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Antimicrobial activity and stability of the d -amino acid substituted derivatives of antimicrobial peptide polybia -MPI

机译:抗菌肽多态性-MPI的d-氨基酸取代衍生物的抗菌活性和稳定性

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Antimicrobial peptide has the potential to be developed as new kind of antimicrobial agents with novel action mechanism. However, the susceptibility to protease is a drawback for potential peptides to be clinical used. d-amino acid substitution can be one way to increase the proteolytic stability of peptides. In the present study, we synthesized the d-lysines substituted analog (d-lys-MPI) and the d-enantiomer of polybia-MPI (D-MPI) to improve the proteolytic resistance of polybia-MPI. Our results showed that, the stability of its d-amino acid partially substituted analog d-lys-MPI was increased. However, it lost antimicrobial activity at the tested concentration with the loss of α-helix content. As shown in the CD spectra, after substitution, the spectra of D-MPI is symmetrical to MPI, indicated it turned into left hand α-helical conformation. Excitingly, the stability of D-MPI toward the tested protease was improved greatly. Notably, the antimicrobial activity of D-MPI was comparable to its L-counterpart MPI, even improved. In addition, the hemolytic activity of D-MPI was lowered. This also indicated that the action target of antimicrobial peptide polybia-MPI was not chiral specific. So, D-MPI may offer a therapeutic strategy to defend the infection of microbes, considering its stability to protease and relatively lower cytotoxicity to human erythrocytes.
机译:抗菌肽具有被开发为具有新型作用机理的新型抗菌剂的潜力。但是,对蛋白酶的敏感性是临床上可能使用的肽的缺点。 d-氨基酸取代可以是增加肽的蛋白水解稳定性的一种方法。在本研究中,我们合成了d-赖氨酸取代的类似物(d-lys-MPI)和polybia-MPI的d-对映体(D-MPI),以提高polybia-MPI的蛋白水解性。我们的结果表明,其d-氨基酸部分取代的类似物d-lys-MPI的稳定性得到提高。但是,它在测试浓度下丧失了抗菌活性,同时损失了α-螺旋含量。如CD光谱所示,D-MPI的取代后的光谱与MPI对称,表明其变为左手α-螺旋构象。令人兴奋的是,D-MPI对测试的蛋白酶的稳定性大大提高。值得注意的是,D-MPI的抗微生物活性与其L-同行MPI相当,甚至有所提高。另外,D-MPI的溶血活性降低。这也表明抗微生物肽多比亚-MPI的作用靶标不是手性特异性的。因此,考虑到D-MPI对蛋白酶的稳定性以及对人红细胞的相对较低的细胞毒性,D-MPI可能会提供一种防御微生物感染的治疗策略。

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