“Rich arginine and strong positive charge” antimicrobial protein protamine: From its action on cell membranes to inhibition of bacterial vital functions

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-04-16 DOI:10.1016/j.bbamem.2024.184323
Momoka Ookubo , Yuka Tashiro , Kosuke Asano , Yoshiharu Kamei , Yoshikazu Tanaka , Takayuki Honda , Takeshi Yokoyama , Michiyo Honda
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Abstract

Protamine, an antimicrobial protein derived from salmon sperm with a molecular weight of approximately 5 kDa, is composed of 60–70 % arginine and is a highly charged protein. Here, we investigated the mechanism of antimicrobial action of protamine against Cutibacterium acnes (C. acnes) focusing on its rich arginine content and strong positive charge. Especially, we focused on the attribution of dual mechanisms of antimicrobial protein, including membrane disruption or interaction with intracellular components. We first determined the dose-dependent antibacterial activity of protamine against C. acnes. In order to explore the interaction between bacterial membrane and protamine, we analyzed cell morphology, zeta potential, membrane permeability, and the composition of membrane fatty acid. In addition, the localization of protamine in bacteria was observed using fluorescent-labeled protamine. For investigation of the intracellular targets of protamine, bacterial translation was examined using a cell-free translation system. Based on our results, the mechanism of the antimicrobial action of protamine against C. acnes is as follows: 1) electrostatic interactions with the bacterial cell membrane; 2) self-internalization into the bacterial cell by changing the composition of the bacterial membrane; and 3) inhibition of bacterial growth by blocking translation inside the bacteria. However, owing to its strong electric charge, protamine can also interact with DNA, RNA, and other proteins inside the bacteria, and may inhibit various bacterial life processes beyond the translation process.

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"富含精氨酸、带强正电荷 "的抗菌蛋白质原胺:从对细胞膜的作用到抑制细菌的生命功能
质胺是从鲑鱼精子中提取的一种抗菌蛋白质,分子量约为 5 kDa,由 60-70 % 的精氨酸组成,是一种高电荷蛋白质。在这里,我们研究了原胺对痤疮棒状杆菌(C. acnes)的抗菌作用机制,重点是其丰富的精氨酸含量和强正电荷。我们尤其关注抗菌蛋白的双重机制,包括膜破坏或与细胞内成分的相互作用。我们首先测定了原胺对痤疮丙酸杆菌的剂量依赖性抗菌活性。为了探究细菌膜与原胺之间的相互作用,我们分析了细胞形态、ZETA电位、膜通透性和膜脂肪酸的组成。此外,我们还使用荧光标记的原胺观察了原胺在细菌中的定位。为了研究质胺在细胞内的作用靶点,使用无细胞翻译系统对细菌翻译进行了检测。根据我们的研究结果,原胺对痤疮丙酸杆菌的抗菌作用机制如下:1) 与细菌细胞膜的静电相互作用;2) 通过改变细菌膜的成分而自我内化到细菌细胞中;3) 通过阻断细菌内部的翻译而抑制细菌生长。然而,由于其强电荷,原胺还能与细菌内部的 DNA、RNA 和其他蛋白质相互作用,并可能抑制翻译过程以外的各种细菌生命过程。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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