Suppr超能文献

11β-羟基类固醇脱氢酶与皮质类固醇激素作用的受体前调节

11beta-hydroxysteroid dehydrogenase and the pre-receptor regulation of corticosteroid hormone action.

作者信息

Draper Nicole, Stewart Paul M

机构信息

Division of Medical Sciences, Institute of Biomedical Research, Medical School, University of Birmingham, Edgbaston, Birmingham B15 2TT, UK.

出版信息

J Endocrinol. 2005 Aug;186(2):251-71. doi: 10.1677/joe.1.06019.

Abstract

Two isozymes of 11beta-hydroxysteroid dehydrogenase (11beta-HSD1 and 11beta-HSD2) catalyse the interconversion of hormonally active cortisol and inactive cortisone. The enzyme evolved from a metabolic pathway to a novel mechanism underpinning human disease with the elucidation of the role of the type 2 or 'kidney' isozyme and an inherited form of hypertension, 'apparent mineralocorticoid excess'. 'Cushing's disease of the kidney' arises because of a failure of 11beta-HSD2 to inactivate cortisol to cortisone resulting in cortisol-induced mineralocorticoid excess.Conversely, 11beta-HSD1 has been linked to human obesity and insulin resistance, but also to other diseases in which glucocorticoids have historically been implicated (osteoporosis, glaucoma). Here, the activation of cortisol from cortisone facilitates glucocorticoid hormone action at an autocrine level. The molecular basis for the putative human 11beta-HSD1 'knockout'--'cortisone reductase deficiency'--has recently been described, an observation that also answers a long standing conundrum relating to the set-point of 11beta-HSD1 activity. In each case, these clinical studies have been underpinned by studies in vitro and the manipulation of enzyme expression in vivo using recombinant mouse models.

摘要

11β-羟基类固醇脱氢酶的两种同工酶(11β-HSD1和11β-HSD2)催化具有激素活性的皮质醇和无活性的可的松之间的相互转化。随着2型或“肾脏”同工酶作用以及一种遗传性高血压“表观盐皮质激素过多症”的阐明,该酶从一种代谢途径演变成一种支撑人类疾病的新机制。“肾性库欣病”的出现是因为11β-HSD2无法将皮质醇灭活为可的松,从而导致皮质醇诱导的盐皮质激素过多。相反,11β-HSD1与人类肥胖和胰岛素抵抗有关,也与其他一些历史上认为与糖皮质激素有关的疾病(骨质疏松症、青光眼)有关。在这里,可的松转化为皮质醇的激活作用在自分泌水平上促进了糖皮质激素的作用。最近已经描述了假定的人类11β-HSD1“敲除”——“可的松还原酶缺乏症”——的分子基础,这一发现也解答了一个长期存在的关于11β-HSD1活性设定点的难题。在每种情况下,这些临床研究都有体外研究以及使用重组小鼠模型在体内操纵酶表达的研究作为支撑。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验