首页> 外文期刊>Journal of Cell Science >Matrix metalloproteinase-1 and -9 activation by plasmin regulates a novel endothelial cell-mediated mechanism of collagen gel contraction and capillary tube regression in three-dimensional collagen matrices
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Matrix metalloproteinase-1 and -9 activation by plasmin regulates a novel endothelial cell-mediated mechanism of collagen gel contraction and capillary tube regression in three-dimensional collagen matrices

机译:纤溶酶对基质金属蛋白酶-1和-9的激活调节了三维胶原基质中内皮细胞介导的胶原凝胶收缩和毛细管回归的新机制

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Here, we describe a new function for plasmin and matrix metalloproteinases (MMPs), which is to regulate the regression of capillary tubes in three-dimensional extracellular matrix environments, Using a well-described capillary morphogenesis system in three-dimensional collagen matrices, a new model of capillary regression has been established by adding plasminogen to the culture medium, Plasminogen is converted to plasmin by endothelial cell plasminogen activators which then induces matrix metalloproteinase-dependent collagen gel contraction and capillary regression, Plasminogen addition results in activation of MMP-1 and MMP-9, which then results in collagen proteolysis followed by capillary regression, The endothelial cells undergo apoptosis following gel contraction as detected by how cytometric analysis as well as by detectable caspase-3 cleavage and caspase-dependent cleavage of the actin cytoskeletal regulatory protein, gelsolin, In addition, directly correlating with the contraction response, tyrosine phosphorylation of p130cas, an adapter protein in the focal adhesion complex, is observed followed by disappearance of the protein, Proteinase inhibitors that block MMPs (TIMP-1 or TIMP-2), plasminogen activators (PAI-1) or plasmin (aprotinin) completely block the gel contraction and regression process, In addition, chemical inhibitors of MMPs that block capillary regression also block MMP-1 and MMP-9 activation suggesting that a key element in this regression response is the molecular control of MMP activation by endothelial cells, Blocking antibodies directed to MMP-1 or MMP-9 interfere with capillary regression while blocking antibodies directed to PAI-1 accelerate capillary regression suggesting that endogenous synthesis of PAI-1 negatively regulates this process, These data present a novel system to study a new mechanism that may regulate regression of capillary tubes, namely, plasmin and MMP-mediated degradation of extracellular matrix. [References: 91]
机译:在这里,我们描述了纤溶酶和基质金属蛋白酶(MMP)的新功能,即在三维细胞外基质环境中调节毛细管的回归。通过向培养基中添加纤溶酶原建立毛细血管消退模型,通过内皮细胞纤溶酶原激活剂将纤溶酶原转化为纤溶酶,然后诱导基质金属蛋白酶依赖性胶原凝胶收缩和毛细血管消退,添加纤溶酶可激活MMP-1和MMP -9,然后导致胶原蛋白水解,然后毛细血管消退。通过细胞分析以及肌动蛋白细胞骨架调节蛋白,凝溶胶蛋白的可检测到的caspase-3裂解和caspase依赖性裂解,检测到内皮细胞在凝胶收缩后发生凋亡,另外,与避孕药直接相关响应反应,即粘着斑复合体中的衔接蛋白p130cas的酪氨酸磷酸化,随后消失,该蛋白,阻断MMP的蛋白酶抑制剂(TIMP-1或TIMP-2),纤溶酶原激活剂(PAI-1)或纤溶酶(抑肽酶)完全阻断了凝胶的收缩和降解过程,此外,阻断毛细血管退化的MMP的化学抑制剂也阻断了MMP-1和MMP-9的活化,这表明该回归反应的关键因素是分子对MMP活化的控制。内皮细胞,针对MMP-1或MMP-9的阻断抗体干扰毛细血管消退,而针对PAI-1的阻断抗体则加速毛细血管消退,这提示PAI-1的内源性合成对这一过程起了负调节作用。这些数据为研究提供了一个新的系统一种新的机制可以调节毛细管的消退,即纤溶酶和MMP介导的细胞外基质降解。 [参考:91]

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