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MAP kinase phosphatase-1, a critical negative regulator of the innate immune response

机译:MAP激酶磷酸酶-1,先天免疫反应的关键负调节剂

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Mitogen-activated protein (MAP) kinase cascades are crucial signal transduction pathways in the regulation of the host inflammatory response to infection. MAP kinase phosphatase (MKP)-1, an archetypal member of the MKP family, plays a pivotal role in the deactivation of p38 and JNK. emIn vitro/em studies using cultured macrophages have provided compelling evidence for a central role of MKP-1 in the restraint of pro-inflammatory cytokine biosynthesis. Studies using MKP-1 knockout mice have strengthened the findings from emin vitro/em studies and defined the critical importance of MKP-1 in the regulation of pro-inflammatory cytokine synthesis emin vivo/em during the host response to bacterial cell wall components. Upon challenge with Toll-like receptor ligands MKP-1 knockout mice produced dramatically greater amounts of inflammatory cytokines, developed severe hypotension and multi-organ failure, and exhibited a remarkable increase in mortality. More recent investigations using intact bacteria confirmed these observations and further revealed novel functions of MKP-1 in host defense against bacterial infection. These studies demonstrate that MKP-1 is an essential feedback regulator of the innate immune response, and that it plays a critical role in preventing septic shock and multi-organ dysfunction during pathogenic infection. In this review, we will summarize the studies on the function of MKP-1 in innate immune responses and discuss the regulation of this novel protein phosphatase.
机译:丝裂原活化蛋白(MAP)激酶级联是调节宿主对感染的炎症反应中至关重要的信号转导途径。 MAP激酶磷酸酶(MKP)-1是MKP家族的原型成员,在p38和JNK的失活中起关键作用。使用培养的巨噬细胞进行的体外研究提供了令人信服的证据,证明MKP-1在抑制促炎性细胞因子生物合成中的重要作用。使用MKP-1敲除小鼠的研究加强了体外研究的结果,并确定了MKP-1在调节体内促炎细胞因子合成过程中的至关重要性。宿主对细菌细胞壁成分的反应。用Toll样受体配体攻击后,MKP-1基因敲除小鼠产生的炎症细胞因子数量明显增加,出现严重的低血压和多器官功能衰竭,并且死亡率显着增加。使用完整细菌的最新研究证实了这些观察结果,并进一步揭示了MKP-1在宿主防御细菌感染中的新功能。这些研究表明,MKP-1是先天免疫反应的重要反馈调节剂,并且在预防病原体感染期间的感染性休克和多器官功能障碍中起着至关重要的作用。在这篇综述中,我们将总结关于MKP-1在先天免疫应答中的功能的研究,并讨论这种新型蛋白磷酸酶的调控。

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