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Incorporation of Tenascin-C into the Extracellular Matrix by Periostin Underlies an Extracellular Meshwork Architecture

机译:骨膜素将Tenascin-C掺入细胞外基质是细胞外网状结构的基础

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摘要

Extracellular matrix (ECM) underlies a complicated multicellular architecture that is subjected to significant forces from mechanical environment. Although various components of the ECM have been enumerated, mechanisms that evolve the sophisticated ECM architecture remain to be addressed. Here we show that periostin, a matricellular protein, promotes incorporation of tenascin-C into the ECM and organizes a meshwork architecture of the ECM. We found that both periostin null mice and tenascin-C null mice exhibited a similar phenotype, confined tibial periostitis, which possibly corresponds to medial tibial stress syndrome in human sports injuries. Periostin possessed adjacent domains that bind to tenascin-C and the other ECM protein: fibronectin and type I collagen, respectively. These adjacent domains functioned as a bridge between tenascin-C and the ECM, which increased deposition of tenascin-C on the ECM. The deposition of hexabrachions of tenascin-C may stabilize bifurcations of the ECM fibrils, which is integrated into the extracellular meshwork architecture. This study suggests a role for periostin in adaptation of the ECM architecture in the mechanical environment.
机译:细胞外基质(ECM)是复杂的多细胞体系结构的基础,受到机械环境的巨大作用。尽管已列举了ECM的各个组成部分,但完善复杂ECM架构的机制仍有待解决。在这里,我们显示骨膜蛋白(一种基质细胞蛋白)促进将腱生蛋白C掺入ECM并组织ECM的网状结构。我们发现,骨膜素无效小鼠和腱生蛋白C无效小鼠均表现出相似的表型,即局限性胫骨骨膜炎,这可能与人类运动损伤中的胫骨内侧压力综合征有关。骨膜素具有与肌腱蛋白C和其他ECM蛋白结合的相邻结构域,分别是纤连蛋白和I型胶原。这些相邻结构域充当腱生蛋白C和ECM之间的桥梁,从而增加了腱生蛋白C在ECM上的沉积。肌腱蛋白-C六臂的沉积可以稳定ECM原纤维的分叉,后者被整合到细胞外网状结构中。这项研究表明骨膜素在机械环境中对ECM结构的适应性中起着作用。

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