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IgM 受体的交联诱导 IgM 相关的 Igα、Lyn 和 Syk 酪氨酸激酶迅速转位至膜骨架。

Cross-linking of the IgM receptor induces rapid translocation of IgM-associated Ig alpha, Lyn, and Syk tyrosine kinases to the membrane skeleton.

作者信息

Jugloff L S, Jongstra-Bilen J

机构信息

Toronto Hospital Research Institute, Department of Immunology, University of Toronto, Ontario, Canada.

出版信息

J Immunol. 1997 Aug 1;159(3):1096-106.

PMID:9233602
Abstract

Cross-linking-induced association of membrane IgM (mIgM) with the cytoskeleton is well documented. However, its functional significance during B cell activation is not yet understood. One possible need for mIgM/cytoskeleton interactions may be to recruit the B cell receptor (BCR)-associated signaling molecules to the cytoskeletal matrix for the propagation of downstream signaling. We first verified whether BCR-associated Ig alpha translocates to the cytoskeleton together with mIgM in polyclonal anti-IgM-treated murine B lymphoma cell line, BAL17.7.1. Co-capping experiments and the purification of the membrane skeleton under conditions that preserve IgM-Ig alphabeta) interactions confirmed that Ig alpha translocates to the cytoskeleton as part of the BCR complex. Furthermore, two BCR-associated kinases that are known to play critical roles in anti-IgM-induced B cell signaling, the src family kinase Lyn and the non-src family kinase Syk, accumulate in the membrane skeleton shortly after BCR cross-linking, when most of IgM and Ig alpha accumulate in this fraction. The kinetics of recruitment of the bulk of Ig alpha, Lyn, and Syk into the membrane skeleton appeared to precede the accumulation of their hypertyrosine-phosphorylated forms, suggesting that activation of the BCR-associated signaling molecules occurs in this fraction. These data suggest that cross-linked mIgM translocating to the membrane skeleton serves as a vehicle for active signaling molecules to be recruited to this vicinity. This may promote B cell activation events by providing high affinity interactions between signaling molecules and their substrates supported by the cytoskeletal matrix.

摘要

膜免疫球蛋白M(mIgM)与细胞骨架的交联诱导缔合已有充分文献记载。然而,其在B细胞激活过程中的功能意义尚不清楚。mIgM/细胞骨架相互作用的一个可能需求可能是将B细胞受体(BCR)相关的信号分子招募到细胞骨架基质中,以传播下游信号。我们首先验证了在多克隆抗IgM处理的小鼠B淋巴瘤细胞系BAL17.7.1中,与BCR相关的Igα是否与mIgM一起转运到细胞骨架。共封端实验以及在保留IgM-Igαβ相互作用的条件下对膜骨架的纯化证实,Igα作为BCR复合物的一部分转运到细胞骨架。此外,已知在抗IgM诱导的B细胞信号传导中起关键作用的两种BCR相关激酶,即src家族激酶Lyn和非src家族激酶Syk,在BCR交联后不久积聚在膜骨架中,此时大部分IgM和Igα积聚在该部分。大量Igα、Lyn和Syk募集到膜骨架的动力学似乎先于它们的高酪氨酸磷酸化形式的积累,这表明BCR相关信号分子的激活发生在该部分。这些数据表明,转运到膜骨架的交联mIgM作为一种载体,将活性信号分子招募到该附近区域。这可能通过在细胞骨架基质支持的信号分子与其底物之间提供高亲和力相互作用来促进B细胞激活事件。

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