Authors
Steven Dajnowicz, Jerry M Parks, Xiche Hu, Korie Gesler, Andrey Y Kovalevsky, Timothy C Mueser
Publication date
2017/4/7
Journal
Journal of Biological Chemistry
Volume
292
Issue
14
Pages
5970-5980
Publisher
American Society for Biochemistry and Molecular Biology
Description
Pyridoxal 5′-phosphate (PLP) is a fundamental, multifunctional enzyme cofactor used to catalyze a wide variety of chemical reactions involved in amino acid metabolism. PLP-dependent enzymes optimize specific chemical reactions by modulating the electronic states of PLP through distinct active site environments. In aspartate aminotransferase (AAT), an extended hydrogen bond network is coupled to the pyridinyl nitrogen of the PLP, influencing the electrophilicity of the cofactor. This network, which involves residues Asp-222, His-143, Thr-139, His-189, and structural waters, is located at the edge of PLP opposite the reactive Schiff base. We demonstrate that this hydrogen bond network directly influences the protonation state of the pyridine nitrogen of PLP, which affects the rates of catalysis. We analyzed perturbations caused by single- and double-mutant variants using steady-state kinetics, high resolution X …
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