabil O, et al. (2018) Spectroscopic and Electronic Structure Study of ETHE1: Elucidating the Factors Influencing Sulfur Oxidation and Oxygenation in Mononuclear Nonheme Iron Enzymes. Journal of the American Chemical Society
Kabil O, Motl N, Strack M, et al. (2018) Mechanism-based inhibition of human persulfide dioxygenase by γ-glutamyl-homocysteinyl-glycine. The Journal of Biological Chemistry
Motl N, Skiba MA, Kabil O, et al. (2017) Structural and biochemical analyses indicate that a bacterial persulfide dioxygenase-rhodanese fusion protein functions in sulfur assimilation. The Journal of Biological Chemistry
Yadav V, Gao XH, Willard B, et al. (2017) Hydrogen sulfide modulates eukaryotic translation initiation factor 2α (eIF2α) phosphorylation status in the integrated stress response pathway. The Journal of Biological Chemistry
Kabil O, Yadav V, Banerjee R. (2016) A heme-dependent metabolite switching regulates H2S synthesis in response to ER stress. The Journal of Biological Chemistry
Carballal S, Cuevasanta E, Marmisolle I, et al. (2015) Correction to Kinetics of Reversible Reductive Carbonylation of Heme in Human Cystathionine β-Synthase. Biochemistry
Gao XH, Krokowski D, Guan BJ, et al. (2015) Quantitative H2S-mediated protein sulfhydration reveals metabolic reprogramming during the Integrated Stress Response. Elife. 4
Banerjee R, Chiku T, Kabil O, et al. (2015) Assay methods for H2S biogenesis and catabolism enzymes. Methods in Enzymology. 554: 189-200
Gao X, Krokowski D, Guan B, et al. (2015) Author response: Quantitative H2S-mediated protein sulfhydration reveals metabolic reprogramming during the integrated stress response Elife
DeRatt BN, Ralat MA, Kabil O, et al. (2014) Vitamin B-6 restriction reduces the production of hydrogen sulfide and its biomarkers by the transsulfuration pathway in cultured human hepatoma cells. The Journal of Nutrition. 144: 1501-8
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