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7ND-CCL2 的性质在融合到 Fc 后发生改变。

Properties of 7ND-CCL2 are modulated upon fusion to Fc.

机构信息

Merck Serono Geneva Research Centre, 9, Chemin des Mines, 1202 Geneva, Switzerland.

出版信息

Protein Eng Des Sel. 2012 May;25(5):213-22. doi: 10.1093/protein/gzs008. Epub 2012 Mar 2.

Abstract

7ND, a truncated version of the chemokine MCP-1/CCL2 lacking amino acids 2-8, is a potent antagonist of CCR2. In contrast to CCL2, 7ND is an obligate monomer. Similar to other chemokines, the in vivo half-life of 7ND is very short and its use as an antagonist in disease models is thus limited. We therefore constructed a 7ND-Fc fusion protein to extend the half-life of 7ND and overcome its limitations as a potential therapeutic antagonist. When we tested the properties of the fusion molecule in vitro, we found to our surprise that 7ND-Fc, in contrast to 7ND, produced a distinct, albeit small, chemotactic response in THP-1 cells, and a robust chemotactic response in L1.2 cells stably transfected with CCR2. To test whether this unexpected observation might be due to the bivalency of 7ND-Fc stemming from the dimeric nature of Fc fusions, we produced a heterodimeric Fc fusion which displays only one 7ND moiety, using a technology called strand exchange of engineered CH3 domains (SEED). The monovalent construct had properties equivalent to the parent 7ND. Furthermore, partial agonist activity appears to depend on receptor density as well as the signaling pathway examined. However, we were able to show that 7ND-Fc, but not 7ND alone, has antagonistic activity in experimental autoimmune encephalomyelitis, a murine model of multiple sclerosis.

摘要

7ND 是趋化因子 MCP-1/CCL2 的截短体,缺少 2-8 位氨基酸,是 CCR2 的有效拮抗剂。与 CCL2 不同,7ND 是必需的单体。与其他趋化因子类似,7ND 的体内半衰期非常短,因此其在疾病模型中的应用受到限制。我们因此构建了 7ND-Fc 融合蛋白来延长 7ND 的半衰期并克服其作为潜在治疗性拮抗剂的局限性。当我们在体外测试融合分子的特性时,我们惊讶地发现,7ND-Fc 与 7ND 相反,在 THP-1 细胞中产生了明显的、尽管很小的趋化反应,并且在稳定转染 CCR2 的 L1.2 细胞中产生了强烈的趋化反应。为了测试这种意外观察是否可能归因于 7ND-Fc 的二价性源自 Fc 融合的二聚性质,我们使用一种称为工程化 CH3 结构域的链交换(SEED)技术,产生了一种仅显示一个 7ND 部分的异二聚体 Fc 融合。单价构建体具有与亲本 7ND 等效的性质。此外,部分激动剂活性似乎取决于受体密度以及所检查的信号通路。然而,我们能够表明,7ND-Fc 而不是单独的 7ND,在实验性自身免疫性脑脊髓炎(多发性硬化症的一种小鼠模型)中具有拮抗活性。

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