氧化谷胱甘肽增加非洲爪蟾卵母细胞表达上皮钠通道的δ亚基活性。

eMedical research Pub Date : 2020-01-01 Epub Date: 2020-05-25
Garett J Grant, Camila Coca, Xing-Ming Zhao, My N Helms
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引用次数: 0

摘要

上皮钠通道(ENaC)是由α、β和γ亚基组成的异三聚体结构,在维持体液稳态中起重要作用。当δ-ENaC亚基与β-和γ-亚基一起代替(或补充)α-ENaC亚基时,可以观察到ENaC生物物理性质的根本变化。利用人ENaC cRNA构建和非洲色狼卵母细胞表达系统,我们发现氧化谷胱甘肽(GSSG)对αβγ-ENaC和αβγ-ENaC电流的影响不同。GSSG (400 μM)显著降低表达αβγ-ENaC的卵母细胞的归一化全细胞电流,相反地增加表达δ1βγ-ENaC和δ2βγ-ENaC的卵母细胞的归一化全细胞电流。GSSG处理增加了表达所有四个亚基的卵母细胞的电流。Western blot和PCR分析表明,人小气道上皮细胞(hSAEC)在δ-ENaC亚基的同时表达典型αβγ-亚基。hsaec对GSSG单通道反应的差异表明,气道上皮氧化还原敏感性可能取决于膜中是否聚集了δ或α-亚基。计算机分析预测,δ-ENaC胞外环中的6个Cys氨基酸和n端结构域的1个Cys易受GSSG翻译后修饰的影响。氧化谷胱甘肽和δ-ENaC在肺部疾病中的分子调控和病理生理作用有待进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Oxidized Glutathione Increases Delta-Subunit Expressing Epithelial Sodium Channel Activity in Xenopus laevis Oocytes.

Epithelial sodium channels (ENaC) are heterotrimeric structures, made up of α, β, and γ subunits, and play an important role in maintaining fluid homeostasis. When δ-ENaC subunits are expressed in place of (or in addition to) the α-ENaC subunit alongside β- and γ- subunits, fundamental changes in the biophysical properties of ENaC can be observed. Using human ENaC cRNA constructs and the Xenopas laevis oocyte expression system, we show that oxidized glutathione (GSSG) differently effects αβγ-ENaC and αβγ-ENaC current. GSSG (400 μM) significantly decreased normalized whole cell current in oocytes expressing αβγ-ENaC, and conversely increased whole cell current in δ1βγ-ENaC and δ2βγ-ENaC expressing oocytes. GSSG treatment increased current in oocytes expressing all four subunits. Western blot and PCR analysis show that human small airway epithelial cells (hSAEC) express canonical αβγ-subunits alongside δ-ENaC subunits. Differences in single channel responses to GSSG in hSAECs indicate that airway epithelia redox sensitivity may depend on whether δ- or α- subunits assemble in the membrane. In silico analysis predict that six Cys amino acids in the δ-ENaC extracellular loop, and a single Cys in the N-terminal domain, are susceptible to post-translational modification by GSSG. Additional studies are needed to better understand the molecular regulation and pathophysiological roles of oxidized glutathione and δ-ENaC in lung disorders.

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Therapeutic Targeting of Histone Deacetylation to Prevent Alzheimer's Disease. Oxidized Glutathione Increases Delta-Subunit Expressing Epithelial Sodium Channel Activity in Xenopus laevis Oocytes.
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