Maemoto Atsuo, Qu Xiaoqing, Rosengren K Johan, Tanabe Hiroki, Henschen-Edman Agnes, Craik David J, Ouellette Andre J
Department of Pathology, College of Medicine, University of California, Irvine 92697-4800, USA.
J Biol Chem. 2004 Oct 15;279(42):44188-96. doi: 10.1074/jbc.M406154200. Epub 2004 Aug 5.
The alpha-defensin antimicrobial peptide family is defined by a unique tridisulfide array. To test whether this invariant structural feature determines alpha-defensin bactericidal activity, mouse cryptdin-4 (Crp4) tertiary structure was disrupted by pairs of site-directed Ala for Cys substitutions. In a series of Crp4 disulfide variants whose cysteine connectivities were confirmed using NMR spectroscopy and mass spectrometry, mutagenesis did not induce loss of function. To the contrary, the in vitro bactericidal activities of several Crp4 disulfide variants were equivalent to or greater than those of native Crp4. Mouse Paneth cell alpha-defensins require the proteolytic activation of precursors by matrix metalloproteinase-7 (MMP-7), prompting an analysis of the relative sensitivities of native and mutant Crp4 and pro-Crp4 molecules to degradation by MMP-7. Although native Crp4 and the alpha-defensin moiety of proCrp4 resisted proteolysis completely, all disulfide variants were degraded extensively by MMP-7. Crp4 bactericidal activity was eliminated by MMP-7 cleavage. Thus, rather than determining alpha-defensin bactericidal activity, the Crp4 disulfide arrangement confers essential protection from degradation by this critical activating proteinase.
α-防御素抗菌肽家族由独特的三链二硫键阵列定义。为了测试这种不变的结构特征是否决定α-防御素的杀菌活性,通过将成对的位点定向丙氨酸替换为半胱氨酸来破坏小鼠隐窝防御素-4(Crp4)的三级结构。在一系列使用核磁共振光谱和质谱确认了半胱氨酸连接性的Crp4二硫键变体中,诱变并未导致功能丧失。相反,几种Crp4二硫键变体的体外杀菌活性与天然Crp4相当或更高。小鼠潘氏细胞α-防御素需要基质金属蛋白酶-7(MMP-7)对前体进行蛋白水解激活,这促使人们分析天然和突变型Crp4以及前体Crp4分子对MMP-7降解的相对敏感性。尽管天然Crp4和前体Crp4的α-防御素部分完全抵抗蛋白水解,但所有二硫键变体都被MMP-7广泛降解。MMP-7切割消除了Crp4的杀菌活性。因此,Crp4二硫键排列并非决定α-防御素的杀菌活性,而是赋予了对这种关键激活蛋白酶降解的重要保护。