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与配体 CD55 接触时,剪切应力依赖性下调循环白细胞上的黏附-G 蛋白偶联受体 CD97。

Shear stress-dependent downregulation of the adhesion-G protein-coupled receptor CD97 on circulating leukocytes upon contact with its ligand CD55.

机构信息

Department of Experimental Immunology, Academic Medical Center, University of Amsterdam, 1105 AZ Amsterdam, The Netherlands.

出版信息

J Immunol. 2013 Apr 1;190(7):3740-8. doi: 10.4049/jimmunol.1202192. Epub 2013 Feb 27.

DOI:10.4049/jimmunol.1202192
PMID:23447688
Abstract

Adhesion G protein-coupled receptors (aGPCRs) are two-subunit molecules, consisting of an adhesive extracellular α subunit that couples noncovalently to a seven-transmembrane β subunit. The cooperation between the two subunits and the effect of endogenous ligands on the functioning of aGPCRs is poorly understood. In this study, we investigated the interaction between the pan-leukocyte aGPCR CD97 and its ligand CD55. We found that leukocytes from CD55-deficient mice express significantly increased levels of cell surface CD97 that normalized after transfer into wild-type mice because of contact with CD55 on both leukocytes and stromal cells. Downregulation of both CD97 subunits occurred within minutes after first contact with CD55 in vivo, which correlated with an increase in plasma levels of soluble CD97. In vitro, downregulation of CD97 on CD55-deficient leukocytes cocultured with wild-type blood cells was strictly dependent on shear stress. In vivo, CD55-mediated downregulation of CD97 required an intact circulation and was not observed on cells that lack contact with the blood stream, such as microglia. Notably, de novo ligation of CD97 did not activate signaling molecules constitutively engaged by CD97 in cancer cells, such as ERK and protein kinase B/Akt. We conclude that CD55 downregulates CD97 surface expression on circulating leukocytes by a process that requires physical forces, but based on current evidence does not induce receptor signaling. This regulation can restrict CD97-CD55-mediated cell adhesion to tissue sites.

摘要

黏附 G 蛋白偶联受体(aGPCRs)是由两个亚基组成的分子,包括一个非共价结合的黏附性细胞外α亚基和一个七次跨膜的β亚基。目前,对于这两个亚基之间的相互作用以及内源性配体对 aGPCR 功能的影响知之甚少。在本研究中,我们研究了泛白细胞 aGPCR CD97 与其配体 CD55 之间的相互作用。我们发现,CD55 缺陷型小鼠的白细胞表面表达显著增加的 CD97,而在转移到野生型小鼠后,由于与白细胞和基质细胞上的 CD55 接触,CD97 的水平恢复正常。CD97 的两个亚基在体内与 CD55 首次接触后的几分钟内就发生下调,这与血浆可溶性 CD97 水平的升高相关。在体外,与野生型血细胞共培养的 CD55 缺陷型白细胞中 CD97 的下调严格依赖于切应力。在体内,CD55 介导的 CD97 下调需要完整的循环系统,并且在与血流没有接触的细胞(如小神经胶质细胞)上观察不到。值得注意的是,CD97 的从头交联并没有激活 CD97 在癌细胞中固有结合的信号分子,如 ERK 和蛋白激酶 B/Akt。我们得出结论,CD55 通过需要物理力的过程下调循环白细胞表面的 CD97 表达,但根据目前的证据,它不会诱导受体信号。这种调节可以限制 CD97-CD55 介导的细胞黏附到组织部位。

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Shear stress-dependent downregulation of the adhesion-G protein-coupled receptor CD97 on circulating leukocytes upon contact with its ligand CD55.与配体 CD55 接触时,剪切应力依赖性下调循环白细胞上的黏附-G 蛋白偶联受体 CD97。
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