CORE
CO
nnecting
RE
positories
Services
Services overview
Explore all CORE services
Access to raw data
API
Dataset
FastSync
Content discovery
Recommender
Discovery
OAI identifiers
OAI Resolver
Managing content
Dashboard
Bespoke contracts
Consultancy services
Support us
Support us
Membership
Sponsorship
Research partnership
About
About
About us
Our mission
Team
Blog
FAQs
Contact us
Community governance
Governance
Advisory Board
Board of supporters
Research network
Innovations
Our research
Labs
research
On the conservation of the slow conformational dynamics within the amino acid kinase family: NAGK the paradigm
Authors
A Bakan
A Thomas
+65 more
A Warshel
A Zen
A Zen
AR Atilgan
C Bode
C Chennubhotla
C Chennubhotla
C Marco-Marin
C Marco-Marin
CY Xu
D Haas
D Riccardi
D Tobi
DA Kondrashov
DE Koshland
DM Ming
E Eyal
E Lindahl
Enrique Marcos
EZ Eisenmesser
F Gil-Ortiz
F Tama
F Tama
GH Li
GM Suel
I Bahar
I Bahar
Ivet Bahar
J Monod
J Villa
JM Anglada
JP Changeux
K Henzler-Wildman
K Hinsen
K Suhre
KI Okazaki
L Holm
L Liu
L Mouawad
L Yang
LC James
LW Yang
LW Yang
M Roca
M Rueda
M Wolf-Watz
Michael Levitt
ML Fernandez-Murga
NM Goodey
OF Lange
PK Agarwal
PK Agarwal
Ramon Crehuet
S Kundu
S Nicolay
S Ramon-Maiques
S Ramon-Maiques
S Ramon-Maiques
SM Sullivan
T Haliloglu
W Humphrey
WG Krebs
WJ Zheng
WJ Zheng
WL DeLano
Publication date
1 January 2010
Publisher
'Public Library of Science (PLoS)'
Doi
View
on
PubMed
Abstract
N-Acetyl-L-Glutamate Kinase (NAGK) is the structural paradigm for examining the catalytic mechanisms and dynamics of amino acid kinase family members. Given that the slow conformational dynamics of the NAGK (at the microseconds time scale or slower) may be rate-limiting, it is of importance to assess the mechanisms of the most cooperative modes of motion intrinsically accessible to this enzyme. Here, we present the results from normal mode analysis using an elastic network model representation, which shows that the conformational mechanisms for substrate binding by NAGK strongly correlate with the intrinsic dynamics of the enzyme in the unbound form. We further analyzed the potential mechanisms of allosteric signalling within NAGK using a Markov model for network communication. Comparative analysis of the dynamics of family members strongly suggests that the low-frequency modes of motion and the associated intramolecular couplings that establish signal transduction are highly conserved among family members, in support of the paradigm sequence→structure→dynamics→function © 2010 Marcos et al
Similar works
Full text
Open in the Core reader
Download PDF
Available Versions
Crossref
See this paper in CORE
Go to the repository landing page
Download from data provider
Last time updated on 10/12/2019
Name not available
See this paper in CORE
Go to the repository landing page
Download from data provider
oai:d-scholarship.pitt.edu:133...
Last time updated on 23/11/2016
CiteSeerX
See this paper in CORE
Go to the repository landing page
Download from data provider
oai:CiteSeerX.psu:10.1.1.1004....
Last time updated on 12/04/2017
D-Scholarship@Pitt
See this paper in CORE
Go to the repository landing page
Download from data provider
oai:d-scholarship.pitt.edu:133...
Last time updated on 19/07/2013
Public Library of Science (PLOS)
See this paper in CORE
Go to the repository landing page
Download from data provider
Last time updated on 05/06/2019
Name not available
See this paper in CORE
Go to the repository landing page
Download from data provider
oai:d-scholarship.pitt.edu:133...
Last time updated on 15/12/2016