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Flexible Fitting To Cryo-Electron Microscopy Maps With Coarse-Grained Elastic Network Models

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Date

2018

Journal Title

Journal ISSN

Volume Title

Publisher

Taylor & Francis Ltd

Abstract

Cryo-electron microscopy has become an important tool for protein structure determination in recent decades. Since proteins may exist in multiple conformational states, combining high resolution X-ray or NMR structures with cryo-electron microscopy maps is a useful approach to obtain proteins in different functional states. Flexible fitting methods used in cryo-electron microscopy aim to obtain an unknown protein conformation from a high resolution structure and a cryo-electron microscopy map. Since all-atom flexible fitting is computationally expensive, many efficient flexible fitting algorithms that utilize coarse-grained elastic network models have been proposed. In this study, we investigated performance of three coarse-grained elastic network model-based flexible fitting methods (EMFF, iModFit, NMFF) using 25 protein pairs at four resolutions. This study shows that the application of coarse-grained elastic network models to flexible fitting of cryo-electron microscopy maps can provide fast and fruitful models of various conformational states of proteins.

Description

Tekpinar, Mustafa/0000-0002-0207-0446

Keywords

Coarse-Grained Elastic Network Model, Normal Mode, Flexible Fitting, Cryo-Electron Microscopy Map, Protein Conformation

Turkish CoHE Thesis Center URL

WoS Q

Q3

Scopus Q

Q3

Source

Volume

44

Issue

8

Start Page

688

End Page

696