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通过MHC II类分子传递的信号与通过TCR/CD3传递的信号协同作用,导致T细胞增殖和细胞因子基因表达。

Signals delivered via MHC class II molecules synergize with signals delivered via TCR/CD3 to cause proliferation and cytokine gene expression in T cells.

作者信息

Spertini F, Chatila T, Geha R S

机构信息

Division of Immunology, Children's Hospital, Boston, MA 02115.

出版信息

J Immunol. 1992 Jul 1;149(1):65-70.

PMID:1376752
Abstract

We examined the role of MHC class II molecules in transducing signals to activated human T cells. Cross-linking of MHC class II molecules synergized with submitogenic amounts of anti-CD3 mAb in causing proliferation and secretion of the cytokines IL-2, IL-3, IFN-gamma, and TNF-alpha by MHC class II-alloreactive T cell lines. Signaling via MHC class II molecules in T cells resulted in activation of tyrosine kinases, in generation of inositol phosphates, and in Ca2+ mobilization that was abrogated by the tyrosine kinase inhibitor herbimycin A. Thus, like signaling via TCR/CD3, signaling via MHC class II molecules involved tyrosine kinase-dependent activation of phospholipase C, resulting in phosphoinositol turnover and Ca2+ flux. However the signaling pathways coupled to MHC class II molecules and to TCR/CD3 differed, because engagement of the transmembrane phosphatase CD45 inhibited Ca2+ fluxes triggered via TCR/CD3 but not Ca2+ fluxes triggered via MHC class II molecules.

摘要

我们研究了MHC II类分子在向活化的人T细胞转导信号中的作用。MHC II类分子的交联与亚致有丝分裂量的抗CD3单克隆抗体协同作用,促使MHC II类抗原反应性T细胞系增殖并分泌细胞因子IL-2、IL-3、IFN-γ和TNF-α。T细胞中通过MHC II类分子的信号传导导致酪氨酸激酶活化、肌醇磷酸生成以及Ca2+动员,而酪氨酸激酶抑制剂赫曲霉素A可消除这种动员。因此,与通过TCR/CD3的信号传导一样,通过MHC II类分子的信号传导涉及酪氨酸激酶依赖性的磷脂酶C活化,导致磷酸肌醇周转和Ca2+通量。然而,与MHC II类分子和TCR/CD3偶联的信号通路不同,因为跨膜磷酸酶CD45的参与抑制了通过TCR/CD3触发的Ca2+通量,但不抑制通过MHC II类分子触发的Ca2+通量。

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