质膜去极化揭示细胞穿透肽的内体逃逸能力不足。

Plasma membrane depolarization reveals endosomal escape incapacity of cell-penetrating peptides.

机构信息

Department of Biomedical Sciences, University of Lausanne, 1005 Lausanne, Switzerland.

Department of Chemistry, The University of Chicago, Chicago, IL 60637, USA; Grossman Institute of Neuroscience, Quantitative Biology and Human Behavior, The University of Chicago, Chicago, IL 60637, USA.

出版信息

Eur J Pharm Biopharm. 2023 Mar;184:116-124. doi: 10.1016/j.ejpb.2023.01.019. Epub 2023 Jan 26.

Abstract

Cell-penetrating peptides (CPPs) are short (<30 amino acids), generally cationic, peptides that deliver diverse cargos into cells. CPPs access the cytosol either by direct translocation through the plasma membrane or via endocytosis followed by endosomal escape. Both direct translocation and endosomal escape can occur simultaneously, making it non-trivial to specifically study endosomal escape alone. Here we depolarize the plasma membrane and showed that it inhibits the direct translocation of several CPPs but does not affect their uptake into endosomes. Despite good endocytic uptake many CPPs previously considered to access the cytosol via endosomal escape, failed to access the cytosol once direct translocation was abrogated. Even CPPs designed for enhanced endosomal escape actually showed negligible endosomal escape into the cytosol. Our data reveal that cytosolic localization of CPPs occurs mainly by direct translocation across the plasma membrane. Cell depolarization represents a simple manipulation to stringently test the endosomal escape capacity of CPPs.

摘要

细胞穿透肽(CPPs)是短肽(<30 个氨基酸),通常带正电荷,能够将各种 cargos 递送到细胞内。CPPs 通过直接穿过质膜或通过内吞作用随后通过内涵体逃逸进入细胞质。直接转位和内涵体逃逸都可以同时发生,因此单独研究内涵体逃逸是非同寻常的。在这里,我们去极化质膜,结果表明它抑制了几种 CPP 的直接转位,但不影响它们进入内涵体。尽管内吞作用摄取良好,但许多以前被认为通过内涵体逃逸进入细胞质的 CPP ,一旦直接转位被阻断,就无法进入细胞质。即使是设计用于增强内涵体逃逸的 CPP ,实际上也很少有内涵体逃逸到细胞质中。我们的数据表明 CPPs 的细胞质定位主要通过质膜的直接转位发生。细胞去极化是一种简单的操作,可以严格测试 CPPs 的内涵体逃逸能力。

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