Modeling Selenoprotein -Nitrosation: Synthesis of a -Nitrososelenocysteine with Persistent Stability.

Ryosuke Masuda, Satoru Kuwano, Kei Goto

Journal: Journal of the American Chemical Society 2023;145(26):14184-14189

PMID: 37267591

Abstract

The -nitrosation in selenoproteins such as glutathione peroxidase and thioredoxin reductase to produce -nitrososelenocysteines (Sec-SeNOs) has been proposed to play crucial roles in signaling processes mediated by reactive nitrogen species and nitrosative-stress responses, although chemical evidence for the formation of Sec-SeNOs has been elusive not only in proteins but also in small-molecule systems. Herein, we report the first synthesis of a Sec-SeNO by employing a selenocysteine model system that bears a protective molecular cradle. The Sec-SeNO was characterized using H and Se nuclear magnetic resonance as well as ultraviolet/visible spectroscopy and found to have persistent stability at room temperature in solution. The reaction processes involving the Sec-SeNO provide experimental information that serves as a chemical basis for elucidating the reaction mechanisms involving the SeNO species in biological functions, as well as in selenol-catalyzed NO generation from -nitrosothiols.

Address: Department of Chemistry, School of Science, Tokyo Institute of Technology, 2-12-1 Ookayama, Meguro-ku, Tokyo 152-8551, Japan.
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