| Literature DB >> 32369105 |
Jinxiu Peng1, Yang Yang2, Ping Zhao1, Shuai Qiu1, Fengjing Jia1, Jiayi Wang1, Xiaolei Liang3, Ahmed Shabbir Chaudhry1, Peihan Xu4, Wenjin Yan1, Zhaoqing Xu1, Kairong Wang1.
Abstract
Nowadays, drug-resistant microbes are becoming a serious clinical problem threatening people's health and life. Antimicrobial peptides (AMPs) are believed to be potential alternatives of conventional antibiotics to combat the threat of drug-resistant microbes. However, the susceptibility of AMPs toward proteases is one of the major problems limiting their clinical use. In the present study, we reported the effect of Cu2+ on the bioactivity of AMP HMPI. We found that the addition of Cu2+ could improve the protease resistance of AMP HMPI without affecting its bioactivity. Notably, after the binding of Cu2+ with HMPI, the hemolytic activity of HMPI was greatly decreased. In addition, our results also demonstrated that the addition of Cu2+ increased the production of reactive oxygen species in the fungal cells, which may be a supplement for the antifungal activity of HMPI. In conclusion, the introduction of Cu2+ may provide an inorganic strategy to improve the stability and decrease the hemolytic activity of AMP HMPI, while maintaining its antifungal activity.Entities:
Keywords: antifungal activity; antimicrobial peptide HMPI; protease; stability; trypsin
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Year: 2020 PMID: 32369105 DOI: 10.1093/abbs/gmaa043
Source DB: PubMed Journal: Acta Biochim Biophys Sin (Shanghai) ISSN: 1672-9145 Impact factor: 3.848