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I型胶原蛋白原α1(I)羧基末端前肽的N-连接寡糖。通过定点诱变进行功能分析。

The type I collagen pro alpha 1(I) COOH-terminal propeptide N-linked oligosaccharide. Functional analysis by site-directed mutagenesis.

作者信息

Lamandé S R, Bateman J F

机构信息

Department of Paediatrics, University of Melbourne, Royal Children's Hospital, Parkville, Victoria, Australia.

出版信息

J Biol Chem. 1995 Jul 28;270(30):17858-65. doi: 10.1074/jbc.270.30.17858.

Abstract

The C-propeptides of the pro alpha 1(I) and pro alpha 2(I) chains of type I collagen are each substituted with a single high-mannose N-linked oligosaccharide. Conservation of this motif among the fibrillar collagens has led to the proposal that the oligosaccharide has structural or functional importance, but a role in collagen biosynthesis has not been unambiguously defined. To examine directly the function of the pro alpha 1(I) C-propeptide N-linked oligosaccharide, the acceptor Asn residue was changed to Gln by site-directed mutagenesis. In transfected mouse Mov13 and 3T6 cells, unglycosylated mutant pro alpha 1(I) folded and assembled normally into trimeric molecules with pro alpha 2(I). In biosynthetic pulse-chase experiments mutant pro alpha 1(I) were secreted at the same rate as wild-type chains; however, following secretion, the chains were partitioned differently between the cell layer and medium, with a greater proportion of the mutant pro alpha 1(I) being released into the medium. This distribution difference was not eliminated by the inclusion of yeast mannan indicating that the high-mannose oligosaccharide itself was not binding to the matrix or the fibroblast surface after secretion. Subtle alterations in the tertiary structure of unglycosylated C-propeptides may have decreased their affinity for a cell-surface component. Further support for a small conformational change in the mutant C-propeptides came from experiments suggesting that unglycosylated pro alpha 1(I) chains were cleaved in vitro by the purified C-proteinase slightly less efficiently than wild-type chains. Mutant and normal pro alpha 1(I) were deposited with equal efficiency into the 3T6 cell accumulated matrix, thus the reduced cleavage by C-proteinase and altered distribution in the short pulse-chase experiments were not functionally significant in this in vitro extracellular matrix model system.

摘要

I型胶原蛋白的α1(I)前体链和α2(I)前体链的C-前肽各自都被一个单一的高甘露糖型N-连接寡糖取代。在纤维状胶原蛋白中这种基序的保守性使得人们提出寡糖具有结构或功能上的重要性,但它在胶原蛋白生物合成中的作用尚未得到明确界定。为了直接研究α1(I)前体链C-前肽N-连接寡糖的功能,通过定点诱变将受体天冬酰胺残基改变为谷氨酰胺。在转染的小鼠Mov13和3T6细胞中,未糖基化的突变型α1(I)前体正常折叠并与α2(I)前体组装成三聚体分子。在生物合成脉冲追踪实验中,突变型α1(I)前体的分泌速率与野生型链相同;然而,分泌后,这些链在细胞层和培养基之间的分配有所不同,突变型α1(I)前体有更大比例释放到培养基中。加入酵母甘露聚糖并没有消除这种分布差异,这表明高甘露糖型寡糖本身在分泌后并不与基质或成纤维细胞表面结合。未糖基化C-前肽三级结构的细微改变可能降低了它们对细胞表面成分的亲和力。对突变型C-前肽微小构象变化的进一步支持来自实验,这些实验表明纯化的C蛋白酶在体外切割未糖基化的α1(I)前体链的效率略低于野生型链。突变型和正常的α1(I)前体以相同的效率沉积到3T6细胞积累的基质中,因此在这个体外细胞外基质模型系统中,短脉冲追踪实验中C蛋白酶切割减少和分布改变在功能上并不显著。

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