首页> 外文期刊>American Journal of Pathology >Unique Matrix Structure in the Rough Endoplasmic Reticulum Cisternae of Pseudoachondroplasia Chondrocytes
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Unique Matrix Structure in the Rough Endoplasmic Reticulum Cisternae of Pseudoachondroplasia Chondrocytes

机译:假性软骨发育不良软骨细胞的粗面内质网池中独特的基质结构

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Mutations in cartilage oligomeric matrix protein (COMP) cause two skeletal dysplasias, pseudoachondroplasia (PSACH) and multiple epiphyseal dysplasia (MED/EDM1). Because COMP exists as a homopentamer, only one mutant COMP subunit may result in an abnormal complex that is accumulated in expanded rough endoplasmic reticulum (rER) cisternae, a hallmark of PSACH. Type IX collagen and matrilin-3 (MATN3), also accumulate in the rER cisternae of PSACH chondrocytes, but it is unknown how mutant COMP interacts with these proteins. The studies herein focus on defining the organization of these intracellularly retained proteins using fluorescence deconvolution microscopy. A unique matrix organization was identified in which type II procollagen formed a central core surrounded by a protein network of mutant COMP, type IX collagen, and MATN3. This pattern of matrix organization was found in multiple cisternae from single chondrocytes and in chondrocytes with different COMP mutations, indicating a common pattern of interaction. This suggests that stalling of mutant COMP and an interaction between mutant COMP and type II procollagen are initiating events in the assembly of matrix in the rER, possibly explaining why the material is not readily cleared from the rER. Altogether, these data suggest that mutant COMP initiates and perhaps catalyzes premature intracellular matrix assembly.
机译:软骨寡聚基质蛋白(COMP)的突变会引起两个骨骼发育不良,假性软骨发育不良(PSACH)和多发性phy骨发育不良(MED / EDM1)。因为COMP是作为均戊烯存在的,所以只有一个突变体COMP亚基可能会导致异常复合物积聚在扩大的粗糙内质网(rER)池中,这是PSACH的标志。 IX型胶原蛋白和matrilin-3(MATN3)也在PSACH软骨细胞的rER池中蓄积,但尚不清楚突变体COMP如何与这些蛋白相互作用。本文的研究集中于使用荧光解卷积显微镜术定义这些细胞内保留的蛋白质的组织。鉴定出独特的基质组织,其中II型胶原蛋白形成由突变体COMP,IX型胶原蛋白和MATN3的蛋白质网络围绕的中心核心。在单个软骨细胞的多个池中以及具有不同COMP突变的软骨细胞中发现了这种基质组织模式,表明了相互作用的共同模式。这表明突变体COMP的失速以及突变体COMP和II型原胶原之间的相互作用是rER中基质组装中的起始事件,可能解释了为什么不容易从rER中清除该物质。总而言之,这些数据表明突变体COMP启动并可能催化过早的细胞内基质装配。

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