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首页> 外文期刊>American Journal of Physiology >COMMD1 interacts with the COOH terminus of NKCC1 in Calu-3 airway epithelial cells to modulate NKCC1 ubiquitination
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COMMD1 interacts with the COOH terminus of NKCC1 in Calu-3 airway epithelial cells to modulate NKCC1 ubiquitination

机译:COMMD1与Calu-3气道上皮细胞中NKCC1的COOH末端相互作用以调节NKCC1泛素化

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摘要

Mice deficient in Na-K-2Cl cotransporter (NKCC1) have been generated by targeted disruption of the gene encoding NKCC1 involving the carboxy terminus (CT-NKCC1) but not the amino terminus. We hypothesize that the resulting physiological defects are due to loss of proteins interacting with CT-NKCC1. Using a yeast two-hybrid approach, adaptor protein COMMD1 was found to bind to CT-NKCC1 (aa 1,040 -1,212). Binding was verified in a yeast-independent system using GST-COMMD1 and myc-CT-NKCC1. Truncated COMMD1 and CT-NKCC1 peptides were used in binding assays to identify the site of interaction. The results demonstrate concentration-dependent binding of COMMD1 (aa 1-47) to CT-NKCC1 (aa 1,040 -1,134). Endogenous COMMD1 was detected in pull downs using recombinant FLAG-CT-NKCC1; this co-pull down was blocked by COMMD1 (aa 1- 47). CT-NKCC1 (aa 1,040 -1,137) decreased basolateral membrane expression of NKCC1, and COMMD1 (aa 1- 47) increased NKCC1 membrane expression. Downregulation of COMMD1 using silencing (si)RNA led to a transient loss of endogenous COMMD1 but did not affect activation of NKCC1 by hyperosmotic sucrose. Hyperosmolarity caused a transient increase in NKCC1 membrane expression, indicating regulated trafficking of NKCC1; downregulation of COMMD1 using siRNA reduced baseline (unstimulated) NKCC1 expression and blunted a transient elevation in NKCC1 membrane expression caused by hyperosmolarity. Constitutive downregulation of COMMD1 in HT29 engineered cells exhibited loss of COMMD1 and decreased NKCC1 membrane expression with no effect on activation of NKCC1. Loss of COMMD1 in Calu-3 cells and in HT29 cells led to reduced ubiquitinated NKCC1. The results indicate a role for COMMD1 in the regulation of NKCC1 membrane expression and ubiquitination.
机译:通过靶向破坏涉及羧基末端(CT-NKCC1)而不是氨基末端的编码NKCC1的基因,已经产生了Na-K-2Cl共转运蛋白(NKCC1)缺陷的小鼠。我们假设所产生的生理缺陷是由于与CT-NKCC1相互作用的蛋白质损失所致。使用酵母双杂交方法,发现接头蛋白COMMD1与CT-NKCC1结合(aa 1,040 -1,212)。使用GST-COMMD1和myc-CT-NKCC1在不依赖酵母的系统中验证了结合。截短的COMMD1和CT-NKCC1肽用于结合测定中,以鉴定相互作用的位点。结果证明了COMMD1(aa 1-47)与CT-NKCC1(aa 1,040 -1,134)的浓度依赖性结合。使用重组FLAG-CT-NKCC1在下拉菜单中检测到内源COMMD1;该共拉电阻被COMMD1(aa 1-47)阻止。 CT-NKCC1(aa 1,040 -1,137)降低了NKCC1的基底外侧膜表达,而COMMD1(aa 1-47)则提高了NKCC1的膜表达。使用沉默(si)RNA下调COMMD1会导致内源性COMMD1暂时丢失,但不会影响高渗蔗糖激活NKCC1。高渗透压引起NKCC1膜表达的瞬时增加,表明NKCC1的调节运输。使用siRNA的COMMD1下调降低了基线(未刺激)的NKCC1表达,并抑制了由高渗性引起的NKCC1膜表达的短暂升高。 HT29工程细胞中COMMD1的组成性下调显示出COMMD1的缺失和NKCC1膜表达的降低,而对NKCC1的激活没有影响。在Calu-3细胞和HT29细胞中丢失COMMD1导致泛素化NKCC1减少。结果表明COMMD1在调节NKCC1膜表达和泛素化中的作用。

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