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Nitrosothiol Reactivity Profiling Identifies S-Nitrosylated Proteins with Unexpected Stability.

Chem Biol.. 2008-12;  15(12):1307-16
Paige JS, Xu G, Stancevic B, Jaffrey SR. 1 Department of Pharmacology, Weill Medical College, Cornell University, New York, NY 10065, USA
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摘要

SummaryNitric oxide (NO) regulates protein function by S-nitrosylation of cysteine to form nitrosothiols. Nitrosothiols are highly susceptible to nonenzymatic degradation by cytosolic reducing agents. Here we show that although most protein nitrosothiols are rapidly degraded by cytosolic reductants, a small subset form unusually stable S-nitrosylated proteins. Our findings suggest that stable S-nitrosylation reflects a protein conformation change that shields the nitrosothiol. To identify stable protein nitrosothiols, we developed a proteomic method for profiling S-nitrosylation. We examined the stability of over 100 S-nitrosylated proteins, and identified 10 stable nitrosothiols. These proteins remained S... More

关键词

CHEMBIO; SIGNALING