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首页> 外文期刊>The FEBS journal >Template-assisted rational design of peptide inhibitors of furin using the lysine fragment of the mung bean trypsin inhibitor
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Template-assisted rational design of peptide inhibitors of furin using the lysine fragment of the mung bean trypsin inhibitor

机译:利用绿豆胰蛋白酶抑制剂的赖氨酸片段进行模板酶辅助设计的弗林蛋白酶肽抑制剂

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摘要

Highly active, small-molecule furin inhibitors are attractive drug candidates to fend off bacterial exotoxins and viral infection. Based on the 22-residue, active Lys fragment of the mung bean trypsin inhibitor, a series of furin inhibitors were designed and synthesized, and their inhibitory activity towards furin and kexin was evaluated using enzyme kinetic analysis. The most potent inhibitor, containing 16 amino acid residues with a K-i value of 2.45 x 10(-9) M for furin and of 5.60 x 10(-7) M for kexin, was designed with three incremental approaches. First, two nonessential Cys residues in the Lys fragment were deleted via a Cys-to-Ser mutation to minimize peptide misfolding. Second, residues in the reactive site of the inhibitor were replaced by the consensus substrate recognition sequence of furin, namely, Arg at P-1, Lys at P-2, Arg at P-4 and Arg at P-6. In addition, the P-7 residue Asp was substituted with Ala to avoid possible electrostatic interference with furin inhibition. Finally, the extra N-terminal and C-terminal residues beyond the doubly conjugated disulfide loops were further truncated. However, all resultant synthetic peptides were found to be temporary inhibitors of furin and kexin during a prolonged incubation, with the scissile peptide bond between P-1 and P-1' being cleaved to different extents by the enzymes. To enhance proteolytic resistance, the P-1' residue Ser was mutated to D-Ser or N-methyl-Ser. The N-methyl-Ser mutant gave rise to a K-i value of 4.70 x 10(-8) M for furin, and retained over 80% inhibitory activity even after a 3 h incubation with the enzyme. By contrast, the D-Ser mutant was resistant to cleavage, although its inhibitory activity against furin drastically decreased. Our findings identify a useful template for the design of potent, specific and stable peptide inhibitors of furin, shedding light on the molecular determinants that dictate the inhibition of furin and kexin.
机译:高活性,小分子弗林蛋白酶抑制剂是抵御细菌外毒素和病毒感染的诱人药物。基于绿豆胰蛋白酶抑制剂的22个残基,有活性的Lys片段,设计和合成了一系列弗林蛋白酶抑制剂,并通过酶动力学分析评估了它们对弗林蛋白酶和酮类毒素的抑制活性。用三种增量方法设计了最有效的抑制剂,该抑制剂含有16个氨基酸残基,弗林蛋白酶的K-i值为2.45 x 10(-9)M,而克欣的K-i值为5.60 x 10(-7)M。首先,通过Cys-to-Ser突变删除了Lys片段中的两个非必需的Cys残基,以最大程度地减少肽错误折叠。其次,抑制剂的反应位点上的残基被弗林蛋白酶的共有底物识别序列所取代,即P-1处的Arg,P-2处的Lys,P-4处的Arg和P-6处的Arg。另外,P-7残基Asp被Ala取代,以避免可能的静电干扰弗林蛋白酶抑制作用。最后,进一步截断了双共轭二硫键以外的多余的N-末端和C-末端残基。然而,在长时间的孵育过程中,发现所有合成的肽都是弗林蛋白酶和kexin的临时抑制剂,P-1和P-1'之间的易裂肽键被酶裂解的程度不同。为了增强蛋白水解抗性,将P-1'残基Ser突变为D-Ser或N-甲基-Ser。 N-甲基-Ser突变体对弗林蛋白酶的K-i值为4.70 x 10(-8)M,即使在与该酶孵育3小时后仍保留了80%以上的抑制活性。相反,尽管D-Ser突变体对弗林蛋白酶的抑制活性大大降低,但它对裂解具有抗性。我们的发现为弗林蛋白酶的有效,特异性和稳定的肽抑制剂的设计提供了有用的模板,阐明了决定弗林蛋白酶和kexin抑制的分子决定因素。

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