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甾体硫酸酯 - 硫酸化的双重麻烦。

Steroid disulfates - Sulfation double trouble.

机构信息

Institute of Metabolism and Systems Research, University of Birmingham, Birmingham, UK.

College of Optometry, University of Houston, Houston, TX, USA; Optimvia, LLC, Batavia, OH, USA.

出版信息

Mol Cell Endocrinol. 2021 Mar 15;524:111161. doi: 10.1016/j.mce.2021.111161. Epub 2021 Jan 14.

Abstract

Sulfation pathways have recently come into the focus of biomedical research. For steroid hormones and related compounds, sulfation represents an additional layer of regulation as sulfated steroids are more water-soluble and tend to be biologically less active. For steroid diols, an additional sulfation is possible, carried out by the same sulfotransferases that catalyze the first sulfation step. The steroid disulfates that are formed are the focus of this review. We discuss both their biochemical production as well as their putative biological function. Steroid disulfates have also been linked to various clinical conditions in numerous untargeted metabolomics studies. New analytical techniques exploring the biosynthetic routes of steroid disulfates have led to novel insights, changing our understanding of sulfation in human biology. They promise a bright future for research into sulfation pathways, hopefully too for the diagnosis and treatment of several associated diseases.

摘要

硫酸化途径最近成为生物医学研究的焦点。对于甾体激素和相关化合物,硫酸化代表了额外的调控层,因为硫酸化甾体更具水溶性,且往往具有较低的生物学活性。对于甾体二醇,还可以进行额外的硫酸化,由催化第一个硫酸化步骤的相同磺基转移酶进行。本文主要讨论了形成的甾体二硫酸盐。我们讨论了它们的生化生成以及它们假定的生物学功能。在许多非靶向代谢组学研究中,甾体二硫酸盐也与各种临床病症有关。探索甾体二硫酸盐生物合成途径的新分析技术带来了新的见解,改变了我们对人类生物学中硫酸化的认识。它们为硫酸化途径的研究带来了光明的前景,也有望为几种相关疾病的诊断和治疗带来希望。

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