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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >A novel receptor tyrosine kinase, Mer, inhibits TNF-alpha production and lipopolysaccharide-induced endotoxic shock.
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A novel receptor tyrosine kinase, Mer, inhibits TNF-alpha production and lipopolysaccharide-induced endotoxic shock.

机译:新型受体酪氨酸激酶Mer抑制TNF-α的产生和脂多糖诱导的内毒素休克。

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摘要

The regulation of monocyte function and the inhibition of TNF-alpha production during bacterial sepsis are critical in attenuating adverse host responses to endotoxemia. To study the function of a novel receptor tyrosine kinase, mer, that is expressed in monocytes, we generated mice (merkd) that lack the signaling tyrosine kinase domain. Upon LPS challenge, merkd animals died of endotoxic shock (15/17, 88.2%), whereas control wild-type mice survived (1/15, 6.7% died). Susceptible merkd mice exhibited edema, leukocyte infiltration, and signs of endotoxic shock that correlated with higher levels of TNF-alpha found in the serum of merkd mice as compared with wild-type control animals. Death due to LPS-induced endotoxic shock in merkd mice was blocked by administration of anti-TNF-alpha Ab, suggesting that overproduction of this cytokine was principally responsible for the heightened suseptibility. The increase in TNF-alpha production appeared to be the result of a substantial increase in the LPS-dependent activation of NF-kappa B nuclear translocation resulting in greater TNF-alpha production by macrophages from merkd mice. Thus, Mer receptor tyrosine kinase signaling participates in a novel inhibitory pathway in macrophages important for regulating TNF-alpha secretion and attenuating endotoxic shock.
机译:细菌性败血症过程中单核细胞功能的调节和TNF-α产生的抑制对于减轻宿主对内毒素血症的不良反应至关重要。为了研究在单核细胞中表达的新型受体酪氨酸激酶mer的功能,我们生成了缺乏信号酪氨酸激酶结构域的小鼠(merkd)。在LPS攻击后,猫鼬动物死于内毒素性休克(15 / 17,88.2%),而对照野生型小鼠存活(1 / 15,6.7%死亡)。与野生型对照动物相比,易感的merkd小鼠表现出水肿,白细胞浸润和内毒素休克的迹象,与在merkd小鼠血清中发现的TNF-α含量较高相关。抗肿瘤坏死因子-α抗体的给药阻止了LPS诱导的默克小鼠内毒素休克所致的死亡,这表明这种细胞因子的过量生产主要是导致敏感性增加的原因。 TNF-α产生的增加似乎是由于LPs依赖性的NF-κB核易位激活的实质性增加的结果,导致来自默克小鼠的巨噬细胞产生了更大的TNF-α产生。因此,Mer受体酪氨酸激酶信号转导参与巨噬细胞中的一种新的抑制途径,对抑制TNF-α分泌和减弱内毒素休克很重要。

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