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基于 N-乙酰脯氨酰-甘氨酰-脯氨酸结构的 CXCL8 受体拮抗剂。

A CXCL8 receptor antagonist based on the structure of N-acetyl-proline-glycine-proline.

机构信息

Department of Medicine, Division of Pulmonary, Allergy and Critical Care Medicine and UAB Lung Health Center, University of Alabama at Birmingham, Birmingham, AL 35294, USA.

出版信息

Eur J Pharmacol. 2011 Oct 15;668(3):435-42. doi: 10.1016/j.ejphar.2011.02.045. Epub 2011 Mar 31.

Abstract

A role for the collagen-derived tripeptide, N-acetyl proline-glycine-proline (NAc-PGP), in neutrophil recruitment in chronic airway inflammatory diseases, including COPD and cystic fibrosis, has recently been delineated. Due to structural similarity to an important motif for interleukin-8 (CXCL8) binding to its receptor, NAc-PGP binds to CXCR1/2 receptors, leading to neutrophil activation and chemotaxis. In an effort to develop novel CXCL8 antagonists, we describe the synthesis of four chiral isomers of NAc-PGP (NAc-L-Pro-Gly-L-Pro (LL-NAc-PGP), NAc-L-Pro-Gly-D-Pro (LD-NAc-PGP), NAc-D-Pro-Gly-L-Pro (DL-NAc-PGP), and NAc-D-Pro-Gly-D-Pro (DD-NAc-PGP)), characterize them by circular dichroism and NMR spectroscopy, compare their structures to the equivalent region of CXCL8, and test them as potential antagonists of ll-NAc-PGP and CXCL8. We find that LL-NAc-PGP superimposes onto the CXCR1/2 contacting E(29)S(30)G(31)P(32) region of CXCL8 (0.59A rmsd for heavy atoms). In contrast, DD-NAc-PGP has an opposing orientation of key functional groups as compared to the G(31)P(32) region of CXCL8. As a consequence, DD-NAc-PGP binds CXCR1/2, as demonstrated by competition with radiolabeled CXCL8 binding in a radioreceptor assay, yet acts as a receptor antagonist as evidenced by inhibition of CXCL8 and LL-NAc-PGP mediated neutrophil chemotaxis. The ability of DD-NAc-PGP to prevent the activation of CXC receptors indicates that DD-NAc-PGP may serve as a lead compound for the development of CXCR1/2 inhibitors. In addition, this study further proves that using a different technical approach, namely preincubation of NAc-PGP instead of simultaneous addition of NAc-PGP with radiolabeled CXCL8, the direct binding of NAc-PGP to the CXCL8 receptor is evident.

摘要

三肽 N-乙酰脯氨酸-甘氨酸-脯氨酸(NAc-PGP)来源于胶原蛋白,最近的研究表明它在慢性气道炎症性疾病(包括 COPD 和囊性纤维化)中的中性粒细胞募集中发挥作用。由于其结构与白细胞介素-8(CXCL8)与其受体结合的重要基序相似,NAc-PGP 结合 CXCR1/2 受体,导致中性粒细胞活化和趋化。为了开发新型 CXCL8 拮抗剂,我们描述了 NAc-PGP 的四个手性异构体(NAc-L-Pro-Gly-L-Pro(LL-NAc-PGP)、NAc-L-Pro-Gly-D-Pro(LD-NAc-PGP)、NAc-D-Pro-Gly-L-Pro(DL-NAc-PGP)和 NAc-D-Pro-Gly-D-Pro(DD-NAc-PGP))的合成,通过圆二色性和 NMR 光谱对它们进行了表征,将它们的结构与 CXCL8 的等效区域进行了比较,并测试了它们作为潜在的 LL-NAc-PGP 和 CXCL8 拮抗剂的活性。我们发现 LL-NAc-PGP 与 CXCR1/2 接触的 E(29)S(30)G(31)P(32)区域的 CXCL8 重叠(重原子的 RMSD 为 0.59A)。相比之下,DD-NAc-PGP 的关键功能基团的取向与 CXCL8 的 G(31)P(32)区域相反。因此,DD-NAc-PGP 与 CXCR1/2 结合,如放射性受体测定中放射性标记的 CXCL8 结合竞争所证明的那样,然而,由于它抑制了 CXCL8 和 LL-NAc-PGP 介导的中性粒细胞趋化性,因此它作为受体拮抗剂发挥作用。DD-NAc-PGP 阻止 CXC 受体激活的能力表明,DD-NAc-PGP 可能作为 CXCR1/2 抑制剂的先导化合物。此外,这项研究进一步证明,使用不同的技术方法,即 NAc-PGP 的预孵育而不是 NAc-PGP 与放射性标记的 CXCL8 的同时添加,NAc-PGP 与 CXCL8 受体的直接结合是明显的。

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