Literature DB >> 21840296

ATP hydrolysis at one of the two sites in ABC transporters initiates transport related conformational transitions.

Gergely Gyimesi1, Srinivas Ramachandran, Pradeep Kota, Nikolay V Dokholyan, Balázs Sarkadi, Tamás Hegedus.   

Abstract

ABC transporters play important roles in all types of organisms by participating in physiological and pathological processes. In order to modulate the function of ABC transporters, detailed knowledge regarding their structure and dynamics is necessary. Available structures of ABC proteins indicate three major conformations, a nucleotide-bound "bottom-closed" state with the two nucleotide binding domains (NBDs) tightly closed, and two nucleotide-free conformations, the "bottom-closed" and the "bottom-open", which differ in the extent of separation of the NBDs. However, it remains a question how the widely open conformation should be interpreted, and whether hydrolysis at one of the sites can drive conformational transitions while the NBDs remain in contact. To extend our knowledge, we have investigated the dynamic properties of the Sav1866 transporter using molecular dynamics (MD) simulations. We demonstrate that the replacement of one ATP by ADP alters the correlated motion patterns of the NBDs and the transmembrane domains (TMD). The results suggest that the hydrolysis of a single nucleotide could lead to extracellular closure, driving the transport cycle. Essential dynamics analysis of simulations suggests that single nucleotide hydrolysis can drive the system toward a "bottom-closed" apo conformation similar to that observed in the structure of the MsbA transporter. We also found significant structural instability of the "bottom-open" form of the transporters in simulations. Our results suggest that ATP hydrolysis at one of the sites promotes transport related conformational changes leading to the "bottom-closed" apo conformation, which could thus be physiologically more relevant for describing the structure of the apo state.
Copyright © 2011 Elsevier B.V. All rights reserved.

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Year:  2011        PMID: 21840296     DOI: 10.1016/j.bbamem.2011.07.038

Source DB:  PubMed          Journal:  Biochim Biophys Acta        ISSN: 0006-3002


  17 in total

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2.  Discrete molecular dynamics: an efficient and versatile simulation method for fine protein characterization.

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Journal:  J Phys Chem B       Date:  2012-02-10       Impact factor: 2.991

3.  Hydrolysis at one of the two nucleotide-binding sites drives the dissociation of ATP-binding cassette nucleotide-binding domain dimers.

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Journal:  J Biol Chem       Date:  2013-10-15       Impact factor: 5.157

Review 4.  Nonequilibrium gating of CFTR on an equilibrium theme.

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Journal:  Physiology (Bethesda)       Date:  2012-12

5.  Mechanistic picture for conformational transition of a membrane transporter at atomic resolution.

Authors:  Mahmoud Moradi; Emad Tajkhorshid
Journal:  Proc Natl Acad Sci U S A       Date:  2013-11-04       Impact factor: 11.205

Review 6.  Visualizing functional motions of membrane transporters with molecular dynamics simulations.

Authors:  Saher A Shaikh; Jing Li; Giray Enkavi; Po-Chao Wen; Zhijian Huang; Emad Tajkhorshid
Journal:  Biochemistry       Date:  2013-01-17       Impact factor: 3.162

7.  On the origin of large flexibility of P-glycoprotein in the inward-facing state.

Authors:  Po-Chao Wen; Brandy Verhalen; Stephan Wilkens; Hassane S Mchaourab; Emad Tajkhorshid
Journal:  J Biol Chem       Date:  2013-05-08       Impact factor: 5.157

8.  Tertiary structure prediction and identification of druggable pocket in the cancer biomarker - Osteopontin-c.

Authors:  Subramaniam Sivakumar; Sivasitambaram Niranjali Devaraj
Journal:  J Diabetes Metab Disord       Date:  2014-01-08

9.  Access Path to the Ligand Binding Pocket May Play a Role in Xenobiotics Selection by AhR.

Authors:  Dániel Szöllősi; Áron Erdei; Gergely Gyimesi; Csaba Magyar; Tamás Hegedűs
Journal:  PLoS One       Date:  2016-01-04       Impact factor: 3.240

10.  Jump into a New Fold-A Homology Based Model for the ABCG2/BCRP Multidrug Transporter.

Authors:  Laura László; Balázs Sarkadi; Tamás Hegedűs
Journal:  PLoS One       Date:  2016-10-14       Impact factor: 3.240

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