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用于硒化氢供体和检测的化学工具研究

An Examination of Chemical Tools for Hydrogen Selenide Donation and Detection.

机构信息

Department of Chemistry, Wake Forest University, Wake Downtown Campus, 455 Vine Street, Winston-Salem, NC 27101, USA.

出版信息

Molecules. 2024 Aug 15;29(16):3863. doi: 10.3390/molecules29163863.

Abstract

Hydrogen selenide (HSe) is an emerging biomolecule of interest with similar properties to that of other gaseous signaling molecules (i.e., gasotransmitters that include nitric oxide, carbon monoxide, and hydrogen sulfide). HSe is enzymatically generated in humans where it serves as a key metabolic intermediate in the production of selenoproteins and other selenium-containing biomolecules. However, beyond its participation in biosynthetic pathways, its involvement in cellular signaling or other biological mechanisms remains unclear. To uncover its true biological significance, HSe-specific chemical tools capable of functioning under physiological conditions are required but lacking in comparison to those that exist for other gasotransmitters. Recently, researchers have begun to fill this unmet need by developing new HSe-releasing compounds, along with pioneering methods for selenide detection and quantification. In combination, the chemical tools highlighted in this review have the potential to spark groundbreaking explorations into the chemical biology of HSe, which may lead to its branding as the fourth official gasotransmitter.

摘要

硒化氢(HSe)是一种新兴的生物分子,具有与其他气态信号分子(即一氧化氮、一氧化碳和硫化氢等气体递质)相似的性质。HSe 在人体中酶促生成,作为硒蛋白和其他含硒生物分子产生的关键代谢中间产物。然而,除了参与生物合成途径外,其在细胞信号转导或其他生物学机制中的作用尚不清楚。为了揭示其真正的生物学意义,需要能够在生理条件下发挥作用的 HSe 特异性化学工具,但与其他气体递质相比,这类工具还很缺乏。最近,研究人员开始通过开发新的 HSe 释放化合物以及开创性的硒化物检测和定量方法来满足这一未满足的需求。综上所述,本综述中重点介绍的化学工具有可能引发对 HSe 化学生物学的突破性探索,这可能使其被正式确认为第四种气体递质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/510f/11356831/bf809d53c8a9/molecules-29-03863-g001.jpg

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