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首页> 外文期刊>The Journal of biological chemistry >Proviral Integration Site for Moloney Murine Leukemia Virus (PIM) Kinases Promote Human T Helper 1 Cell Differentiation
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Proviral Integration Site for Moloney Murine Leukemia Virus (PIM) Kinases Promote Human T Helper 1 Cell Differentiation

机译:莫尼鼠白血病病毒(PIM)激酶促进人T辅助1细胞分化

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The differentiation of human primary T helper 1 (Th1) cells from na?ve precursor cells is regulated by a complex, interrelated signaling network. The identification of factors regulating the early steps of Th1 cell polarization can provide important insight in the development of therapeutics for many inflammatory and autoimmune diseases. The serine/threonine-specific proviral integration site for Moloney murine leukemia virus (PIM) kinases PIM1 and PIM2 have been implicated in the cytokine-dependent proliferation and survival of lymphocytes. We have established that the third member of this family, PIM3, is also expressed in human primary Th cells and identified a new function for the entire PIM kinase family in T lymphocytes. Although PIM kinases are expressed more in Th1 than Th2 cells, we demonstrate here that these kinases positively influence Th1 cell differentiation. Our RNA interference results from human primary Th cells also suggest that PIM kinases promote the production of IFNγ, the hallmark cytokine produced by Th1 cells. Consistent with this, they also seem to be important for the up-regulation of the critical Th1-driving factor, T box expressed in T cells (T-BET), and the IL-12/STAT4 signaling pathway during the early Th1 differentiation process. In summary, we have identified PIM kinases as new regulators of human primary Th1 cell differentiation, thus providing new insights into the mechanisms controlling the selective development of human Th cell subsets.
机译:人初级T辅助1(TH1)来自NaαVe前体细胞的细胞的分化由复合,相互化的信号网络调节。调节Th1细胞极化早期步骤的因素的鉴定可以在许多炎症和自身免疫疾病的治疗方法中提供重要的见解。 Moloney鼠白血病病毒(PIM)激酶PIM1和PIM2的丝氨酸/苏氨氨酸特异性透过型遗传位点涉及淋巴细胞的细胞因子依赖性和存活。我们已经确定该家庭的第三个成员PIM3也在人的初级细胞中表达,并确定了T淋巴细胞中整个PIM激酶家族的新功能。虽然PIM激酶比Th1比Th2细胞更多,但在此表明这些激酶积极影响Th1细胞分化。我们的RNA干扰来自人初级细胞的影响还表明PIM激酶促进了IFNγ的产生,由TH1细胞产生的标志性细胞因子。符合此,它们似乎对T TECL(T-BET)中表达的临界Th1驱动因子,T盒的上调性似乎是重要的,并且在早期的TH1分化过程中的IL-12 / Stat4信号传导途径。总之,我们已经确定了PIM激酶作为人初级Th1细胞分化的新调节剂,从而为控制人TH细胞亚群的选择性发展的机制提供了新的见解。

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