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大环细胞穿透肽:结构-穿透特性研究

Macrocyclic cell penetrating peptides: a study of structure-penetration properties.

作者信息

Traboulsi Hassan, Larkin Heidi, Bonin Marc-André, Volkov Leonid, Lavoie Christine L, Marsault Éric

机构信息

†Institut de Pharmacologie de Sherbrooke, Department of Pharmacology and Physiology, Faculty of Medicine and Health Sciences and ‡Biophotonics Core Facility, Centre de Recherche du Centre Hospitalier, Université de Sherbrooke, Sherbrooke, Quebec J1H 5N4, Canada.

出版信息

Bioconjug Chem. 2015 Mar 18;26(3):405-11. doi: 10.1021/acs.bioconjchem.5b00023. Epub 2015 Feb 19.

Abstract

Arginine-rich cell penetrating peptides are short cationic peptides able to cross biological membranes despite their peptidic character. In order to optimize their penetration properties and further elucidate their mechanisms of cellular entry, these peptides have been intensively studied for the last two decades. Although several parameters are simultaneously involved in the internalization mechanism, recent studies suggest that structural modifications influence cellular internalization. Particularly, backbone rigidification, including macrocyclization, was found to enhance proteolytic stability and cellular uptake. In the present work, we describe the synthesis of macrocyclic arginine-rich cell penetrating peptides and study their cellular uptake properties using a combination of flow cytometry and confocal microscopy. By varying ring size, site of cyclization, and stereochemistry of the arginine residues, we studied their structure-uptake relationship and showed that the mode and site of cyclization as well as the stereochemistry influence cellular uptake. This study led to the identification of a hepta-arginine macrocycle as efficient as its linear nona-arginine congener to enter cells.

摘要

富含精氨酸的细胞穿透肽是短阳离子肽,尽管具有肽的特性,但仍能够穿过生物膜。在过去的二十年中,为了优化其穿透特性并进一步阐明其细胞进入机制,对这些肽进行了深入研究。尽管内化机制同时涉及几个参数,但最近的研究表明,结构修饰会影响细胞内化。特别是,包括大环化在内的主链刚性化被发现可增强蛋白水解稳定性和细胞摄取。在本工作中,我们描述了大环化富含精氨酸的细胞穿透肽的合成,并结合流式细胞术和共聚焦显微镜研究了它们的细胞摄取特性。通过改变环大小、环化位点和精氨酸残基的立体化学,我们研究了它们的结构-摄取关系,并表明环化模式和位点以及立体化学会影响细胞摄取。这项研究导致鉴定出一种七聚精氨酸大环,其进入细胞的效率与其线性九聚精氨酸类似物相同。

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