Kudryashova Elena, Quintyn Royston, Seveau Stephanie, Lu Wuyuan, Wysocki Vicki H, Kudryashov Dmitri S
Department of Chemistry and Biochemistry, The Ohio State University, Columbus, OH 43210, USA.
Department of Microbiology, The Ohio State University, Columbus, OH 43210, USA; Department of Microbial Infection and Immunity, The Ohio State University, Columbus, OH 43210, USA.
Immunity. 2014 Nov 20;41(5):709-21. doi: 10.1016/j.immuni.2014.10.018. Epub 2014 Nov 5.
Defensins are short cationic, amphiphilic, cysteine-rich peptides that constitute the front-line immune defense against various pathogens. In addition to exerting direct antibacterial activities, defensins inactivate several classes of unrelated bacterial exotoxins. To date, no coherent mechanism has been proposed to explain defensins' enigmatic efficiency toward various toxins. In this study, we showed that binding of neutrophil ?-defensin HNP1 to affected bacterial toxins caused their local unfolding, potentiated their thermal melting and precipitation, exposed new regions for proteolysis, and increased susceptibility to collisional quenchers without causing similar effects on tested mammalian structural and enzymatic proteins. Enteric ?-defensin HD5 and ?-defensin hBD2 shared similar toxin-unfolding effects with HNP1, albeit to different degrees. We propose that protein susceptibility to inactivation by defensins is contingent to their thermolability and conformational plasticity and that defensin-induced unfolding is a key element in the general mechanism of toxin inactivation by human defensins.
防御素是一类短小的阳离子、两亲性、富含半胱氨酸的肽,构成了抵御各种病原体的一线免疫防御。除了发挥直接的抗菌活性外,防御素还能使几类不相关的细菌外毒素失活。迄今为止,尚未提出一个连贯的机制来解释防御素对各种毒素的神秘作用效率。在本研究中,我们发现中性粒细胞α-防御素HNP1与受影响的细菌毒素结合会导致其局部解折叠,增强其热解链和沉淀,暴露出新的蛋白水解区域,并增加对碰撞猝灭剂的敏感性,而对测试的哺乳动物结构蛋白和酶蛋白没有产生类似影响。肠道α-防御素HD5和β-防御素hBD2与HNP1具有相似的毒素解折叠作用,尽管程度不同。我们提出,蛋白质对防御素失活的敏感性取决于它们的热稳定性和构象可塑性,并且防御素诱导的解折叠是人类防御素使毒素失活的一般机制中的关键因素。