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基于ERK1的信号通路作为一种通过天然抗体调节CCR5的新的选择性机制。

ERK1-Based Pathway as a New Selective Mechanism To Modulate CCR5 with Natural Antibodies.

作者信息

Venuti Assunta, Pastori Claudia, Siracusano Gabriel, Riva Agostino, Sciortino Maria Teresa, Lopalco Lucia

机构信息

Division of Immunology, Transplantation and Infectious Diseases, San Raffaele Scientific Institute, 20127 Milan, Italy;

Department of Biological and Environmental Sciences, University of Messina, 98166 Messina, Italy; and.

出版信息

J Immunol. 2015 Oct 1;195(7):3045-57. doi: 10.4049/jimmunol.1500708. Epub 2015 Aug 31.

DOI:10.4049/jimmunol.1500708
PMID:26324779
Abstract

Natural human Abs, recognizing an epitope within the first extramembrane loop of CCR5 (the main HIV coreceptor), induce a long-lasting internalization (48 h) of the protein, whereas all known CCR5 modulating molecules show a short-term kinetics (60-90 min). Despite extensive studies on the regulation of CCR5 signaling cascades, which are the effect of concomitant CCR5 internalization by exogenous stimuli such as Abs, downstream signaling continues to be poorly understood. In this article, we report a hitherto unrecognized mechanism of CCR5 modulation mediated by G protein-dependent ERK1 activity. We further demonstrate that ERK1 is localized mainly in the cytoplasmic compartment and that it interacts directly with the CCR5 protein, thus provoking possible CCR5 degradation with a subsequent de novo synthesis, and that re-expression of CCR5 on the cell membrane required several days. In contrast, the RANTES treatment induces a recovery of the receptor on the cell membrane in short-term kinetics without the involvement of de novo protein synthesis. The said new pathway could be relevant not only to better understand the molecular basis of all pathologic conditions in which CCR5 is involved but also to generate new tools to block viral infections, such as the use of recombinant Abs.

摘要

识别CCR5(主要的HIV共受体)第一个胞外环内表位的天然人抗体,可诱导该蛋白的长期内化(48小时),而所有已知的CCR5调节分子均表现出短期动力学(60 - 90分钟)。尽管对CCR5信号级联的调节进行了广泛研究,这些信号级联是由外源性刺激(如抗体)伴随CCR5内化的结果,但下游信号传导仍了解甚少。在本文中,我们报告了一种迄今未被认识的由G蛋白依赖性ERK1活性介导的CCR5调节机制。我们进一步证明,ERK1主要定位于细胞质区室,并且它直接与CCR5蛋白相互作用,从而引发可能的CCR5降解及随后的从头合成,并且CCR5在细胞膜上的重新表达需要数天时间。相比之下,RANTES处理可在短期动力学中诱导受体在细胞膜上恢复,而无需从头进行蛋白质合成。上述新途径不仅可能与更好地理解CCR5所涉及的所有病理状况的分子基础相关,而且可能与生成新的阻断病毒感染的工具相关,例如使用重组抗体。

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