| Literature DB >> 32557993 |
Kentarou Sakamoto1, Misao Akishiba1, Takahiro Iwata1, Kazuya Murata2, Seiya Mizuno2, Kenichi Kawano1, Miki Imanishi1, Fumihiro Sugiyama2, Shiroh Futaki1.
Abstract
Endocytic pathways are practical routes for the intracellular delivery of biomacromolecules. Along with this, effective strategies for endosomal cargo release into the cytosol are desired to achieve successful delivery. Focusing on compositional differences between the cell and endosomal membranes and the pH decrease within endosomes, we designed the lipid-sensitive and pH-responsive endosome-lytic peptide HAad. This peptide contains aminoadipic acid (Aad) residues, which serve as a safety catch for preferential permeabilization of endosomal membranes over cell membranes, and His-to-Ala substitutions enhance the endosomolytic activity. The ability of HAad to destabilize endosomal membranes was supported by model studies using large unilamellar vesicles (LUVs) and by increased intracellular delivery of biomacromolecules (including antibodies) into live cells. Cerebral ventricle injection of Cre recombinase with HAad led to Cre/loxP recombination in a mouse model, thus demonstrating potential applicability of HAad in vivo.Entities:
Keywords: cationic peptides; cell-penetrating peptides; cytosolic delivery; endosomal escape; protein delivery
Year: 2020 PMID: 32557993 DOI: 10.1002/anie.202005887
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336