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Similarities and Differences between Crystal and Enzyme Environmental Effects on the Electron Density of Drug Molecules.


ABSTRACT: The crystal interaction density is generally assumed to be a suitable measure of the polarization of a low-molecular weight ligand inside an enzyme, but this approximation has seldomly been tested and has never been quantified before. In this study, we compare the crystal interaction density and the interaction electrostatic potential for a model compound of loxistatin acid (E64c) with those inside cathepsin?B, in solution, and in vacuum. We apply QM/MM calculations and experimental quantum crystallography to show that the crystal interaction density is indeed very similar to the enzyme interaction density. Less than 0.1?e are shifted between these two environments in total. However, this difference has non-negligible consequences for derived properties.

SUBMITTER: Kleemiss F 

PROVIDER: S-EPMC7898524 | biostudies-literature | 2021 Feb

REPOSITORIES: biostudies-literature

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Similarities and Differences between Crystal and Enzyme Environmental Effects on the Electron Density of Drug Molecules.

Kleemiss Florian F   Wieduwilt Erna K EK   Hupf Emanuel E   Shi Ming W MW   Stewart Scott G SG   Jayatilaka Dylan D   Turner Michael J MJ   Sugimoto Kunihisa K   Nishibori Eiji E   Schirmeister Tanja T   Schmidt Thomas C TC   Engels Bernd B   Grabowsky Simon S  

Chemistry (Weinheim an der Bergstrasse, Germany) 20210114 10


The crystal interaction density is generally assumed to be a suitable measure of the polarization of a low-molecular weight ligand inside an enzyme, but this approximation has seldomly been tested and has never been quantified before. In this study, we compare the crystal interaction density and the interaction electrostatic potential for a model compound of loxistatin acid (E64c) with those inside cathepsin B, in solution, and in vacuum. We apply QM/MM calculations and experimental quantum crys  ...[more]

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