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首页> 外文期刊>Molecular biology of the cell >Assembly of a Novel Cartilage Matrix Protein Filamentous Network: Molecular Basis of Differential Requirement of von Willebrand Factor A Domains
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Assembly of a Novel Cartilage Matrix Protein Filamentous Network: Molecular Basis of Differential Requirement of von Willebrand Factor A Domains

机译:新型软骨基质蛋白丝状网络的组装:von Willebrand因子A域的差异需求的分子基础。

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摘要

Cartilage matrix protein (CMP) is the prototype of the newly discovered matrilin family, all of which contain von Willebrand factor A domains. Although the function of matrilins remain unclear, we have shown that, in primary chondrocyte cultures, CMP (matrilin-1) forms a filamentous network, which is made up of two types of filaments, a collagen-dependent one and a collagen-independent one. In this study, we demonstrate that the collagen-independent CMP filaments are enriched in pericellular compartments, extending directly from chondrocyte membranes. Their morphology can be distinguished from that of collagen filaments by immunogold electron microscopy, and mimicked by that of self-assembled purified CMP. The assembly of CMP filaments can occur from transfection of a wild-type CMP transgene alone in skin fibroblasts, which do not produce endogenous CMP. Conversely, assembly of endogenous CMP filaments by chondrocytes can be inhibited specifically by dominant negative CMP transgenes. The two A domains within CMP serve essential but different functions during network formation. Deletion of the A2 domain converts the trimeric CMP into a mixture of monomers, dimers, and trimers, whereas deletion of the A1 domain does not affect the trimeric configuration. This suggests that the A2 domain modulates multimerization of CMP. Absence of either A domain from CMP abolishes its ability to form collagen-independent filaments. In particular, Asp22 in A1 and Asp255 in A2 are essential; double point mutation of these residues disrupts CMP network formation. These residues are part of the metal ion–dependent adhesion sites, thus a metal ion–dependent adhesion site–mediated adhesion mechanism may be applicable to matrilin assembly. Taken together, our data suggest that CMP is a bridging molecule that connects matrix components in cartilage to form an integrated matrix network.
机译:软骨基质蛋白(CMP)是新发现的基质胶家族的原型,它们均包含von Willebrand因子A结构域。尽管马瑞林的功能尚不清楚,但我们已经表明,在原代软骨细胞培养中,CMP(matrilin-1)形成了一个丝状网络,该网络由两种类型的细丝组成,一种是胶原蛋白依赖性的,另一种是胶原蛋白依赖性的。 。在这项研究中,我们证明了不依赖胶原蛋白的CMP细丝富集在细胞周壁隔室中,直接从软骨细胞膜延伸。通过免疫金电子显微镜可以将它们的形态与胶原细丝的形态区别开来,并且可以通过自组装的纯化CMP模仿它们的形态。 CMP细丝的组装可通过仅在皮肤成纤维细胞中转染野生型CMP转基因而产生,而皮肤成纤维细胞不产生内源性CMP。相反,显性负CMP转基因可以特异性地抑制软骨细胞内源性CMP细丝的组装。 CMP中的两个A域在网络形成过程中起着基本但不同的功能。 A2结构域的缺失将三聚体CMP转化为单体,二聚体和三聚体的混合物,而A1结构域的缺失不影响三聚体构型。这表明A2结构域调节CMP的多聚化。 CMP中缺少任何一个A结构域都将消除其形成不依赖胶原蛋白的细丝的能力。特别是,A1中的Asp 22 和A2中的Asp 255 是必不可少的;这些残基的双点突变破坏了CMP网络的形成。这些残留物是依赖金属离子的粘附位点的一部分,因此依赖金属离子的粘附位点介导的粘附机制可能适用于基质胶组装。综上所述,我们的数据表明CMP是一种桥接分子,将软骨中的基质成分连接起来,形成一个集成的基质网络。

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