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Differential Processing of α- and β-Defensin Precursors by Matrix Metalloproteinase-7 (MMP-7)

机译:α-防御素和β-防御素前体的差异加工 基质金属蛋白酶7 (MMP-7)

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摘要

Proteolytic processing of defensins is a critical mode of posttranslational regulation of peptide activity. Because mouse α-defensin precursors are cleaved and activated by matrix metalloproteinase-7 (MMP-7), we determined if additional defensin molecules, namely human neutrophil defensin pro-HNP-1 and β-defensins, are targets for MMP-7. We found that MMP-7 cleaves within the pro-domain of the HNP-1 precursor, a reaction that does not generate the mature peptide but produces a 59-amino acid intermediate. This intermediate, which retains the carboxyl-terminal end of the pro-domain, had antimicrobial activity, indicating that the residues important for masking defensin activity reside in the amino terminus of this domain. Mature HNP-1 was resistant to processing by MMP-7 unless the peptide was reduced and alkylated, demonstrating that only the pro-domain of α-defensins is normally accessible for cleavage by this enzyme. From the 47-residue HBD-1 precursor, MMP-7 catalyzed removal of 6 amino acids from the amino terminus. Neither a 39-residue intermediate form of HBD-1 nor the mature 36-residue form of HBD-1 was cleaved by MMP-7. In addition, both pro-HBD-2, with its shorter amino-terminal extension, and pro-HBD-3 were resistant to MMP-7. However, human and mouse β-defensin precursors that lack disulfide bonding contain a cryptic MMP-7-sensitive site within the mature peptide moiety. These findings support and extend accumulating evidence that the native three-dimensional structure of both α- and β-defensins protects the mature peptides against proteolytic processing by MMP-7. We also conclude that sites for MMP-7 cleavage are more common at the amino termini of α-defensin rather than β-defensin precursors, and that catalysis at these sites in α-defensin pro-domains results in acquisition of defensin activity.
机译:防御素的蛋白水解加工是肽活性的翻译后调节的关键模式。由于小鼠α-防御素前体被基质金属蛋白酶7(MMP-7)裂解并激活,因此我们确定了其他防御素分子(即人中性粒细胞防御素原HNP-1和β-防御素)是否是MMP-7的靶标。我们发现,MMP-7在HNP-1前体的前结构域内裂解,该反应不会产生成熟的肽,但会产生59个氨基酸的中间体。保留前结构域羧基末端的该中间体具有抗菌活性,表明对于掩盖防御素活性重要的残基位于该结构域的氨基末端。除非肽被还原并烷基化,否则成熟的HNP-1对MMP-7的加工具有抗性,表明该酶通常仅可切割α-防御素的前结构域。从47个残基的HBD-1前体中,MMP-7催化从氨基末端去除6个氨基酸。 MMP-7既不切割HBD-1的39个残基的中间形式,也不切割HBD-1的36个残基的成熟形式。另外,具有较短氨基末端延伸的pro-HBD-2和pro-HBD-3均对MMP-7具有抗性。然而, 缺乏二硫键的人类和小鼠β-防御素前体含有 成熟肽部分中的MMP-7敏感敏感位点。这些 调查结果支持并扩展了积累的证据 α-防御素和β-防御素的三维结构可保护 成熟肽抵抗MMP-7的蛋白水解过程。我们还得出结论: MMP-7切割的位点更常见于 α-防御素而不是β-防御素的前体,并且在 这些位于α-防御素前结构域的位点导致获得防御素 活动。

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