A new triphenylphosphonium-conjugated amphipathic cationic peptide with improved cell-penetrating and ROS-targeting properties

Q2 Agricultural and Biological Sciences Current Research in Pharmacology and Drug Discovery Pub Date : 2023-01-01 DOI:10.1016/j.crphar.2022.100148
Rezeda A. Ishkaeva , Diana V. Salakhieva , Ruslan Garifullin , Raghad Alshadidi , Alexander V. Laikov , Abdulla A. Yergeshov , Marat I. Kamalov , Timur I. Abdullin
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引用次数: 2

Abstract

We study for the first time whether triphenylphosphonium (TPP) moiety can improve cellular delivery and redox properties of amphipathic cationic peptides based on YRFK/YrFK cell-penetrating and cytoprotective motif. TPP moiety was found to increase reducing activity of both stereoisomeric peptides in solution and on electrode surface in association with TPP-mediated intramolecular interactions. Among TPP-conjugated peptides, newly synthesized TPP3-YrFK featured both increased antioxidant efficacy and proteolytic resistance. TPP-conjugated peptides preferably mitigated endogenic ROS in mitochondria and cytoplasm of model glioblastoma cells with increased oxidative status. This anti-ROS effect was accompanied by mild reversible decrease of reduced glutathione level in the cells with relatively weak change in glutathione redox forms ratio. Such low interference with cell redox status is in accordance with non-cytotoxic nature of the compounds. Intracellular concentrations of label-free peptides were analyzed by LC–MS/MS, which showed substantial TPP-promoted penetration of YrFK motif across cell plasma membrane. However, according to ΔΨm analysis, TPP moiety did not profoundly enhance peptide interaction with mitochondrial inner membrane. Our study clarifies the role of TPP moiety in cellular delivery of amphipathic cationic oligopeptides. The results suggest TPP moiety as a multi-functional modifier for the oligopeptides which is capable of improving cellular pharmacokinetics and antioxidant activity as well as targeting increased ROS levels. The results encourage further investigation of TPP3-YrFK as a peptide antioxidant with multiple benefits.

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一种新的三苯基鏻偶联的两亲性阳离子肽,具有改善的细胞穿透和ROS靶向性能
我们首次研究了三苯基鏻(TPP)部分是否可以改善基于YRFK/YRFK细胞穿透和细胞保护基序的两亲性阳离子肽的细胞递送和氧化还原特性。发现TPP部分与TPP介导的分子内相互作用相关,增加了溶液和电极表面立体异构肽的还原活性。在TPP偶联肽中,新合成的TPP3-YrFK具有增强的抗氧化能力和蛋白水解抗性。TPP缀合的肽优选减轻具有增加的氧化状态的模型胶质母细胞瘤细胞的线粒体和细胞质中的内源性ROS。这种抗ROS作用伴随着细胞中还原型谷胱甘肽水平的轻度可逆降低,谷胱甘肽氧化还原形式比率的变化相对较弱。这种对细胞氧化还原状态的低干扰符合化合物的非细胞毒性性质。通过LC–MS/MS分析了无标记肽的细胞内浓度,结果显示TPP显著促进了YrFK基序穿过细胞质膜。然而,根据ΔΨm分析,TPP部分并没有显著增强肽与线粒体内膜的相互作用。我们的研究阐明了TPP部分在两亲性阳离子寡肽的细胞递送中的作用。结果表明,TPP部分是寡肽的多功能修饰剂,能够改善细胞药代动力学和抗氧化活性,并靶向增加的ROS水平。该结果鼓励进一步研究TPP3-YrFK作为一种具有多种益处的肽抗氧化剂。
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来源期刊
Current Research in Pharmacology and Drug Discovery
Current Research in Pharmacology and Drug Discovery Agricultural and Biological Sciences-Animal Science and Zoology
CiteScore
6.40
自引率
0.00%
发文量
65
审稿时长
40 days
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