Rational Design of Novel Brevinin Analogues with Broad Antimicrobial Spectrum and Less Cytotoxicity

Xiaowei Zhou, Yitian Gao, Yuanxing Wang, Q. Xia, Ruimin Zhong, Yue Liu, Chengbang Ma, Mei Zhou, Xinping Xi, Chris Shaw, Di Wu, Tianbao Chen, Lei Wang, H. Kwok
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Abstract

Antimicrobial peptides (AMPs) are promising therapeutic alternatives to conventional antibiotics for the treatment of drug-resistant bacterial infections. However, the application of AMPs is limited because of moderate antimicrobial activity, high toxicity and high manufacturing costs. Conformation, net charge and amphipathicity are considered key factors in AMPs. In order to generate short AMPs with enhanced therapeutic efficacy, six peptides were designed based on the active motifs of natural AMPs followed by evaluating their biological activity, stability and cytotoxicity. Brevinin-OSd, OSe and OSf exhibited broad-spectrum antibacterial effects, especially OSf, which presented the highest therapeutic index for the tested bacteria. Also, these peptides displayed good stability. The results from CLSM, SEM and TEM studies, indicated that brevinin-OS, OSd, OSe and OSf possessed rapid bactericidal ability by disturbing membrane permeability and causing release of cytoplasm. In addition, OSd, OSe and OSf dramatically decreased the mortality of MRSA acutely-infected waxworms. Taken together, these data suggested that a balance between positive charge, degrees of α-helicity and hydrophobicity, is necessary for maintaining antimicrobial activity, and these data successfully contributed to the design of short AMPs with significant bactericidal activity and cell selectivity.
抗菌谱广、细胞毒性小的新型Brevinin类似物的合理设计
抗菌肽(AMPs)是传统抗生素治疗耐药细菌感染的有希望的治疗替代品。然而,由于抗菌活性不高、毒性高和制造成本高,抗菌肽的应用受到限制。构象、净电荷和两亲性被认为是amp的关键因素。为了获得具有较强治疗效果的短肽,我们根据天然肽的活性基序设计了6种肽,并对其生物活性、稳定性和细胞毒性进行了评价。Brevinin-OSd、OSe和OSf均表现出广谱的抑菌作用,其中OSf的抑菌指数最高。此外,这些肽具有良好的稳定性。CLSM、SEM和TEM研究结果表明,brevinin-OS、OSd、OSe和OSf通过扰乱细胞膜通透性和引起细胞质释放而具有快速杀菌能力。此外,OSd、OSe和OSf可显著降低MRSA急性感染的蜡虫死亡率。综上所述,这些数据表明,正电荷、α-螺旋度和疏水性之间的平衡是维持抗菌活性所必需的,这些数据成功地为设计具有显著杀菌活性和细胞选择性的短AMPs做出了贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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