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新型IV型胶原链α5(IV)三螺旋区和羧基末端结构域的完整一级结构

Complete primary structure of the triple-helical region and the carboxyl-terminal domain of a new type IV collagen chain, alpha 5(IV).

作者信息

Pihlajaniemi T, Pohjolainen E R, Myers J C

机构信息

Collagen Research Unit, University of Oulu, Finland.

出版信息

J Biol Chem. 1990 Aug 15;265(23):13758-66.

PMID:2380186
Abstract

We have isolated and characterized overlapping cDNA clones which code for a previously unidentified human collagen chain. Although the cDNA-derived primary structure of this new polypeptide is very similar to the basement membrane collagen alpha 1(IV) and alpha 2(IV) chains, the carboxyl-terminal collagenous/non-collagenous junction sequence does not correspond to the junction sequence in either of the newly described alpha 3(IV) or alpha 4(IV) chains (Butkowski, R.J., Langeveld, J.P.M., Wieslander, J., Hamilton, J., and Hudson, B. G. (1987) J. Biol. Chem. 262, 7874-7877). Thus the protein presented here has been designated the alpha 5 chain of type IV collagen. Four clones encode an open reading frame of 1602 amino acids that cover about 95% of the entire chain including half of the amino-terminal 7S domain and all of the central triple-helical region and carboxyl-terminal NC1 domain. The collagenous region of the alpha 5(IV) chain contains 22 interruptions which are in most cases identical in distribution to those in both the alpha 1(IV) and alpha 2(IV) chains. Despite the relatively low degree of conservation among the amino acids in the triple-helical region of the three type IV collagen chains, analysis of the sequences clearly showed that alpha 5(IV) is more related to alpha 1(IV) than to alpha 2(IV). This similarity between the alpha 5(IV) and alpha 1(IV) chains is particularly evident in the NC1 domains where the two polypeptides are 83% identical in contrast to the alpha 5(IV) and alpha 2(IV) identity of 63%. In addition to greatly increasing the complexity of basement membranes, the alpha 5 chain of type IV collagen may be responsible for specialized functions of some of these extracellular matrices. In this regard, it is important to note that we have recently assigned the alpha 5(IV) gene to the region of the X chromosome containing the locus for a familial type of hereditary nephritis known as Alport syndrome (Myers, J.C., Jones, T.A., Pohjalainen, E.-R., Kadri, A.S., Goddard, A.D., Sheer, D., Solomon, E., and Pihlajaniemi, T. (1990) Am. J. Hum. Genet. 46, 1024-1033). Consequently, the newly discovered alpha 5(IV) collagen chain may have a critical role in inherited diseases of connective tissue.

摘要

我们已分离并鉴定出重叠的cDNA克隆,这些克隆编码一种先前未被识别的人类胶原蛋白链。尽管这种新多肽的cDNA推导的一级结构与基底膜胶原蛋白α1(IV)和α2(IV)链非常相似,但羧基末端的胶原/非胶原连接序列与新描述的α3(IV)或α4(IV)链中的连接序列均不对应(Butkowski, R.J., Langeveld, J.P.M., Wieslander, J., Hamilton, J., and Hudson, B. G. (1987) J. Biol. Chem. 262, 7874 - 7877)。因此,这里呈现的蛋白质被命名为IV型胶原蛋白的α5链。四个克隆编码一个1602个氨基酸的开放阅读框,覆盖了整个链的约95%,包括氨基末端7S结构域的一半、中央三螺旋区域的全部以及羧基末端NC1结构域。α5(IV)链的胶原区域包含22个中断,在大多数情况下,其分布与α1(IV)和α2(IV)链中的中断相同。尽管三种IV型胶原蛋白链的三螺旋区域中的氨基酸保守程度相对较低,但序列分析清楚地表明,α5(IV)与α1(IV)的关系比与α2(IV)的关系更密切。α5(IV)和α1(IV)链之间的这种相似性在NC1结构域中尤为明显,其中这两种多肽的同一性为83%,而α5(IV)和α2(IV)的同一性为63%。除了极大地增加基底膜的复杂性外,IV型胶原蛋白的α5链可能负责这些细胞外基质中某些特定的功能。在这方面,需要注意的是,我们最近已将α5(IV)基因定位到X染色体上包含一种家族性遗传性肾炎(称为奥尔波特综合征)基因座的区域(Myers, J.C., Jones, T.A., Pohjalainen, E.-R., Kadri, A.S., Goddard, A.D., Sheer, D., Solomon, E., and Pihlajaniemi, T. (1990) Am. J. Hum. Genet. 46, 1024 - 1033)。因此,新发现的α5(IV)胶原蛋白链可能在结缔组织遗传性疾病中起关键作用。

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