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趋化因子的激动和拮抗活性。

Agonistic and antagonistic activities of chemokines.

作者信息

Loetscher P, Clark-Lewis I

机构信息

Theodor Kocher Institute, University of Bern, Bern, Switzerland.

出版信息

J Leukoc Biol. 2001 Jun;69(6):881-4.

Abstract

Since the discovery of interleukin-8, about 50 chemokines have been identified and characterized. Originally, they were considered as inducible mediators of inflammation, but in recent years, several chemokines were identified that are expressed constitutively and function in physiological traffic and homing of leukocyte-lymphocytes in particular. All chemokines act via seven-transmembrane domain, G protein-coupled receptors. Eighteen such receptors have been identified so far. Studies on structure-activity relationships indicate that chemokines have two main sites of interaction with their receptors, the flexible NH2-terminal region and the conformationally rigid loop that follows the second cysteine. Chemokines are thought to dock onto receptors by means of the loop region, and this contact is believed to facilitate the binding of the NH2-terminal region that results in receptor activation. These studies have also highlighted the importance of the NH2-terminal region for agonistic and antagonistic activity. Recently, we have shown that some naturally occurring chemokines can function as receptor antagonists. These observations suggest a new mechanism for the regulation of leukocyte recruitment during inflammatory and immune reactions, which are based on the combination of agonistic and antagonistic effects.

摘要

自白细胞介素-8被发现以来,已鉴定并表征了约50种趋化因子。最初,它们被认为是炎症的诱导介质,但近年来,已鉴定出几种组成性表达的趋化因子,它们在生理运输中发挥作用,尤其是在白细胞淋巴细胞的归巢过程中。所有趋化因子均通过七跨膜结构域G蛋白偶联受体发挥作用。迄今为止,已鉴定出18种此类受体。结构-活性关系研究表明,趋化因子与其受体有两个主要相互作用位点,即灵活的NH2末端区域和紧随第二个半胱氨酸的构象刚性环。趋化因子被认为通过环区域与受体对接,并且这种接触被认为有助于NH2末端区域的结合,从而导致受体激活。这些研究还强调了NH2末端区域对激动和拮抗活性的重要性。最近,我们已经表明一些天然存在的趋化因子可以作为受体拮抗剂发挥作用。这些观察结果提示了一种在炎症和免疫反应过程中调节白细胞募集的新机制,该机制基于激动和拮抗作用的结合。

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