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α1(X) NC1结构域中Gly618突变为Val会导致施密德干骺端软骨发育不良,从而阻止X型胶原多聚体在体外组装。

Type X collagen multimer assembly in vitro is prevented by a Gly618 to Val mutation in the alpha 1(X) NC1 domain resulting in Schmid metaphyseal chondrodysplasia.

作者信息

Chan D, Cole W G, Rogers J G, 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 Mar 3;270(9):4558-62. doi: 10.1074/jbc.270.9.4558.

Abstract

Type X collagen is a homotrimer of alpha 1(X) chains encoded by the COL10A1 gene. It is a highly specialized extracellular matrix component, and its synthesis is restricted to hypertrophic chondrocytes in the calcifying cartilage of the growth plate and in zones of secondary ossification. Our studies on a family with Schmid metaphyseal chondrodysplasia demonstrated that the affected individuals were heterozygous for a single base substitution in the COL10A1 gene, which changed the codon GGC for glycine 618 to GTC for valine in the highly conserved region of the carboxyl-terminal NC1 domain and altered the amino acid sequence in the putative oligosaccharide attachment site. Since hypertrophic cartilage tissues or cell cultures were not available to assess the effect of the mutation, an in vitro cDNA expression system was used to study normal and mutant type X collagen biosynthesis and assembly. Full-length cDNA constructs of the normal type X collagen sequence and also cDNA containing the specific Gly to Val NC1 mutation found in the patient were produced and expressed by in vitro transcription and translation. While the control construct produced type X collagen, which formed trimeric collagen monomers and assembled into larger multimeric assemblies, the mutant collagen was unable to form these larger aggregates. These experiments demonstrated that the mutation disturbed type X collagen NC1 domain interaction and assembly, a finding consistent with the abnormal disorganized cartilage growth plate seen in the patient. These studies provide the first evidence of the effect of a type X collagen mutation on protein structure and function and directly demonstrate the critical role of interactions between NC1 domains in the formation of type X collagen multimeric structures in vitro.

摘要

X型胶原蛋白是由COL10A1基因编码的α1(X)链的同三聚体。它是一种高度特化的细胞外基质成分,其合成仅限于生长板钙化软骨和二级骨化区域的肥大软骨细胞。我们对一个患有施密德干骺端软骨发育不良的家族进行的研究表明,受影响的个体在COL10A1基因中存在单个碱基替换的杂合情况,该替换将羧基末端NC1结构域高度保守区域中甘氨酸618的密码子GGC变为缬氨酸的密码子GTC,并改变了假定的寡糖附着位点的氨基酸序列。由于无法获得肥大软骨组织或细胞培养物来评估该突变的影响,因此使用体外cDNA表达系统来研究正常和突变型X胶原蛋白的生物合成和组装。通过体外转录和翻译产生并表达了正常X型胶原蛋白序列的全长cDNA构建体以及含有患者中发现的特定甘氨酸到缬氨酸NC1突变的cDNA。虽然对照构建体产生了X型胶原蛋白,其形成三聚体胶原蛋白单体并组装成更大的多聚体组装体,但突变型胶原蛋白无法形成这些更大的聚集体。这些实验表明,该突变扰乱了X型胶原蛋白NC1结构域的相互作用和组装,这一发现与患者中看到的异常无序的软骨生长板一致。这些研究首次提供了X型胶原蛋白突变对蛋白质结构和功能影响的证据,并直接证明了NC1结构域之间的相互作用在体外X型胶原蛋白多聚体结构形成中的关键作用。

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