TAT-RasGAP317-326 kills cells by targeting inner-leaflet–enriched phospholipids

Author:

Serulla MarcORCID,Ichim GabrielORCID,Stojceski FilipORCID,Grasso GianvitoORCID,Afonin SergiiORCID,Heulot MathieuORCID,Schober TimORCID,Roth RobynORCID,Godefroy Cédric,Milhiet Pierre-EmmanuelORCID,Das KushalORCID,García-Sáez Ana J.ORCID,Danani AndreaORCID,Widmann ChristianORCID

Abstract

TAT-RasGAP317–326 is a cell-penetrating peptide-based construct with anticancer and antimicrobial activities. This peptide kills a subset of cancer cells in a manner that does not involve known programmed cell death pathways. Here we have elucidated the mode of action allowing TAT-RasGAP317–326 to kill cells. This peptide binds and disrupts artificial membranes containing lipids typically enriched in the inner leaflet of the plasma membrane, such as phosphatidylinositol-bisphosphate (PIP2) and phosphatidylserine (PS). Decreasing the amounts of PIP2 in cells renders them more resistant to TAT-RasGAP317–326, while reducing the ability of cells to repair their plasma membrane makes them more sensitive to the peptide. The W317A TAT-RasGAP317–326 point mutant, known to have impaired killing activities, has reduced abilities to bind and permeabilize PIP2- and PS-containing membranes and to translocate through biomembranes, presumably because of a higher propensity to adopt an α-helical state. This work shows that TAT-RasGAP317–326 kills cells via a form of necrosis that relies on the physical disruption of the plasma membrane once the peptide targets specific phospholipids found on the cytosolic side of the plasma membrane.

Funder

France-BioImaging

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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