David Ralf, Machova Zuzana, Beck-Sickinger Annette G
Institute of Biochemistry, Faculty of Biosciences, Pharmacy and Psychology, University of Leipzig, D-04103 Leipzig, Germany.
Biol Chem. 2003 Dec;384(12):1619-30. doi: 10.1515/BC.2003.180.
Human interleukin 8 (hIL-8), a neutrophil-activating and chemotactic cytokine, is known to play an important role in the pathogenesis of a large number of neutrophil-driven inflammatory diseases. This cytokine belongs to the family of CXC chemokines, mediating the response through binding to the seven-transmembrane helical G protein-coupled receptors CXCR1 and CXCR2. For the first time, we employed the expressed protein ligation (EPL) strategy to chemokine synthesis and subsequent modification. The ligation site was chosen with respect to the position of four cysteine residues within the hIL-8 sequence. Ligation with synthetic peptides that carry cysteine at their N-termini resulted in full-length hIL-8 and the specifically carboxyfluorescein-labelled analogue [K69(CF)]hIL-8(1-77). [K69(CF)]hIL-8(1-77) was fully active as shown by inhibition of cAMP production. Furthermore, this analogue was used to study receptor internalisation in human promyelotic HL60 cells that express CXCR1 and CXCR2 receptors. Binding and quenching studies were performed on HL60 membranes and suggest that the C-terminus of IL-8 is accessible to solvent in the receptor-bound state. Thus, we introduce here a powerful approach that allows the site-specific incorporation of chemical modifications into the sequence of chemokines, which opens new avenues for studying IL-8 function.
人白细胞介素8(hIL-8)是一种可激活中性粒细胞并具有趋化作用的细胞因子,已知其在多种由中性粒细胞驱动的炎症性疾病的发病机制中发挥重要作用。这种细胞因子属于CXC趋化因子家族,通过与七跨膜螺旋G蛋白偶联受体CXCR1和CXCR2结合来介导反应。我们首次将表达蛋白连接(EPL)策略应用于趋化因子的合成及后续修饰。连接位点是根据hIL-8序列中四个半胱氨酸残基的位置来选择的。与在其N端携带半胱氨酸的合成肽进行连接,得到了全长hIL-8以及特异性羧基荧光素标记的类似物[K69(CF)]hIL-8(1-77)。如通过抑制环磷酸腺苷(cAMP)生成所显示的,[K69(CF)]hIL-8(1-77)具有完全活性。此外,该类似物被用于研究在表达CXCR1和CXCR2受体的人早幼粒HL60细胞中的受体内化。在HL60细胞膜上进行了结合和猝灭研究,结果表明在受体结合状态下,IL-8的C端可被溶剂接触到。因此,我们在此引入了一种强大的方法,该方法允许将化学修饰位点特异性地引入趋化因子序列中,这为研究IL-8的功能开辟了新途径。