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CCL2的一种工程单体具有抗炎特性,这突出了寡聚化对趋化因子体内活性的重要性。

An engineered monomer of CCL2 has anti-inflammatory properties emphasizing the importance of oligomerization for chemokine activity in vivo.

作者信息

Handel Tracy M, Johnson Zoë, Rodrigues David H, Dos Santos Adriana C, Cirillo Rocco, Muzio Valeria, Riva Simona, Mack Matthias, Déruaz Maud, Borlat Frédéric, Vitte Pierre-Alain, Wells Timothy N C, Teixeira Mauro M, Proudfoot Amanda E I

机构信息

Merck Serono Geneva Research Centre, Geneva, Switzerland.

出版信息

J Leukoc Biol. 2008 Oct;84(4):1101-8. doi: 10.1189/jlb.0108061. Epub 2008 Jul 28.

Abstract

We demonstrated recently that P8A-CCL2, a monomeric variant of the chemokine CCL2/MCP-1, is unable to induce cellular recruitment in vivo, despite full activity in vitro. Here, we show that this variant is able to inhibit CCL2 and thioglycollate-mediated recruitment of leukocytes into the peritoneal cavity and recruitment of cells into lungs of OVA-sensitized mice. This anti-inflammatory activity translated into a reduction of clinical score in the more complex inflammatory model of murine experimental autoimmune encephalomyelitis. Several hypotheses for the mechanism of action of P8A-CCL2 were tested. Plasma exposure following s.c. injection is similar for P8A-CCL2 and wild-type (WT) CCL2, ruling out the hypothesis that P8A-CCL2 disrupts the chemokine gradient through systemic exposure. P8A-CCL2 and WT induce CCR2 internalization in vitro and in vivo; CCR2 then recycles to the cell surface, but the cells remain refractory to chemotaxis in vitro for several hours. Although the response to P8A-CCL2 is similar to WT, this finding is novel and suggests that despite the presence of the receptor on the cell surface, coupling to the signaling machinery is retarded. In contrast to CCL2, P8A-CCL2 does not oligomerize on glycosaminoglycans (GAGs). However, it retains the ability to bind GAGs and displaces endogenous JE (murine MCP-1) from endothelial surfaces. Intravital microscopy studies indicate that P8A-CCL2 prevents leukocyte adhesion, while CCL2 has no effect, and this phenomenon may be related to the mechanism. These results suggest that oligomerization-deficient chemokines can exhibit anti-inflammatory properties in vivo and may represent new therapeutic modalities.

摘要

我们最近证明,趋化因子CCL2/MCP-1的单体变体P8A-CCL2尽管在体外具有完全活性,但在体内无法诱导细胞募集。在此,我们表明该变体能够抑制CCL2和巯基乙酸盐介导的白细胞向腹腔的募集以及细胞向卵清蛋白致敏小鼠肺部的募集。这种抗炎活性转化为在更复杂的小鼠实验性自身免疫性脑脊髓炎炎症模型中临床评分的降低。我们测试了关于P8A-CCL2作用机制的几种假设。皮下注射后P8A-CCL2和野生型(WT)CCL2的血浆暴露情况相似,排除了P8A-CCL2通过全身暴露破坏趋化因子梯度的假设。P8A-CCL2和WT在体外和体内均诱导CCR2内化;CCR2随后再循环至细胞表面,但细胞在体外数小时内仍对趋化作用无反应。尽管对P8A-CCL2的反应与WT相似,但这一发现是新颖的,表明尽管细胞表面存在受体,但与信号传导机制的偶联受到阻碍。与CCL2不同,P8A-CCL2不会在糖胺聚糖(GAGs)上寡聚化。然而,它保留了结合GAGs的能力,并从内皮表面取代内源性JE(小鼠MCP-1)。活体显微镜研究表明,P8A-CCL2可防止白细胞黏附,而CCL2则无此作用,这种现象可能与作用机制有关。这些结果表明,缺乏寡聚化能力的趋化因子在体内可表现出抗炎特性,可能代表新的治疗方式。

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