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来自生活在深海热液喷口的巨型管虫的一种形成原纤维的胶原蛋白的氨基酸序列和细胞黏附活性。

Amino-acid sequence and cell-adhesion activity of a fibril-forming collagen from the tube worm Riftia pachyptila living at deep sea hydrothermal vents.

作者信息

Mann K, Gaill F, Timpl R

机构信息

Max-Planck-Institut für Biochemie, Martinsried, Federal Republic of Germany.

出版信息

Eur J Biochem. 1992 Dec 15;210(3):839-47. doi: 10.1111/j.1432-1033.1992.tb17487.x.

DOI:10.1111/j.1432-1033.1992.tb17487.x
PMID:1483468
Abstract

We have determined the amino acid sequence of the alpha chain of a fibril-forming collagen from the body wall of the marine invertebrate Riftia pachyptila (vestimentifera) by Edman degradation. The pepsin-solubilized collagen chain consists of a 1011-residue triple-helical domain and short remnants of N- and C-telopeptides. The triple-helical sequence showed one imperfection of the collagen Gly-Xaa-Yaa triplet repeat structure due to a Gly-->Ala substitution. This imperfection is correlated to a prominent kink in the molecule observed by electron microscopy. No strong sequence similarity was found with the fibril-forming vertebrate collagen types I-III, V and XI except for the invariant Gly residues. However, one of the two consensus cross-linking sequences was well conserved. The Riftia collagen shared with the vertebrate collagens many post-translational modifications. About 50% of the Pro and Lys residues are found in the Yaa position and were extensively hydroxylated to 4-hydroxyproline (4Hyp) and hydroxylysine (Hyl). A few proline residues in Xaa position were partially hydroxylated to either 4Hyp or 3Hyp. Despite the low sequence similarity, Riftia collagen was a potent adhesion substrate for two human cell lines. Cell adhesion could be inhibited by antibodies against the integrin beta 1 subunit but not by RGD peptides. This biological activity is apparently conserved in fibril-forming collagens of distantly related species but does not require the two RGD sequences present in Riftia collagen.

摘要

我们通过埃德曼降解法确定了来自海洋无脊椎动物巨型管虫(须腕动物门)体壁的一种形成原纤维的胶原蛋白α链的氨基酸序列。胃蛋白酶可溶解的胶原蛋白链由一个1011个残基的三螺旋结构域以及N端和C端肽段的短残余部分组成。三螺旋序列显示出由于甘氨酸被丙氨酸取代而导致的胶原蛋白Gly-Xaa-Yaa三联体重复结构的一处缺陷。这一缺陷与电子显微镜观察到的分子中一个明显的扭结相关。除了不变的甘氨酸残基外,未发现与形成原纤维的脊椎动物I-III型、V型和XI型胶原蛋白有强烈的序列相似性。然而,两个共有交联序列之一保存完好。巨型管虫胶原蛋白与脊椎动物胶原蛋白有许多共同的翻译后修饰。约50%的脯氨酸和赖氨酸残基处于Yaa位置,并被广泛羟化形成4-羟脯氨酸(4Hyp)和羟赖氨酸(Hyl)。Xaa位置的一些脯氨酸残基部分羟化形成4Hyp或3Hyp。尽管序列相似性较低,但巨型管虫胶原蛋白是两种人类细胞系的有效黏附底物。细胞黏附可被抗整合素β1亚基的抗体抑制,但不能被RGD肽抑制。这种生物学活性显然在远缘物种的形成原纤维的胶原蛋白中保守,但不需要巨型管虫胶原蛋白中存在的两个RGD序列。

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