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首页> 外文期刊>American Journal of Physiology >JNK and PI3K differentially regulate MMP-2 and MT1-MMP mRNA and protein in response to actin cytoskeleton reorganization in endothelial cells.
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JNK and PI3K differentially regulate MMP-2 and MT1-MMP mRNA and protein in response to actin cytoskeleton reorganization in endothelial cells.

机译:JNK和PI3K响应内皮细胞中肌动蛋白细胞骨架重组,差异调节MMP-2和MT1-MMP mRNA和蛋白质。

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Increased production and activation of matrix metalloproteinase-2 (MMP-2) are critical events in skeletal muscle angiogenesis and are known to occur in response to mechanical stresses. We hypothesized that reorganization of the actin cytoskeleton would increase endothelial cell production and activation of MMP-2 and that this increase would require a MAPK-dependent signaling pathway in endothelial cells. The pharmacological actin depolymerization agent cytochalasin D increased expression of MMP-2 and membrane type 1-matrix metalloproteinase (MT1-MMP) mRNA, and this was reduced significantly in the presence of the JNK inhibitor SP600125. Activation of JNK by anisomycin was sufficient to induce expression of both MMP-2 and MT1-MMP mRNA in quiescent cells. Downregulation of c-Jun, a downstream target of JNK, with small interference (si)RNA inhibited MMP-2 expression in response to anisomycin. Inhibition of phosphoinositide 3-kinase (PI3K), but not JNK, significantly decreased the amount of active MMP-2 following cytochalasin D stimulation with a concurrent decrease in MT1-MMP protein. Physiological reorganization of actin occurs during VEGF stimulation. VEGF-induced MMP-2 protein production and activation, as well as MT1-MMP protein production, depended on PI3K activity. VEGF-induced MMP-2 mRNA expression was reduced by inhibition of JNK or by treatment with c-Jun siRNA. In summary, our results provide novel insight into the signaling cascades initiated in the early stages of angiogenesis through the reorganization of the actin cytoskeleton and demonstrate a critical role for JNK in regulating MMP-2 and MT1-MMP mRNA expression, whereas PI3K regulates protein levels of both MMP-2 and MT1-MMP.
机译:基质金属蛋白酶2(MMP-2)的产生和激活的增加是骨骼肌血管生成中的关键事件,已知响应机械应力而发生。我们假设肌动蛋白细胞骨架的重组将增加内皮细胞的产生和MMP-2的激活,并且这种增加将需要内皮细胞中依赖MAPK的信号通路。药理肌动蛋白解聚剂细胞松弛素D可以提高MMP-2和膜型1-基质金属蛋白酶(MT1-MMP)mRNA的表达,在JNK抑制剂SP600125存在的情况下,这种表达显着降低。茴香霉素对JNK的激活足以诱导MMP-2和MT1-MMP mRNA在静止细胞中表达。 c-Jun,JNK的下游目标,有小干扰(si)RNA的下调抑制了对茴香霉素的MMP-2表达。抑制磷酸肌醇3-激酶(PI3K),而不抑制JNK,可显着降低细胞松弛素D刺激后活性MMP-2的量,同时降低MT1-MMP蛋白。在VEGF刺激期间发生肌动蛋白的生理重组。 VEGF诱导的MMP-2蛋白的产生和激活以及MT1-MMP蛋白的产生取决于PI3K活性。通过抑制JNK或用c-Jun siRNA处理,可降低VEGF诱导的MMP-2 mRNA表达。总而言之,我们的结果提供了对肌动蛋白细胞骨架重组在血管生成早期启动的信号传导级联的新颖见解,并证明了JNK在调节MMP-2和MT1-MMP mRNA表达中的关键作用,而PI3K调节蛋白水平MMP-2和MT1-MMP。

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