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爪蟾卵母细胞中,通道激活蛋白酶xCAP-1的细胞表面表达是ENaC激活所必需的。

Cell-surface expression of the channel activating protease xCAP-1 is required for activation of ENaC in the Xenopus oocyte.

作者信息

Vallet Véronique, Pfister Corinne, Loffing Johannes, Rossier Bernard C

机构信息

*Institute of Pharmacology and Toxicology, University of Lausanne, Lausanne, Switzerland; and Institute of Anatomy, University of Zurich, Zurich, Switzerland.

出版信息

J Am Soc Nephrol. 2002 Mar;13(3):588-594. doi: 10.1681/ASN.V133588.

Abstract

Sodium balance, extracellular fluid volume, and ultimately BP are maintained by precise regulation of the activity of the epithelial sodium channel (ENaC). Using a functional complementation assay in the Xenopus laevis oocyte expression system, a channel-activating protease (CAP-1) that increases ENaC activity two to threefold in the Xenopus oocyte expression system is here identified. External application of trypsin mimics the effect of Xenopus CAP-1 (xCAP-1) on ENaC activity, which can be blocked by aprotinin, a serine protease inhibitor, suggesting the existence of a novel extracellular pathway for controlling ENaC activity. Sequence analysis predicts that CAP-1 is a secreted and/or glycosyl-phosphatidyl-inositol (GPI)-anchored protein. The aim of the present study was to determine whether cell-surface expression of xCAP-1 is required for ENaC activation. By site-directed mutagenesis of xCAP-1, the importance of the catalytic site, N-glycosylation, and the GPI anchor of xCAP-1 on ENaC activity were analyzed. Glycosylation or catalytic activity is not required for cell-surface expression of xCAP-1, whereas the deletion of the GPI anchor consensus motif at the C-terminus of xCAP-1 (G305Stop) abolishes cell-surface expression and ENaC activation. G305Stop-mutated xCAP-1 is recovered as a secreted protein in the external medium. A catalytic mutant of xCAP-1 significantly decreased ENaC activation but did not fully abolish the effect of xCAP-1. The data indicate the critical role of the GPI anchor in ENaC activation and suggest that catalytic and noncatalytic mechanisms are involved.

摘要

钠平衡、细胞外液容量以及最终的血压是通过上皮钠通道(ENaC)活性的精确调节来维持的。利用非洲爪蟾卵母细胞表达系统中的功能互补分析,在此鉴定出一种在非洲爪蟾卵母细胞表达系统中能使ENaC活性增加两到三倍的通道激活蛋白酶(CAP-1)。胰蛋白酶的外部应用模拟了非洲爪蟾CAP-1(xCAP-1)对ENaC活性的作用,而这种作用可被丝氨酸蛋白酶抑制剂抑肽酶阻断,这表明存在一种控制ENaC活性的新型细胞外途径。序列分析预测CAP-1是一种分泌型和/或糖基磷脂酰肌醇(GPI)锚定蛋白。本研究的目的是确定ENaC激活是否需要xCAP-1的细胞表面表达。通过对xCAP-1进行定点诱变,分析了xCAP-1的催化位点、N-糖基化和GPI锚对ENaC活性的重要性。xCAP-1的细胞表面表达不需要糖基化或催化活性,而在xCAP-1 C末端缺失GPI锚定共有基序(G305Stop)则会消除细胞表面表达和ENaC激活。G305Stop突变的xCAP-1作为分泌蛋白在外部培养基中回收。xCAP-1的催化突变体显著降低了ENaC激活,但并未完全消除xCAP-1的作用。数据表明GPI锚在ENaC激活中起关键作用,并提示涉及催化和非催化机制。

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