Investigating the impact of thiol reactivity and disulfide formation on cellular uptake of cell-permeable peptides

IF 1.8 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Peptide Science Pub Date : 2024-04-23 DOI:10.1002/psc.3604
Merlin Klußmann, Katharina Stillger, Melina Ruppel, Coco-Louisa Sticker, Ines Neundorf
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Abstract

Cell-penetrating peptides (CPPs) have been explored as versatile tools to transport various molecules into cells. The uptake mechanism of CPPs is still not clearly understood and most probably depends on several factors like the nature of the CPP itself, the attached cargo, the investigated cell system, and other experimental conditions, such as temperature and concentration. One of the first steps of internalization involves the interaction of CPPs with negatively charged molecules present at the outer layer of the cell membrane. Recently, thiol-mediated uptake has been found to support the effective translocation of sulfhydryl-bearing substances that would actually not be cell-permeable. Within this work, we aimed to understand the relevance of thiol reactivity for the uptake mechanism of cysteine-containing CPPs that we have developed previously in our group. Therefore, we compared the two peptides, sC18-Cys and CaaX-1, in their single reduced and dimeric disulfide versions. Cytotoxicity, intracellular accumulation, and impact on the internalization process of the disulfides were investigated in HeLa cells. Both disulfide CPPs demonstrated significantly stronger cytotoxic effects and membrane activity compared with their reduced counterparts. Notably, thiol-mediated uptake could be excluded as a main driver for translocation, showing that peptides like CaaX-1 are most likely taken up by other mechanisms.

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研究硫醇反应性和二硫化物的形成对细胞渗透肽吸收的影响
细胞穿透肽(CPPs)已被视为将各种分子转运到细胞内的多功能工具。人们对 CPPs 的吸收机制仍不十分清楚,它很可能取决于多种因素,如 CPP 本身的性质、附着的货物、研究的细胞系统以及温度和浓度等其他实验条件。内化的第一步涉及 CPP 与细胞膜外层带负电荷的分子相互作用。最近,人们发现硫醇介导的摄取支持了实际上不具有细胞渗透性的含硫物质的有效转运。在这项工作中,我们旨在了解硫醇反应性与我们小组之前开发的含半胱氨酸 CPPs 吸收机制的相关性。因此,我们比较了 sC18-Cys 和 CaaX-1 这两种肽的单一还原型和二聚二硫型。我们在 HeLa 细胞中研究了二硫化物的细胞毒性、细胞内积累以及对内化过程的影响。与还原型 CPP 相比,两种二硫型 CPP 的细胞毒性作用和膜活性都明显更强。值得注意的是,硫醇介导的吸收被排除在转运的主要驱动因素之外,这表明像 CaaX-1 这样的多肽很可能是通过其他机制被吸收的。
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来源期刊
Journal of Peptide Science
Journal of Peptide Science 生物-分析化学
CiteScore
3.40
自引率
4.80%
发文量
83
审稿时长
1.7 months
期刊介绍: The official Journal of the European Peptide Society EPS The Journal of Peptide Science is a cooperative venture of John Wiley & Sons, Ltd and the European Peptide Society, undertaken for the advancement of international peptide science by the publication of original research results and reviews. The Journal of Peptide Science publishes three types of articles: Research Articles, Rapid Communications and Reviews. The scope of the Journal embraces the whole range of peptide chemistry and biology: the isolation, characterisation, synthesis properties (chemical, physical, conformational, pharmacological, endocrine and immunological) and applications of natural peptides; studies of their analogues, including peptidomimetics; peptide antibiotics and other peptide-derived complex natural products; peptide and peptide-related drug design and development; peptide materials and nanomaterials science; combinatorial peptide research; the chemical synthesis of proteins; and methodological advances in all these areas. The spectrum of interests is well illustrated by the published proceedings of the regular international Symposia of the European, American, Japanese, Australian, Chinese and Indian Peptide Societies.
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