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Control of extracellular matrix biosynthesis by the bone morphogenetic protein-1/Tolloid-like metalloproteinases.

机译:骨形态发生蛋白-1 / Tolloid样金属蛋白酶控制细胞外基质的生物合成。

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摘要

The vertebrate extracellular matrix (ECM) maintains tissue integrity and provides a substratum that contributes to activities such as cellular differentiation and migration during embryonic development and in adult organisms. The major ECM components, collagen types I--III, form aggregates whose turnover is dictated by several classes of proteinases. The process of ECM degradation is well characterized; however the mediators of ECM biosynthesis have only recently begun to be clarified. Identified as inducers of mammalian bone formation and effectors of dorsal-ventral patterning in early Drosophila embryogenesis, the bone morphogenetic protein-1 (BMP-1)/Tolloid-like metalloproteinases were later revealed as key mediators of type I-III collagen biosynthesis. This role is potentiated by the procollagen C-proteinase enhancers, whose functions are to promote BMP-1/Tolloid-like enzymatic activities against procollagen types I--III, a key step in the assembly of fibrillar collagen aggregates.; The biosynthesis of collagen is further influenced by interactions with other macromolecules. Among such molecules, the small leucine-rich proteogycans (SLRP's) affect molecular assembly and physical packing of collagen fibrils. Interestingly, SLRP's are themselves activated by the BMP-1/Tolloid-like enzymes. Additionally, the BMP-1/Tolloidlike proteinases have been shown to activate lysyl oxidase, the enzyme responsible for covalent crosslinking of collagen fibrils in vivo. The quantitatively minor fibrillar collagen types V and XI regulate the assembly of the major collagen fibers. However, although these minor collagens are subject to proteolytic maturation, characterization of these events has been incomplete. Finally, the small integrin binding ligand N-linked glycoproteins (SIBLING's), including dentin matrix protein-1 and dentin sialophosphoprotein, interact directly with and modulate the biomineralization of collagen aggregates in hard tissues such as bone and dentin. However, although SIBLING's are biosynthetically processed in vivo, the responsible proteinases remain to be identified. The previously observed roles for BMP1/Tolloid-like proteinases in the biosynthesis of collagen-associated macromolecules, together with the proteolytic maturation of the minor collagens and SIBLING proteins, suggest that BMP-1/Tolloid-like proteinases may be involved in the biosynthesis of the latter two classes of proteins. The studies herein focus on the proteolytic events that surround collagen biosynthesis, and provide novel insights towards a conceptual model for the molecular activities that foster ECM maturation in vivo.
机译:脊椎动物细胞外基质(ECM)保持组织完整性并提供一个基质,该基质有助于诸如胚胎发育过程中和成体生物体中的细胞分化和迁移等活动。 ECM的主要成分(I-III型胶原)形成聚集体,其周转率由几类蛋白酶决定。 ECM降解的过程已得到很好的表征;然而,ECM生物合成的介体直到最近才开始被弄清楚。被鉴定为果蝇早期胚胎发生过程中哺乳动物骨形成的诱导物和背腹模式的影响物,骨形态发生蛋白-1(BMP-1)/类瘤样金属蛋白酶后来被揭示为I-III型胶原生物合成的关键介体。前胶原C蛋白酶增强剂增强了这一作用,其功能是促进针对I型至III型胶原的BMP-1 /类固醇酶活性,这是纤维状胶原聚集体组装的关键步骤。胶原蛋白的生物合成进一步受到与其他大分子相互作用的影响。在这样的分子中,富含亮氨酸的小蛋白聚糖(SLRP's)影响胶原纤维的分子组装和物理堆积。有趣的是,SLRP本身被BMP-1 / Tolloid样酶激活。另外,已经显示出BMP-1 / Tolloidlike蛋白酶激活赖氨酰氧化酶,该酶负责体内胶原原纤维的共价交联。数量较少的原纤维胶原V和XI调节主要胶原纤维的组装。然而,尽管这些次要胶原蛋白经历了蛋白水解成熟,但是这些事件的表征还不完整。最后,小的整合素结合配体N-连接糖蛋白(SIBLING's),包括牙本质基质蛋白-1和牙本质唾液磷蛋白,直接与诸如骨骼和牙本质的硬组织中的胶原蛋白聚集物相互作用并调节其生物矿化作用。然而,尽管SIBLING's是在体内生物合成加工的,但负责任的蛋白酶仍有待鉴定。先前观察到的BMP1 / Tolloid样蛋白酶在胶原相关大分子的生物合成中的作用,以及次要胶原蛋白和SIBLING蛋白的蛋白水解成熟,表明BMP-1 / Tolloid样蛋白酶可能参与了BMP1 / Tolloid样蛋白酶的生物合成。后两类蛋白质。本文的研究集中于围绕胶原生物合成的蛋白水解事件,并为促进体内ECM成熟的分子活性的概念模型提供了新颖的见解。

著录项

  • 作者

    Steiglitz, Barry Michael.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Biology Molecular.; Health Sciences Pathology.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 249 p.
  • 总页数 249
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;病理学;
  • 关键词

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