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人类髓样免疫球蛋白A Fc受体(CD89)与FcRγ链之间的功能关联。CD89/FcRγ链关联的分子基础。

Functional association between the human myeloid immunoglobulin A Fc receptor (CD89) and FcR gamma chain. Molecular basis for CD89/FcR gamma chain association.

作者信息

Morton H C, van den Herik-Oudijk I E, Vossebeld P, Snijders A, Verhoeven A J, Capel P J, van de Winkel J G

机构信息

Department of Immunology, University Hospital Utrecht, The Netherlands.

出版信息

J Biol Chem. 1995 Dec 15;270(50):29781-7. doi: 10.1074/jbc.270.50.29781.

Abstract

FcR gamma chain has previously been shown to interact with the TCR-CD3 complex, the IgE Fc receptor I (Fc epsilon RI), and the class I and IIIA IgG receptors (Fc gamma RI and Fc gamma RIIIa). Here, we demonstrate that the Fc receptor gamma chain associates with Fc alpha R in transfected IIA1.6 B lymphocytes. Fc alpha R could be expressed at the surface of IIA1.6 B cells by itself, but was devoid of signaling capacity. Upon co-expression of FcR gamma chain, a physical interaction with Fc alpha R could be demonstrated. This association proved crucial for the triggering of both proximal (intracellular calcium increase and tyrosine phosphorylation), as well as distal (IL-2 release), signal transduction responses. We next tested the hypothesis that a positively charged arginine residue (Arg209) within the transmembrane domain of Fc alpha R promotes association with FcR gamma chain. We therefore constructed Fc alpha R molecules where Arg209 was mutated to either a positively charged histidine, a negatively charged aspartic acid, or an uncharged leucine. A functional association between Fc alpha R and FcR gamma chain was observed only with a positively charged residue (Arg209 or His209) present within the Fc alpha R transmembrane domain. These data show that transmembrane signal transduction by the Fc alpha R is mediated via FcR gamma chain, and that Fc alpha R requires a positively charged residue within the transmembrane domain to promote functional association.

摘要

FcRγ链先前已被证明可与TCR - CD3复合物、IgE Fc受体I(FcεRI)以及I类和IIIA类IgG受体(FcγRI和FcγRIIIa)相互作用。在此,我们证明在转染的IIA1.6 B淋巴细胞中,Fc受体γ链与FcαR相关联。FcαR自身能够在IIA1.6 B细胞表面表达,但缺乏信号传导能力。在共表达FcRγ链时,可证明其与FcαR存在物理相互作用。这种关联对于触发近端(细胞内钙增加和酪氨酸磷酸化)以及远端(IL - 2释放)信号转导反应至关重要。接下来,我们测试了一个假说,即FcαR跨膜结构域内带正电荷的精氨酸残基(Arg209)促进与FcRγ链的关联。因此,我们构建了将Arg209突变为带正电荷的组氨酸、带负电荷的天冬氨酸或不带电荷的亮氨酸的FcαR分子。仅在FcαR跨膜结构域内存在带正电荷的残基(Arg209或His209)时,才观察到FcαR与FcRγ链之间的功能关联。这些数据表明,FcαR的跨膜信号转导是通过FcRγ链介导的,并且FcαR需要跨膜结构域内带正电荷的残基来促进功能关联。

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