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磷脂酶C-γ2和Vav在信号微簇内协同作用,以响应膜结合抗原促进B细胞铺展。

Phospholipase C-gamma2 and Vav cooperate within signaling microclusters to propagate B cell spreading in response to membrane-bound antigen.

作者信息

Weber Michele, Treanor Bebhinn, Depoil David, Shinohara Hisaaki, Harwood Naomi E, Hikida Masaki, Kurosaki Tomohiro, Batista Facundo D

机构信息

Lymphocyte Interaction Laboratory, London Research Institute, Cancer Research UK, London WC2A 3PX, England, UK.

出版信息

J Exp Med. 2008 Apr 14;205(4):853-68. doi: 10.1084/jem.20072619. Epub 2008 Mar 24.

Abstract

B cell receptor (BCR) recognition of membrane-bound antigen initiates a spreading and contraction response, the extent of which is controlled through the formation of signaling-active BCR-antigen microclusters and ultimately affects the outcome of B cell activation. We followed a genetic approach to define the molecular requirements of BCR-induced spreading and microcluster formation. We identify a key role for phospholipase C-gamma2 (PLCgamma2), Vav, B cell linker, and Bruton's tyrosine kinase in the formation of highly coordinated "microsignalosomes," the efficient assembly of which is absolutely dependent on Lyn and Syk. Using total internal reflection fluorescence microscopy, we examine at high resolution the recruitment of PLCgamma2 and Vav to microsignalosomes, establishing a novel synergistic relationship between the two. Thus, we demonstrate the importance of cooperation between components of the microsignalosome in the amplification of signaling and propagation of B cell spreading, which is critical for appropriate B cell activation.

摘要

B细胞受体(BCR)对膜结合抗原的识别引发了一种扩展和收缩反应,其程度通过信号激活的BCR-抗原微簇的形成来控制,并最终影响B细胞激活的结果。我们采用遗传学方法来确定BCR诱导的扩展和微簇形成的分子要求。我们确定了磷脂酶C-γ2(PLCγ2)、Vav、B细胞连接蛋白和布鲁顿酪氨酸激酶在高度协调的“微信号体”形成中的关键作用,其有效组装绝对依赖于Lyn和Syk。利用全内反射荧光显微镜,我们在高分辨率下检查了PLCγ2和Vav向微信号体的募集,确立了两者之间一种新的协同关系。因此,我们证明了微信号体各组分之间的合作在信号放大和B细胞扩展传播中的重要性,这对于适当的B细胞激活至关重要。

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