Wu Z, Prahl A, Powell R, Ericksen B, Lubkowski J, Lu W
Institute of Human Virology, University of Maryland Biotechnology Institute, 725 West Lombard Street, Baltimore, MD 21201, USA.
J Pept Res. 2003 Aug;62(2):53-62. doi: 10.1034/j.1399-3011.2003.00068.x.
Human neutrophil alpha-defensins (HNPs) are small, cationic, Cys-rich antimicrobial proteins that play important roles in innate immunity against infectious microbes such as bacteria, fungi and enveloped viruses. Synthesized as inactive precursors in vivo (pre-proHNPs), HNPs are activated through proteolytic removal of the inhibitory pro-peptide required for subcellular sorting and correct folding. We seek to understand the molecular basis for the recognition between the 45-residue pro-peptide and the C-terminal functional domain. Here we described, total chemical synthesis of the 75-residue human neutrophil pro alpha-defensin-1 (proHNP1) via native chemical ligation. After oxidative folding, proHNP1 is cleaved by cyanogen bromide at the Met45-Ala46 peptide bond to release the mature form. The native disulfide connectivity in HNP1, i.e. Cys1-Cys6, Cys2-Cys4 and Cys3-Cys5, is verified by mass mapping of peptide fragments generated by proteolytic digestion and Edman degradation. Fluorescence spectroscopy studies and antimicrobial activity assays further support that synthetic proHNP1 and HNP1 are correctly folded. While largely unstructured in aqueous solution, the pro-peptide binds to HNP1 intermolecularly with an apparent Kd value of 6.2 microM at pH 7.4, confirming the mode of intramolecular inactivation of human alpha-defensin precursors.
人中性粒细胞α-防御素(HNPs)是一类小的、阳离子性的、富含半胱氨酸的抗菌蛋白,在针对细菌、真菌和包膜病毒等感染性微生物的固有免疫中发挥重要作用。HNPs在体内作为无活性前体(前原HNPs)合成,通过蛋白水解去除亚细胞分选和正确折叠所需的抑制性前肽而被激活。我们试图了解45个残基的前肽与C端功能域之间识别的分子基础。在此,我们描述了通过天然化学连接对75个残基的人中性粒细胞前α-防御素-1(proHNP1)进行全化学合成。氧化折叠后,proHNP1在Met45-Ala46肽键处被溴化氰切割以释放成熟形式。通过对蛋白水解消化和埃德曼降解产生的肽片段进行质量图谱分析,验证了HNP1中天然二硫键的连接方式,即Cys1-Cys6、Cys2-Cys4和Cys3-Cys5。荧光光谱研究和抗菌活性测定进一步支持合成的proHNP1和HNP1正确折叠。前肽在水溶液中基本上是无结构的,但在pH 7.4时以表观Kd值6.2 microM与HNP1分子间结合,证实了人α-防御素前体的分子内失活模式。