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新型细胞穿透肽的设计用于 DNA、siRNA 和 mRNA 的递呈。

Design of a new cell penetrating peptide for DNA, siRNA and mRNA delivery.

机构信息

3Bio Team, CAMB 7199 CNRS - University of Strasbourg, Faculté de Pharmacie, Illkirch, France.

Institute of Pharmaceutical Science, School of Cancer & Pharmaceutical Science, King's College London, Franklin-Wilkins Building, London, UK.

出版信息

J Gene Med. 2022 Mar;24(3):e3401. doi: 10.1002/jgm.3401. Epub 2021 Dec 17.

Abstract

BACKGROUND

Delivery systems, including peptide-based ones, that destabilize endosomes in a pH-dependent manner are increasingly used to deliver cargoes of therapeutic interest, such as nucleic acids and proteins into mammalian cells.

METHODS

The negatively charged amphipathic alpha-helicoidal forming peptide named HELP (Helical Erythrocyte Lysing Peptide) is a derivative from the bee venom melittin and was shown to have a pH-dependent activity with the highest lytic activity at pH 5.0 at the same time as becoming inactive when the pH is increased. The present study aimed to determine whether replacement in the HELP peptide of the glutamic acid residues by histidines, for which the protonation state is sensitive to the pH changes that occur during endosomal acidification, can transform this fusogenic peptide into a carrier able to deliver different nucleic acids into mammalian cells.

RESULTS

The resulting HELP-4H peptide displays high plasmid DNA, small interfering RNA and mRNA delivery capabilities. Importantly, in contrast to other cationic peptides, its transfection activity was only marginally affected by the presence of serum. Using circular dichroism, we found that acidic pH did not induce significant conformational changes for HELP-4H.

CONCLUSIONS

In summary, we were able to develop a new cationic histidine rich peptide able to efficiently deliver various nucleic acids into cells.

摘要

背景

包括基于肽的递药系统在内,通过 pH 依赖性方式破坏内涵体的递药系统,正越来越多地被用于将具有治疗意义的载药,如核酸和蛋白质递送入哺乳动物细胞。

方法

带负电荷的两亲性α-螺旋形成肽命名为 HELP(螺旋红细胞溶解肽),是一种来自蜂毒蜂肽的衍生物,具有 pH 依赖性活性,在 pH 5.0 时具有最高的溶血性活性,而当 pH 升高时则失去活性。本研究旨在确定是否可以通过将 HELP 肽中的谷氨酸残基替换为组氨酸,从而将这种融合肽转化为能够将不同核酸递送入哺乳动物细胞的载体,因为组氨酸的质子化状态对内涵体酸化过程中发生的 pH 变化敏感。

结果

得到的 HELP-4H 肽显示出高的质粒 DNA、小干扰 RNA 和 mRNA 递送能力。重要的是,与其他阳离子肽不同,其转染活性仅受到血清存在的轻微影响。通过圆二色性,我们发现酸性 pH 不会引起 HELP-4H 的显著构象变化。

结论

总之,我们能够开发出一种新的阳离子富含组氨酸的肽,能够有效地将各种核酸递送入细胞。

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