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Genetic, cellular, and structural characterization of the membrane potential-dependent cell-penetrating peptide translocation pore

Elife. 2021-10; 
Evgeniya Trofimenko, Gianvito Grasso, Mathieu Heulot, Nadja Chevalier, Marco A Deriu, Gilles Dubuis, Yoan Arribat, Marc Serulla, Sebastien Michel, Gil Vantomme, Florine Ory, Linh Chi Dam, Julien Puyal, Francesca Amati, Anita Lüthi, Andrea Danani, Christian Widmann
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摘要

Cell-penetrating peptides (CPPs) allow intracellular delivery of bioactive cargo molecules. The mechanisms allowing CPPs to enter cells are ill-defined. Using a CRISPR/Cas9-based screening, we discovered that KCNQ5, KCNN4, and KCNK5 potassium channels positively modulate cationic CPP direct translocation into cells by decreasing the transmembrane potential (V). These findings provide the first unbiased genetic validation of the role of V in CPP translocation in cells. In silico modeling and live cell experiments indicate that CPPs, by bringing positive charges on the outer surface of the plasma membrane, decrease the V to very low values (-150 mV or less), a situation we have coined megapolarization that then t... More

关键词

In silico modeling, TAT, cell biology, cell-penetrating peptides, membrane potential, mouse, potassium channels, water pores, zebrafish