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MB-1/B29异二聚体将B细胞抗原受体与多种src家族蛋白酪氨酸激酶偶联。

The MB-1/B29 heterodimer couples the B cell antigen receptor to multiple src family protein tyrosine kinases.

作者信息

Lin J, Justement L B

机构信息

Department of Microbiology, University of Texas Medical Branch, Galveston 77550.

出版信息

J Immunol. 1992 Sep 1;149(5):1548-55.

PMID:1506682
Abstract

The B cell Ag receptor complex is comprised of membrane (m)IgM or mIgD noncovalently associated with one or more heterodimers, each containing one subunit of MB-1 (IgM alpha or IgD alpha) and one of B29 (Ig beta or Ig gamma). It is known that cross-linking of the B cell Ag receptor results in protein tyrosine kinase activation. Recent reports from other laboratories have demonstrated that mIg coprecipitates with multiple src family protein tyrosine kinases, including blk, lyn, and fyn. However, the mechanism by which these kinases are physically coupled to the Ag receptor has not been confirmed. It has been hypothesized that the mIg-associated proteins MB-1 and B29 provide a physical link between the Ag receptor (mIg) and one or more protein tyrosine kinases. In this study, we confirm previous findings demonstrating that the B cell Ag receptor coprecipitates with the MB-1/B29 heterodimer as well as the protein tyrosine kinases blk, lyn, and fyn under mild detergent conditions (1% digitonin). Additionally, we demonstrate that in detergent conditions (1% Nonidet P-40 (NP-40)) which disrupt the association between mIg and the MB-1/B29 heterodimer, no protein tyrosine kinase activity can be detected in association with mIg. These findings indicated that NP-40 effectively dissociates the B cell Ag receptor from ancillary signal transducing proteins. MB-1 and B29 were however, found to coprecipitate with blk, lyn, and fyn isolated from B cell lysates containing 1% NP-40. No significant difference was observed in the stoichiometry of association between the kinases and the MB-1/B29 heterodimer in the presence of 1% NP-40 when compared to 1% digitonin. It was further determined that in resting B cells, only a small fraction (approximately 1-3%) of the MB-1/B29 heterodimers appear to be complexed with protein tyrosine kinases. Finally, based on preclearing experiments, it appears that individual heterodimers may associate with a single species of protein tyrosine kinase. These data support the hypothesis that the MB-1/B29 heterodimer couples the antigen receptor to protein tyrosine kinases, thereby providing a physical link that facilitates Ag receptor-mediated regulation of kinase activity.

摘要

B细胞抗原受体复合物由与一个或多个异二聚体非共价结合的膜(m)IgM或mIgD组成,每个异二聚体包含一个MB-1亚基(IgMα或IgDα)和一个B29亚基(Igβ或Igγ)。已知B细胞抗原受体的交联会导致蛋白酪氨酸激酶激活。其他实验室最近的报告表明,mIg与多种src家族蛋白酪氨酸激酶共沉淀,包括blk、lyn和fyn。然而,这些激酶与抗原受体物理偶联的机制尚未得到证实。据推测,与mIg相关的蛋白MB-1和B29在抗原受体(mIg)和一种或多种蛋白酪氨酸激酶之间提供了物理联系。在本研究中,我们证实了先前的发现,即在温和的去污剂条件(1%洋地黄皂苷)下,B细胞抗原受体与MB-1/B29异二聚体以及蛋白酪氨酸激酶blk、lyn和fyn共沉淀。此外,我们证明,在破坏mIg与MB-1/B29异二聚体之间结合的去污剂条件(1% Nonidet P-40(NP-40))下,未检测到与mIg相关的蛋白酪氨酸激酶活性。这些发现表明,NP-40有效地使B细胞抗原受体与辅助信号转导蛋白解离。然而,发现MB-1和B29与从含有1% NP-40的B细胞裂解物中分离出的blk、lyn和fyn共沉淀。与1%洋地黄皂苷相比,在1% NP-40存在下,激酶与MB-1/B29异二聚体之间结合的化学计量学未观察到显著差异。进一步确定,在静息B细胞中,只有一小部分(约1-3%)的MB-1/B29异二聚体似乎与蛋白酪氨酸激酶形成复合物。最后,基于预清除实验,单个异二聚体似乎可能与单一物种的蛋白酪氨酸激酶结合。这些数据支持了这样的假设,即MB-1/B

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