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Aldosterone-regulated sodium reabsorption

KEGG ID: hsa04960

中文名称

E 系列 18(S)- resolvins 的生物合成

通路描述

鱼油中主要的 ω-3 多不饱和脂肪酸(PUFA)Eicosapentaenoic acid(EPA)是 E 系列 resolvins 的来源,后者是一类具有强大抗炎和促恢复作用的特化抗炎介质(SPMs)。EPA 的初始转化可由细胞色素 P450 和/或阿司匹林乙酰化的环氧化酶 -2 介导,从而产生立体特异性的 18(R)-和 18(S)-E-resolvins。氧化、还原和水解反应的组合决定了形成的 E-resolvins 的类型(RvE1、RvE2 或 RvE3)。阿司匹林乙酰化环氧化酶异构体会导致酶活性改变。环氧化酶 -1 的乙酰化导致其抑制,从而阻止炎症介质的产生。然而,环氧化酶 -2 的乙酰化将其酶活性从环氧化酶转变为脂氧合酶,从而阻断前列腺素生物合成,并额外启动 SPMs 的产生(Arita et al. 2005, Kyriakopoulos et al. 2017)。本文描述了 18(S) E-resolvins 的生物合成。
英文描述
Sodium transport across the tight epithelia of Na+ reabsorbing tissues such as the distal part of the kidney nephron and colon is the major factor determining total-body Na+ levels, and thus, long-term blood pressure. Aldosterone plays a major role in sodium and potassium metabolism by binding to epithelial mineralocorticoid receptors (MR) in the renal collecting duct cells localized in the distal nephron, promoting sodium resorption and potassium excretion. Aldosterone enters a target cell and binds MR, which translocates into the nucleus and regulates gene transcription. Activation of MR leads to increased expression of Sgk-1, which phosphorylates Nedd4-2, an ubiquitin-ligase which targets ENAC to proteosomal degradation. Phosphorylated Nedd4-2 dissociates from ENAC, increasing its apical membrane abundance. Activation of MR also leads to increased expression of Na+/K+-ATPase, thus causing a net increase in sodium uptake from the renal filtrate. The specificity of MR for aldosterone is provided by 11beta-HSD2 by the rapid conversion of cortisol to cortisone in renal cortical collecting duct cells. Recently, besides genomic effects mediated by activated MR, rapid aldosterone actions that are independent of translation and transcription have been documented.

所含基因

38 个基因