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首页> 外文期刊>Science Signaling >Thrombospondin-1 promotes matrix homeostasis by interacting with collagen and lysyl oxidase precursors and collagen cross-linking sites
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Thrombospondin-1 promotes matrix homeostasis by interacting with collagen and lysyl oxidase precursors and collagen cross-linking sites

机译:血压出素-1通过与胶原蛋白和溶酶氧化酶前体和胶原交联位点相互作用来促进基质稳态

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摘要

Fibrillar collagens of the extracellular matrix are critical for tissue structure and physiology; however, excessive or abnormal deposition of collagens is a defining feature of fibrosis. Regulatory mechanisms that act on collagen fibril assembly potentially offer new targets for antifibrotic treatments. Tissue weakening, altered collagen fibril morphologies, or both, are shared phenotypes of mice lacking matricellular thrombospondins. Thrombospondin-1 (TSP1) plays an indirect role in collagen homeostasis through interactions with matrix metalloproteinases and transforming growth factor-beta 1 (TGF-beta 1). We found that TSP1 also affects collagen fibril formation directly. Compared to skin from wild-type mice, skin from Thbs1(-/-) mice had reduced collagen cross-linking and reduced prolysyl oxidase (proLOX) abundance with increased conversion to catalytically active LOX. In vitro, TSP1 bound to both the C-propeptide domain of collagen I and the highly conserved KGHR sequences of the collagen triple-helical domain that participate in cross-linking. TSP1 also bound to proLOX and inhibited proLOX processing by bone morphogenetic protein-1. In human dermal fibroblasts (HDFs), TSP1 and collagen I colocalized in intracellular vesicles and on extracellular collagen fibrils, whereas TSP1 and proLOX colocalized only in intracellular vesicles. Inhibition of LOX-mediated collagen cross-linking did not prevent the extracellular association between collagen and TSP1; however, treatment of HDFs with KGHR-containing, TSP1-binding, triple-helical peptides disrupted the collagen-TSP1 association, perturbed the collagen extracellular matrix, and increased myofibroblastic differentiation in a manner that depended on TGF-beta receptor 1. Thus, the extracellular KGHR-dependent interaction of TSP1 with fibrillar collagens contributes to fibroblast homeostasis.
机译:细胞外基质的纤维状胶原蛋白对组织结构和生理学至关重要;然而,胶原蛋白的过度或异常沉积是纤维化的定义特征。对胶原纤维组件采取行动的监管机制可能为抗纤维化处理提供新的靶标。组织弱化,改变胶原纤维形态或两者,是缺乏原型血栓状素的小鼠的共同表型。血压素蛋白-1(TSP1)通过与基质金属蛋白酶的相互作用和转化生长因子-β1(TGF-β1)的相互作用在胶原型稳态中起间接作用。我们发现TSP1也会直接影响胶原蛋白原纤维形成。与来自野生型小鼠的皮肤相比,来自THBS1( - / - )小鼠的皮肤在催化活性LOx增加到催化活性LOX的转化率增加,来自胰膜1( - / - )小鼠的皮肤减少了胶原交联和还原的脯二酰氧化酶(ProLoX)丰度。体外,TSP1与胶原蛋白I的C肽结构域和参与交联的胶原三螺旋结构域的高度保守的KGHR序列结合。 TSP1还与骨形态发生蛋白-1抑制脯曲克酸钠并抑制脯脱蛋蛋午面。在人的皮肤成纤维细胞(HDFS)中,TSP1和I在细胞内囊泡中和细胞外胶原型原纤维中分致的胶原蛋白,而TSP1和ProProx仅在细胞内囊泡中覆盖。抑制Lox介导的胶原交联并未阻止胶原蛋白和TSP1之间的细胞外关联;然而,用KGHR含量的TSP1结合,三螺旋肽处理HDFS的HDFS破坏了胶原TSP1关联,扰动胶原蛋白细胞外基质,并以依赖于TGF-β受体1的方式增加肌纤维细胞分化。因此, TSP1与Fibrillar胶原蛋白的细胞外KGHR依赖性相互作用有助于成纤维细胞稳定性。

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