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Effects of K11R and G31P Mutations on the Structure and Biological Activities of CXCL8: Solution Structure of Human CXCL8(3-72)K11R/G31P

机译:K11R和G31P突变对CXCL8的结构和生物学活性的影响:人类CXCL8(3-72)K11R / G31P的溶液结构

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摘要

The ELR-CXC chemokines are important to neutrophil inflammation in many acute and chronic diseases. Among them, CXCL8 (interleukin-8, IL-8), the expression levels of which are elevated in many inflammatory diseases, binds to both the CXCR1 and CXCR2 receptors with high affinity. Recently, an analogue of human CXCL8, CXCL8(3–72)K11R/G31P (hG31P) has been developed. It has been demonstrated that hG31P is a high affinity antagonist for both the CXCR1 and CXCR2. Herein, we have determined the solution structure and the CXCR1 N-terminal peptide binding sites of hG31P by NMR spectroscopy. We have found that the displacement within the tertiary structure of the 30 s loop and the N-terminal region and more specifically change of the loop conformation (especially H33), of hG31P may affect its binding to the CXCR1 receptor and thereby inhibit human neutrophil chemotactic responses induced by ELR-CXC chemokines. Our results provide a structural basis for future clinical investigations of this CXCR1/CXCR2 receptor antagonist and for the further development of CXCL8 based antagonists.
机译:ELR-CXC趋化因子对许多急性和慢性疾病中的中性粒细胞炎症很重要。其中,在许多炎症性疾病中其表达水平升高的CXCL8(白介素8,IL-8)以高亲和力与CXCR1和CXCR2受体结合。最近,已开发出人类CXCL8的类似物CXCL8(3-72)K11R / G31P(hG31P)。已经证明hG31P是CXCR1和CXCR2的高亲和力拮抗剂。在这里,我们已经通过NMR光谱法确定了hG31P的溶液结构和CXCR1 N末端肽结合位点。我们发现hG31P在30 s环和N末端区域三级结构内的位移,更具体地说是环构象(尤其是H33)的变化可能会影响其与CXCR1受体的结合,从而抑制人类嗜中性白细胞的趋化性ELR-CXC趋化因子诱导的反应。我们的结果为该CXCR1 / CXCR2受体拮抗剂的未来临床研究以及基于CXCL8的拮抗剂的进一步开发提供了结构基础。

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