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半胱氨酸串珠蛋白与囊性纤维化跨膜传导调节因子相互作用并调节其成熟。

Cysteine string protein interacts with and modulates the maturation of the cystic fibrosis transmembrane conductance regulator.

作者信息

Zhang Hui, Peters Kathryn W, Sun Fei, Marino Christopher R, Lang Jochen, Burgoyne Robert D, Frizzell Raymond A

机构信息

Department of Cell Biology and Physiology, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania 15261, USA.

出版信息

J Biol Chem. 2002 Aug 9;277(32):28948-58. doi: 10.1074/jbc.M111706200. Epub 2002 May 30.

Abstract

The cystic fibrosis transmembrane conductance regulator (CFTR) is a cAMP-regulated chloride channel whose phosphorylation regulates both channel gating and its trafficking at the plasma membrane. Cysteine string proteins (Csps) are J-domain-containing, membrane-associated proteins that have been functionally implicated in regulated exocytosis. Therefore, we evaluated the possibility that Csp is involved in regulated CFTR trafficking. We found Csp expressed in mammalian epithelial cell lines, several of which express CFTR. In Calu-3 airway cells, immunofluorescence colocalized Csp with calnexin in the endoplasmic reticulum and with CFTR at the apical membrane domain. CFTR coprecipitated with Csp from Calu-3 cell lysates. Csp associated with both core-glycosylated immature and fully glycosylated mature CFTRs (bands B and C); however, in relation to the endogenous levels of the B and C bands expressed in Calu-3 cells, the Csp interaction with band B predominated. In vitro protein binding assays detected physical interactions of both mammalian Csp isoforms with the CFTR R-domain and the N terminus, having submicromolar affinities. In Xenopus oocytes expressing CFTR, Csp overexpression decreased the chloride current and membrane capacitance increases evoked by cAMP stimulation and decreased the levels of CFTR protein detected by immunoblot. In mammalian cells, the steady-state expression of CFTR band C was eliminated, and pulse-chase studies showed that Csp coexpression blocked the conversion of immature to mature CFTR and stabilized band B. These results demonstrate a primary role for Csp in CFTR protein maturation. The physical interaction of this Hsc70-binding protein with immature CFTR, its localization in the endoplasmic reticulum, and the decrease in production of mature CFTR observed during Csp overexpression reflect a role for Csp in CFTR biogenesis. The documented role of Csp in regulated exocytosis, its interaction with mature CFTR, and its coexpression with CFTR at the apical membrane domain of epithelial cells may reflect also a role for Csp in regulated CFTR trafficking at the plasma membrane.

摘要

囊性纤维化跨膜传导调节因子(CFTR)是一种受环磷酸腺苷(cAMP)调节的氯离子通道,其磷酸化作用既调节通道门控,也调节其在质膜上的转运。半胱氨酸串珠蛋白(Csps)是含有J结构域的膜相关蛋白,其功能与调节性胞吐作用有关。因此,我们评估了Csp参与调节CFTR转运的可能性。我们发现Csp在哺乳动物上皮细胞系中表达,其中几种细胞系也表达CFTR。在Calu-3气道细胞中,免疫荧光显示Csp在内质网中与钙连蛋白共定位,在顶端膜结构域与CFTR共定位。CFTR可从Calu-3细胞裂解物中与Csp共沉淀。Csp与核心糖基化的未成熟CFTR和完全糖基化的成熟CFTR(B带和C带)均相关;然而,相对于Calu-3细胞中表达的B带和C带的内源性水平,Csp与B带的相互作用占主导。体外蛋白质结合试验检测到两种哺乳动物Csp亚型与CFTR R结构域和N末端存在物理相互作用,亲和力为亚微摩尔级。在表达CFTR的非洲爪蟾卵母细胞中,Csp的过表达降低了cAMP刺激引起的氯离子电流和膜电容增加,并降低了免疫印迹检测到的CFTR蛋白水平。在哺乳动物细胞中,CFTR C带的稳态表达被消除,脉冲追踪研究表明,Csp的共表达阻断了未成熟CFTR向成熟CFTR的转化,并使B带稳定。这些结果证明了Csp在CFTR蛋白成熟过程中的主要作用。这种与热休克蛋白70(Hsc70)结合的蛋白与未成熟CFTR的物理相互作用、其在内质网中的定位以及Csp过表达期间观察到的成熟CFTR产生减少,都反映了Csp在CFTR生物合成中的作用。Csp在调节性胞吐作用中的既定作用、其与成熟CFTR的相互作用以及其与CFTR在上皮细胞顶端膜结构域的共表达,也可能反映了Csp在质膜上调节CFTR转运中的作用。

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