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首页> 外文期刊>Molecular and Cellular Biology >Disruption of Mekk2 in Mice Reveals an Unexpected Role for MEKK2 in Modulating T-Cell Receptor Signal Transduction
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Disruption of Mekk2 in Mice Reveals an Unexpected Role for MEKK2 in Modulating T-Cell Receptor Signal Transduction

机译:Mekk2在小鼠中的破坏揭示了MEKK2在调节T细胞受体信号转导中的意外作用。

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MEKK2 is a member of the mitogen-activated protein kinase (MAPK) kinase kinase gene family involved in regulating multiple MAPK signaling pathways. To elucidate the in vivo function of MEKK2, we generated mice carrying a targeted mutation in the Mekk2 locus. Mekk2?/? mice are viable and fertile. Major subsets of thymic and spleen T cells in Mekk2-deficient mice were indistinguishable from those in wild-type mice. B-cell development appeared to proceed similarly in the bone marrow of Mekk2-deficient and wild-type mice. However, Mekk2?/? T-cell proliferation was augmented in response to anti-CD3 monoclonal antibody (MAb) stimulation, and these T cells produced more interleukin 2 and gamma interferon than did the wild-type T cells, suggesting that MEKK2 may be involved in controlling the strength of T-cell receptor (TCR) signaling. Consistently, Mekk2?/? thymocytes were more susceptible than wild-type thymocytes to anti-CD3 MAb-induced cell death. Furthermore, TCR-mediated c-Jun N-terminal kinase activation was not blocked but moderately enhanced in Mekk2?/? T cells. Neither extracellular signal-regulated kinase nor p38 MAPK activation was affected in Mekk2?/? T cells. In conclusion, we found that MEKK2 may be required for controlling the strength of TCR/CD3 signaling.
机译:MEKK2是有丝分裂原激活的蛋白激酶(MAPK)激酶激酶基因家族的成员,参与调节多个MAPK信号通路。为了阐明MEKK2的体内功能,我们生成了在 Mekk2 基因座中带有目标突变的小鼠。 Mekk2 ?/?小鼠具有生存能力和繁殖力。 Mekk2 缺陷型小鼠的胸腺和脾T细胞的主要亚群与野生型小鼠的没有区别。 B细胞发育似乎在 Mekk2 缺陷型和野生型小鼠的骨髓中以相似的方式进行。然而,响应抗CD3单克隆抗体(MAb)刺激, Mekk2 ?/? T细胞增殖得以增强,并且这些T细胞产生更多的白介素2和γ干扰素。与野生型T细胞相比,提示MEKK2可能参与控制T细胞受体(TCR)信号强度。一致地,与野生型胸腺细胞相比, Mekk2 ?/?胸腺细胞更容易受到抗CD3 MAb诱导的细胞死亡的影响。此外,在 Mekk2 ?/? T细胞中,TCR介导的c-Jun N末端激酶激活没有被阻断,但被适度增强。 Mekk2 ?/? T细胞中细胞外信号调节激酶和p38 MAPK激活均不受影响。总之,我们发现可能需要MEKK2来控制TCR / CD3信号强度。

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