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磷脂酶cbeta对T细胞趋化性至关重要。

Phospholipase cbeta is critical for T cell chemotaxis.

作者信息

Bach Tami L, Chen Qing-Min, Kerr Wesley T, Wang Yanfeng, Lian Lurong, Choi John K, Wu Dianqing, Kazanietz Marcelo G, Koretzky Gary A, Zigmond Sally, Abrams Charles S

机构信息

Department of Medicine, Abramson Family Cancer Research Institute, Philadelphia, PA, USA.

出版信息

J Immunol. 2007 Aug 15;179(4):2223-7. doi: 10.4049/jimmunol.179.4.2223.

Abstract

Chemokines acting through G protein-coupled receptors play an essential role in the immune response. PI3K and phospholipase C (PLC) are distinct signaling molecules that have been proposed in the regulation of chemokine-mediated cell migration. Studies with knockout mice have demonstrated a critical role for PI3K in G(alphai) protein-coupled receptor-mediated neutrophil and lymphocyte chemotaxis. Although PLCbeta is not essential for the chemotactic response of neutrophils, its role in lymphocyte migration has not been clearly defined. We compared the chemotactic response of peripheral T cells derived from wild-type mice with mice containing loss-of-function mutations in both of the two predominant lymphocyte PLCbeta isoforms (PLCbeta2 and PLCbeta3), and demonstrate that loss of PLCbeta2 and PLCbeta3 significantly impaired T cell migration. Because second messengers generated by PLCbeta lead to a rise in intracellular calcium and activation of PKC, we analyzed which of these responses was critical for the PLCbeta-mediated chemotaxis. Intracellular calcium chelation decreased the chemotactic response of wild-type lymphocytes, but pharmacologic inhibition of several PKC isoforms had no effect. Furthermore, calcium efflux induced by stromal cell-derived factor-1alpha was undetectable in PLCbeta2beta3-null lymphocytes, suggesting that the migration defect is due to the impaired ability to increase intracellular calcium. This study demonstrates that, in contrast to neutrophils, phospholipid second messengers generated by PLCbeta play a critical role in T lymphocyte chemotaxis.

摘要

通过G蛋白偶联受体发挥作用的趋化因子在免疫反应中起重要作用。PI3K和磷脂酶C(PLC)是不同的信号分子,它们在趋化因子介导的细胞迁移调节中被提出。对基因敲除小鼠的研究表明PI3K在G(αi)蛋白偶联受体介导的中性粒细胞和淋巴细胞趋化中起关键作用。虽然PLCβ对中性粒细胞的趋化反应不是必需的,但其在淋巴细胞迁移中的作用尚未明确界定。我们比较了野生型小鼠来源的外周T细胞与两种主要淋巴细胞PLCβ亚型(PLCβ2和PLCβ3)均有功能缺失突变的小鼠的趋化反应,并证明PLCβ2和PLCβ3的缺失显著损害了T细胞迁移。由于PLCβ产生的第二信使会导致细胞内钙升高和PKC激活,我们分析了这些反应中哪一个对PLCβ介导的趋化至关重要。细胞内钙螯合降低了野生型淋巴细胞的趋化反应,但对几种PKC亚型的药理抑制没有作用。此外,在PLCβ2β3基因敲除的淋巴细胞中未检测到基质细胞衍生因子-1α诱导的钙外流,这表明迁移缺陷是由于细胞内钙增加能力受损所致。这项研究表明,与中性粒细胞不同,PLCβ产生的磷脂第二信使在T淋巴细胞趋化中起关键作用。

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