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角质形成细胞中的两种XVII型胶原蛋白形式。一种全长跨膜蛋白和一种可溶性胞外结构域。

Two forms of collagen XVII in keratinocytes. A full-length transmembrane protein and a soluble ectodomain.

作者信息

Schäcke H, Schumann H, Hammami-Hauasli N, Raghunath M, Bruckner-Tuderman L

机构信息

Department of Dermatology, University of Muenster, D-48149 Muenster, Germany.

出版信息

J Biol Chem. 1998 Oct 2;273(40):25937-43. doi: 10.1074/jbc.273.40.25937.

Abstract

The cDNA sequence of human collagen XVII predicts an unusual type II transmembrane protein, but a biochemical characterization of this structure has not been accomplished yet. Using domain-specific antibodies against recombinant collagen XVII fragments, we identified two molecular forms of the collagen in human skin and epithelial cells. Full-length collagen XVII appeared as a homotrimeric transmembrane molecule of three 180-kDa alpha1(XVII) chains. The globular intracellular domain was disulfide-linked, and the N-glycosylated extracellular domain of three 120-kDa polypeptides was triple-helical at physiological temperatures. A second, soluble form of collagen XVII in keratinocyte culture media was recognized with antibodies to the ectodomain, but not the endodomain. The soluble form exhibited molecular properties of the collagen XVII ectodomain: a triple-helical, N-glycosylated molecule of three 120-kDa polypeptides. Northern blot analysis with probes spanning either the distal 5'or the distal 3' end of the collagen XVII cDNA revealed an identical 6-kb mRNA, suggesting that both the 180- and 120-kDa polypeptides were translated from the same mRNA, and that the 120-kDa polypeptide was generated post-translationally. In concert, keratinocytes harboring a homozygous nonsense mutation in the COL17A1 gene synthesized neither the 180-kDa alpha1(XVII) chain nor the 120-kDa polypeptide. Finally, treatment of normal keratinocytes with a synthetic inhibitor of furin proprotein convertases, decanoyl-RVKR-chloromethyl ketone, prevented the generation of the 120-kDa polypeptide. These data strongly suggest that the soluble 120-kDa polypeptide represents a specifically cleaved ectodomain of collagen XVII, generated through furin-mediated proteolytic processing. Thus, collagen XVII is not only an unusual type II transmembrane collagen, but the first collagen with a specifically processed, soluble triple-helical ectodomain.

摘要

人类ⅩⅦ型胶原蛋白的cDNA序列预测其为一种不同寻常的Ⅱ型跨膜蛋白,但尚未完成对该结构的生化特性鉴定。利用针对重组ⅩⅦ型胶原蛋白片段的结构域特异性抗体,我们在人类皮肤和上皮细胞中鉴定出了该胶原蛋白的两种分子形式。全长ⅩⅦ型胶原蛋白表现为一种由三条180 kDa的α1(ⅩⅦ)链组成的同三聚体跨膜分子。球状的细胞内结构域通过二硫键连接,三条120 kDa多肽的N-糖基化细胞外结构域在生理温度下呈三螺旋结构。在角质形成细胞培养基中,ⅩⅦ型胶原蛋白的第二种可溶形式可被针对胞外结构域而非胞内结构域的抗体识别。该可溶形式表现出ⅩⅦ型胶原蛋白胞外结构域的分子特性:一种由三条120 kDa多肽组成的三螺旋、N-糖基化分子。用跨越ⅩⅦ型胶原蛋白cDNA 5'端或3'端远端的探针进行Northern印迹分析,结果显示有一条相同的6 kb mRNA,这表明180 kDa和120 kDa多肽均由同一mRNA翻译而来,且120 kDa多肽是在翻译后产生的。一致的是,在COL17A1基因中携带纯合无义突变的角质形成细胞既不合成180 kDa的α1(ⅩⅦ)链,也不合成120 kDa多肽。最后,用弗林蛋白酶原转化酶的合成抑制剂癸酰-RVKR-氯甲基酮处理正常角质形成细胞,可阻止120 kDa多肽的产生。这些数据有力地表明,可溶性120 kDa多肽代表了ⅩⅦ型胶原蛋白经特异性切割的胞外结构域,是通过弗林蛋白酶介导的蛋白水解加工产生的。因此,ⅩⅦ型胶原蛋白不仅是一种不同寻常的Ⅱ型跨膜胶原蛋白,而且是第一种具有经特异性加工的可溶性三螺旋胞外结构域的胶原蛋白。

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