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Tumor necrosis factor-alpha induced expression of matrix metalloproteinase-9 through p21-activated Kinase-1

机译:肿瘤坏死因子α通过p21激活的激酶1诱导基质金属蛋白酶9的表达

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Background Expressed in embryonic development, matrix metalloprotein-9 (MMP-9) is absent in most of developed adult tissues, but recurs in inflammation during tissue injury, wound healing, tumor formation and metastasis. Expression of MMP-9 is tightly controlled by extracellular cues including pro-inflammatory cytokines and extracellular matrix (ECM). While the pathologic functions of MMP-9 are evident, the intracellular signaling pathways to control its expression are not fully understood. In this study we investigated mechanism of cytokine induced MMP-9 with particular emphasis on the role of p21-activated-kinase-1 (PAK1) and the down stream signaling. Results In response to TNF-alpha or IL-1alpha, PAK1 was promptly activated, as characterized by a sequential phosphorylation, initiated at threonine-212 followed by at threonine-423 in the activation loop of the kinase, in human skin keratinocytes, dermal fibroblasts, and rat hepatic stellate cells. Ectopic expression of PAK1 variants, but not p38 MAP kinase, impaired the TNF-alpha-induced MMP-9 expression, while other MMPs such as MMP-2, -3 and -14 were not affected. Activation of Jun N-terminal kinase (JNK) and NF-kappaB has been demonstrated to be essential for MMP-9 expression. Expression of inactive PAK1 variants impaired JNK but not NF-kappaB activation, which consequently suppressed the 5'-promoter activities of the MMP-9 gene. After the cytokine-induced phosphorylation, both ectopically expressed and endogenous PAK1 proteins were promptly accumulated even in the condition of suppressing protein synthesis, suggesting the PAK1 protein is stabilized upon TNF-alpha stimulation. Stabilization of PAK1 protein by TNF-alpha treatment is independent of the kinase catalytic activity and p21 GTPase binding capacities. In contrast to epithelial cells, mesenchymal cells require 3-dimensional type-I collagen in response to TNF-alpha to massively express MMP-9. The collagen effect is mediated, in part, by boost JNK activation in a way to cooperate the cytokine signaling. Conclusion We identified a novel mechanism for MMP-9 expression in response to injury signals, which is mediated by PAK1 activation and stabilization leading JNK activation.
机译:背景技术在胚胎发育中表达的基质金属蛋白9(MMP-9)在大多数发达的成年组织中不存在,但在组织损伤,伤口愈合,肿瘤形成和转移过程中会复发。 MMP-9的表达受到包括促炎性细胞因子和细胞外基质(ECM)在内的细胞外信号的严格控制。尽管MMP-9的病理功能很明显,但控制其表达的细胞内信号通路尚不完全清楚。在这项研究中,我们研究了细胞因子诱导的MMP-9的机制,特别强调了p21活化激酶1(PAK1)的作用和下游信号传导。结果在人皮肤角质形成细胞,真皮成纤维细胞中,响应于TNF-α或IL-1alpha,PAK1被迅速激活,其特征是依次磷酸化,在激酶的激活环中从苏氨酸212开始,然后在苏氨酸423发生。和大鼠肝星状细胞。 PAK1变体的异位表达,而不是p38 MAP激酶的异位表达,损害了TNF-α诱导的MMP-9表达,而其他MMP(如MMP-2,-3和-14)不受影响。已经证实,Jun N-末端激酶(JNK)和NF-κB的激活对于MMP-9表达至关重要。非活性PAK1变异体的表达会损害JNK,但不会损害NF-κB的活化,因此会抑制MMP-9基因的5'-启动子活性。细胞因子诱导的磷酸化后,即使在抑制蛋白质合成的条件下,异位表达的内源性PAK1蛋白也迅速积聚,表明PAK1蛋白在TNF-α刺激下稳定下来。通过TNF-α处理稳定PAK1蛋白与激酶催化活性和p21 GTPase结合能力无关。与上皮细胞相比,间质细胞需要3维I型胶原才能响应TNF-α来大量表达MMP-9。胶原蛋白作用部分地通过增强JNK激活以协同细胞因子信号传导的方式介导。结论我们确定了一种新的机制,表达MMP-9响应损伤信号,该机制由PAK1激活和稳定导致JNK激活介导。

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