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Evidence for Autocatalytic Cross-Linking of Hydroxyproline-Rich Glycoproteins during Extracellular Matrix Assembly in Volvox

机译:Volvox细胞外基质组装过程中富含羟脯氨酸的糖蛋白自催化交联的证据。

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摘要

The alga Volvox carteri is one of the simplest multicellular organisms, yet it has a surprisingly complex extracellular matrix (ECM), making Volvox suitable as a model system in which to study ECM self-assembly. Here, we analyze the primary structures and post-translational modifications of two main ECM components synthesized in response to sexual induction as well as wounding. These proteins are members of the pherophorin family with as yet unknown properties. They contain polyhydroxyproline spacers as long as 500 and 2750 residues. Even the highly purified proteins retain the capacity to self-assemble and cross-link, producing an insoluble fibrous network in an apparently autocatalytic reaction. This pherophorin-based network is located within the deep zone of the ECM. A molecular genetic search for additional members of the pherophorin family indicates that at least nine different pherophorin species can be expected to serve as precursors for ECM substructures. Therefore, the highly diversified members of the pherophorin family represent region-specific morphological building blocks for ECM assembly and cross-linking.
机译:藻类Volvox Carteri是最简单的多细胞生物之一,但它具有令人惊讶的复杂细胞外基质(ECM),这使Volvox适合作为研究ECM自组装的模型系统。在这里,我们分析了两个主要的ECM成分的合成及其对性诱导和伤害反应的翻译后修饰的主要结构。这些蛋白质是信息素家族的成员,具有未知的特性。它们包含多达500和2750个残基的聚羟基脯氨酸间隔基。即使是高度纯化的蛋白质也保留了自组装和交联的能力,从而在明显的自催化反应中产生了不溶的纤维网络。这个基于信息素的网络位于ECM的深层区域内。对信息素家族其他成员的分子遗传学研究表明,至少有9种不同的信息素物种有望用作ECM亚结构的前体。因此,信息素家族的高度多样化的成员代表了ECM组装和交联的区域特定形态构建基块。

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