Adams Josephine C, Bentley Amber A, Kvansakul Marc, Hatherley Deborah, Hohenester Erhard
Department of Cell Biology, Lerner Research Institute, Cleveland Clinic Lerner College of Medicine, Cleveland Clinic Foundation, Cleveland, OH 44195, USA.
J Cell Sci. 2008 Mar 15;121(Pt 6):784-95. doi: 10.1242/jcs.021006. Epub 2008 Feb 19.
Thrombospondins (TSPs) are an evolutionarily ancient family of extracellular calcium-binding glycoproteins. The five mammalian TSPs collectively have important roles in angiogenesis and vascular biology, synaptogenesis, wound repair and connective tissue organisation. Their complex functions relate to the multiple postsecretion fates of TSPs that can involve endocytic uptake, proteolysis or retention within the extracellular matrix (ECM). Surprisingly, the molecular and cellular mechanisms by which TSPs become retained within the ECM are poorly understood. We hypothesised that the highly conserved TSP C-terminal domain mediates ECM retention. We report that ECM incorporation as insoluble punctate deposits is an evolutionarily conserved property of TSPs. ECM retention of TSP1 is mediated by the C-terminal region in trimeric form, and not by C-terminal monomer or trimers of the N-terminal domain or type 1 repeats. Using a novel mRFP-tagged TSP1 C-terminal trimer, we demonstrate that ECM retention involves the RGD site and a novel site in the L-lectin domain with structural similarity to the ligand-binding site of cargo transport proteins. CD47 and beta1 integrins are dispensable for ECM retention, but beta1 integrins enhance activity. These novel data advance concepts of the molecular processes that lead to ECM retention of TSP1.
血小板反应蛋白(TSPs)是一族在进化上古老的细胞外钙结合糖蛋白。五种哺乳动物TSPs在血管生成和血管生物学、突触形成、伤口修复及结缔组织组织化中共同发挥重要作用。它们的复杂功能与TSPs的多种分泌后命运相关,这些命运可能涉及内吞摄取、蛋白水解或保留在细胞外基质(ECM)中。令人惊讶的是,TSPs如何保留在ECM中的分子和细胞机制却知之甚少。我们推测高度保守的TSP C末端结构域介导了ECM保留。我们报告称,以不溶性点状沉积物形式整合到ECM中是TSPs的一种进化保守特性。TSP1在ECM中的保留由三聚体形式的C末端区域介导,而非由N末端结构域或1型重复序列的C末端单体或三聚体介导。使用一种新型的mRFP标记的TSP1 C末端三聚体,我们证明ECM保留涉及RGD位点以及L-凝集素结构域中一个与货物运输蛋白的配体结合位点结构相似性的新位点。CD47和β-整合素对于ECM保留并非必需,但β-整合素可增强活性。这些新数据推进了导致TSP1在ECM中保留的分子过程的概念。