Conformational dynamics of Escherichia coli flavodoxins in apo- and holo-states by solution NMR spectroscopy.

Flavodoxins are a family of small FMN-binding proteins that commonly exist in prokaryotes. They utilize a non-covalently bound FMN molecule to act as the redox center during the electron transfer processes in various important biological pathways. Although extensive investigations were performed, de...

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Main Authors: Qian Ye, Yunfei Hu, Changwen Jin
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4122359?pdf=render
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spelling doaj-39cd72b352164ace94dfb36720694b4b2020-11-25T02:22:09ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0198e10393610.1371/journal.pone.0103936Conformational dynamics of Escherichia coli flavodoxins in apo- and holo-states by solution NMR spectroscopy.Qian YeYunfei HuChangwen JinFlavodoxins are a family of small FMN-binding proteins that commonly exist in prokaryotes. They utilize a non-covalently bound FMN molecule to act as the redox center during the electron transfer processes in various important biological pathways. Although extensive investigations were performed, detailed molecular mechanisms of cofactor binding and electron transfer remain elusive. Herein we report the solution NMR studies on Escherichia coli flavodoxins FldA and YqcA, belonging to the long-chain and short-chain flavodoxin subfamilies respectively. Our structural studies demonstrate that both proteins show the typical flavodoxin fold, with extensive conformational exchanges observed near the FMN binding pocket in their apo-forms. Cofactor binding significantly stabilizes both proteins as revealed by the extension of secondary structures in the holo-forms, and the overall rigidity shown by the backbone dynamics data. However, the 50 s loops of both proteins in the holo-form still show conformational exchanges on the µs-ms timescales, which appears to be a common feature in the flavodoxin family, and might play an important role in structural fine-tuning during the electron transfer reactions.http://europepmc.org/articles/PMC4122359?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Qian Ye
Yunfei Hu
Changwen Jin
spellingShingle Qian Ye
Yunfei Hu
Changwen Jin
Conformational dynamics of Escherichia coli flavodoxins in apo- and holo-states by solution NMR spectroscopy.
PLoS ONE
author_facet Qian Ye
Yunfei Hu
Changwen Jin
author_sort Qian Ye
title Conformational dynamics of Escherichia coli flavodoxins in apo- and holo-states by solution NMR spectroscopy.
title_short Conformational dynamics of Escherichia coli flavodoxins in apo- and holo-states by solution NMR spectroscopy.
title_full Conformational dynamics of Escherichia coli flavodoxins in apo- and holo-states by solution NMR spectroscopy.
title_fullStr Conformational dynamics of Escherichia coli flavodoxins in apo- and holo-states by solution NMR spectroscopy.
title_full_unstemmed Conformational dynamics of Escherichia coli flavodoxins in apo- and holo-states by solution NMR spectroscopy.
title_sort conformational dynamics of escherichia coli flavodoxins in apo- and holo-states by solution nmr spectroscopy.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Flavodoxins are a family of small FMN-binding proteins that commonly exist in prokaryotes. They utilize a non-covalently bound FMN molecule to act as the redox center during the electron transfer processes in various important biological pathways. Although extensive investigations were performed, detailed molecular mechanisms of cofactor binding and electron transfer remain elusive. Herein we report the solution NMR studies on Escherichia coli flavodoxins FldA and YqcA, belonging to the long-chain and short-chain flavodoxin subfamilies respectively. Our structural studies demonstrate that both proteins show the typical flavodoxin fold, with extensive conformational exchanges observed near the FMN binding pocket in their apo-forms. Cofactor binding significantly stabilizes both proteins as revealed by the extension of secondary structures in the holo-forms, and the overall rigidity shown by the backbone dynamics data. However, the 50 s loops of both proteins in the holo-form still show conformational exchanges on the µs-ms timescales, which appears to be a common feature in the flavodoxin family, and might play an important role in structural fine-tuning during the electron transfer reactions.
url http://europepmc.org/articles/PMC4122359?pdf=render
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AT changwenjin conformationaldynamicsofescherichiacoliflavodoxinsinapoandholostatesbysolutionnmrspectroscopy
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