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首页> 外文期刊>The Journal of Experomental Medicine >Critical role of the disintegrin metalloprotease ADAM17 for intestinal inflammation and regeneration in mice
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Critical role of the disintegrin metalloprotease ADAM17 for intestinal inflammation and regeneration in mice

机译:Disintegrin金属蛋白酶ADAM17在小鼠肠道炎症和再生中的关键作用

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摘要

The protease a disintegrin and metalloprotease (ADAM) 17 cleaves tumor necrosis factor (TNF), L-selectin, and epidermal growth factor receptor (EGF-R) ligands from the plasma membrane. ADAM17 is expressed in most tissues and is up-regulated during inflammation and cancer. ADAM17-deficient mice are not viable. Conditional ADAM17 knockout models demonstrated proinflammatory activities of ADAM17 in septic shock via shedding of TNF. We used a novel gene targeting strategy to generate mice with dramatically reduced ADAM17 levels in all tissues. The resulting mice called ADAM17ex/ex were viable, showed compromised shedding of ADAM17 substrates from the cell surface, and developed eye, heart, and skin defects as a consequence of impaired EGF-R signaling caused by failure of shedding of EGF-R ligands. Unexpectedly, although the intestine of unchallenged homozygous ADAM17ex/ex mice was normal, ADAM17ex/ex mice showed substantially increased susceptibility to inflammation in dextran sulfate sodium colitis. This was a result of impaired shedding of EGF-R ligands resulting in failure to phosphorylate STAT3 via the EGF-R and, consequently, in defective regeneration of epithelial cells and breakdown of the intestinal barrier. Besides regulating the systemic availability of the proinflammatory cytokine TNF, our results demonstrate that ADAM17 is needed for vital regenerative activities during the immune response. Thus, our mouse model will help investigate ADAM17 as a potential drug target.
机译:蛋白酶a整合素和金属蛋白酶(ADAM)17从质膜上裂解肿瘤坏死因子(TNF),L-选择蛋白和表皮生长因子受体(EGF-R)配体。 ADAM17在大多数组织中表达,在炎症和癌症期间被上调。缺乏ADAM17的小鼠不可行。有条件的ADAM17基因敲除模型通过败血性TNF证明了败血性休克中ADAM17的促炎活性。我们使用了一种新型的基因靶向策略来生成在所有组织中ADAM17水平均大大降低的小鼠。所产生的称为ADAM17ex / ex的小鼠是可行的,显示出受损的ADAM17底物从细胞表面脱落,并且由于EGF-R配体脱落失败而导致EGF-R信号转导受损,导致眼睛,心脏和皮肤出现发育缺陷。出乎意料的是,尽管未挑战纯合的ADAM17ex / ex小鼠的肠是正常的,但ADAM17ex / ex小鼠对硫酸葡聚糖钠结肠炎的炎症敏感性显着提高。这是由于EGF-R配体的脱落受损导致无法通过EGF-R磷酸化STAT3所致,因此导致上皮细胞再生不良和肠屏障破坏。我们的研究结果表明,除了调节促炎性细胞因子TNF的全身利用率外,ADAM17还需要免疫应答过程中重要的再生活动。因此,我们的小鼠模型将有助于研究ADAM17作为潜在的药物靶标。

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