학술논문

Increasing the Realism of in SilicopHLIP Peptide Models with a Novel pH Gradient CpHMD Method
Document Type
Article
Source
Journal of Chemical Theory and Computation; November 2022, Vol. 18 Issue: 11 p6472-6481, 10p
Subject
Language
ISSN
15499618; 15499626
Abstract
The pH-low insertion peptides (pHLIP) are pH-dependent membrane inserting peptides, whose function depends on the cell microenvironment acidity. Several peptide variants have been designed to improve upon the wt-sequence, particularly the state transition kinetics and the selectivity for tumor pH. The variant 3 (Var3) peptide is a 27 residue long peptide, with a key titrating residue (Asp-13) that, despite showing a modest performance in liposomes (pKins∼ 5.0), excelled in tumor cell experiments. To help rationalize these results, we focused on the pH gradient in the cell membrane, which is one of the crucial properties that are not present in liposomes. We extended our CpHMD-L method and its pH replica-exchange (pHRE) implementation to include a pH gradient and mimic the pHLIP-membrane microenvironment in a cell where the internal pH is fixed (pH 7.2) and the external pH is allowed to change. We showed that, by properly modeling the pH-gradient, we can correctly predict the experimentally observed loss and gain of performance in tumor cells experiments by the wtand Var3 sequences, respectively. In sum, the pH gradient implementation allowed for more accurate and realistic pKaestimations and was a pivotal step in bridging the in silicodata and the in vivocell experiments.