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胆固醇诱导的急性抗利尿作用:上皮钠通道活性、蛋白水平和加工的作用。

Acute cholesterol-induced anti-natriuretic effects: role of epithelial Na+ channel activity, protein levels, and processing.

机构信息

Department of Physiology and Biophysics, State University of New York, Buffalo, New York 14214, USA.

出版信息

J Biol Chem. 2011 Jan 21;286(3):1683-95. doi: 10.1074/jbc.M110.159194. Epub 2010 Nov 1.

Abstract

The epithelial Na(+) channel (ENaC) is modulated by membrane lipid composition. However, the effect of an in vivo change of membrane composition is unknown. We examined the effect of a 70-day enhanced cholesterol diet (ECD) on ENaC and renal Na(+) handling. Rats were fed a standard chow or one supplemented with 1% cholesterol and 0.5% cholic acid (ECD). ECD animals exhibited marked anti-diuresis and anti-natriuresis (40 and 47%), which peaked at 1-3 weeks. Secondary compensation returned urine output and urinary Na(+) excretion to control levels by week 10. During these initial changes, there were no accompanying effects on systolic blood pressure, serum creatinine, or urinary creatinine excretion, indicating that the these effects of ECD preceded those which modify renal filtration and blood pressure. The effects of ECD on ENaC were evaluated by measuring the relative protein content of α, β, and γ subunits. α and γ blots were further examined for subunit cleavage (a process that activates ENaC). No significant changes were observed in α and β levels throughout the study. However, levels of cleaved γ were elevated, suggesting that ENaC was activated. The changes of γ persisted at week 10 and were accompanied by additional subunit fragments, indicating potential changes of γ-cleaving proteases. Enhanced protease activity, and specifically that which could act on the second identified cleavage site in γ, was verified in a newly developed urinary protease assay. These results predict enhanced ENaC activity, an effect that was confirmed in patch clamp experiments of principal cells of split open collecting ducts, where ENaC open probability was increased by 40% in the ECD group. These data demonstrate a complex series of events and a new regulatory paradigm that is initiated by ECD prior to the onset of elevated blood pressure. These events lead to changes of renal Na(+) handling, which occur in part by effects on extracellular γ-ENaC cleavage.

摘要

上皮钠通道(ENaC)受膜脂组成的调节。然而,体内膜组成变化的影响尚不清楚。我们检查了 70 天强化胆固醇饮食(ECD)对 ENaC 和肾脏钠处理的影响。大鼠喂食标准饲料或补充 1%胆固醇和 0.5%胆酸的饲料(ECD)。ECD 动物表现出明显的抗利尿和抗利尿作用(40%和 47%),在 1-3 周达到峰值。继发性补偿使尿输出量和尿钠排泄在第 10 周恢复到对照水平。在这些初始变化中,收缩压、血清肌酐或尿肌酐排泄没有伴随的变化,表明 ECD 的这些作用先于那些改变肾脏滤过和血压的作用。通过测量 α、β和 γ 亚基的相对蛋白含量来评估 ECD 对 ENaC 的影响。α 和 γ 印迹进一步检查亚基切割(激活 ENaC 的过程)。整个研究过程中,α 和 β 水平没有明显变化。然而,切割的 γ 水平升高,表明 ENaC 被激活。γ 的变化在第 10 周持续存在,并伴有额外的亚基片段,表明 γ 切割蛋白酶可能发生变化。在新开发的尿蛋白酶测定中证实了增强的蛋白酶活性,特别是可以作用于 γ 中的第二个鉴定切割位点的活性。在分离的集合管分裂的主细胞的膜片钳实验中证实了 ENaC 活性增强,ECD 组 ENaC 开放概率增加了 40%。这些数据表明了一系列复杂的事件和一个新的调节范式,该范式在血压升高之前由 ECD 引发。这些事件导致肾脏钠处理的变化,部分是通过对细胞外 γ-ENaC 切割的影响。

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