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首页> 外文期刊>Peptides: An International Journal >Effect of proline position on the antimicrobial mechanism of buforin II.
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Effect of proline position on the antimicrobial mechanism of buforin II.

机译:脯氨酸位置对buforin II抗菌机制的影响。

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Buforin II (BF2) is a histone-derived antimicrobial peptide that causes cell death by translocating across membranes and interacting with nucleic acids. It contains one proline residue critical for its function. Previous research found that mutations replacing proline lead to decreased membrane translocation and antimicrobial activity as well as increased membrane permeabilization. This study further investigates the role of proline in BF2's antimicrobial mechanism by considering the effect of changing proline position on membrane translocation, membrane permeabilization, and antimicrobial activity. For this purpose, four mutants were made with proline substitution (P11A) or relocation (P11A/G7P, P11A/V12P, P11A/V15P). These mutations altered the amount of helical content. Although antimicrobial activity correlated with the alpha-helical content for the peptides containing proline, membrane translocation did not. This observation suggests that factors in BF2's bactericidal mechanism other than translocation must be altered by these mutations. To better explain these trends we also measured the nucleic acid binding and membrane permeabilization of the mutant peptides. A comparison of mutant and wild type BF2 activity revealed that BF2 relies principally on membrane translocation and nucleic acid binding for antimicrobial activity, although membrane permeabilization may play a secondary role for some BF2 variants. A better understanding of the role of proline in the BF2 antimicrobial mechanism will contribute to the further design and development of BF2 analogs. Moreover, since proline residues are prevalent among other antimicrobial peptides, this systematic characterization of BF2 provides general insights that can promote our understanding of other systems.
机译:Buforin II(BF2)是一种组蛋白衍生的抗菌肽,可通过跨膜转运并与核酸相互作用而导致细胞死亡。它含有一个对其功能至关重要的脯氨酸残基。先前的研究发现,取代脯氨酸的突变导致减少的膜转运和抗菌活性以及增加的膜通透性。本研究通过考虑脯氨酸位置变化对膜易位,膜通透性和抗菌活性的影响,进一步研究了脯氨酸在BF2抗菌机制中的作用。为此目的,制备了四个具有脯氨酸取代(P11A)或重定位(P11A / G7P,P11A / V12P,P11A / V15P)的突变体。这些突变改变了螺旋含量。尽管抗菌活性与含有脯氨酸的肽的α-螺旋含量相关,但膜移位却没有。该观察结果表明,必须通过这些突变来改变BF2杀菌机制中除易位以外的其他因素。为了更好地解释这些趋势,我们还测量了突变肽的核酸结合和膜通透性。突变型和野生型BF2活性的比较显示,BF2主要依赖膜移位和核酸结合来具有抗微生物活性,尽管膜通透性可能对某些BF2变体起次要作用。更好地了解脯氨酸在BF2抗菌机制中的作用将有助于BF2类似物的进一步设计和开发。此外,由于脯氨酸残基在其他抗菌肽中普遍存在,因此BF2的系统表征提供了可促进我们对其他系统的理解的一般见识。

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