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The reliability of molecular dynamics simulations of the multidrug transporter P-glycoprotein in a membrane environment
- Source :
- PLoS ONE, Vol 13, Iss 1, p e0191882 (2018), PLoS ONE
- Publication Year :
- 2018
- Publisher :
- Public Library of Science (PLoS), 2018.
-
Abstract
- Despite decades of research, the mechanism of action of the ABC multidrug transporter P-glycoprotein (P-gp) remains elusive. Due to experimental limitations, many researchers have turned to molecular dynamics simulation studies in order to investigate different aspects of P-gp function. However, such studies are challenging and caution is required when interpreting the results. P-gp is highly flexible and the time scale on which it can be simulated is limited. There is also uncertainty regarding the accuracy of the various crystal structures available, let alone the structure of the protein in a physiologically relevant environment. In this study, three alternative structural models of mouse P-gp (3G5U, 4KSB, 4M1M), all resolved to 3.8 Å, were used to initiate sets of simulations of P-gp in a membrane environment in order to determine: a) the sensitivity of the results to differences in the starting configuration; and b) the extent to which converged results could be expected on the times scales commonly simulated for this system. The simulations suggest that the arrangement of the nucleotide binding domains (NBDs) observed in the crystal structures is not stable in a membrane environment. In all simulations, the NBDs rapidly associated (within 10 ns) and changes within the transmembrane helices were observed. The secondary structure within the transmembrane domain was best preserved in the 4M1M model under the simulation conditions used. However, the extent to which replicate simulations diverged on a 100 to 200 ns timescale meant that it was not possible to draw definitive conclusions as to which structure overall was most stable, or to obtain converged and reliable results for any of the properties examined. The work brings into question the reliability of conclusions made in regard to the nature of specific interactions inferred from previous simulation studies on this system involving similar sampling times. It also highlights the need to demonstrate the statistical significance of any results obtained in simulations of large flexible proteins, especially where the initial structure is uncertain.
- Subjects :
- Models, Molecular
Protein Conformation, alpha-Helical
0301 basic medicine
Computer science
Glycobiology
lcsh:Medicine
ATP-binding cassette transporter
Crystal structure
Crystallography, X-Ray
Biochemistry
01 natural sciences
Protein Structure, Secondary
Mice
chemistry.chemical_compound
Molecular dynamics
Adenosine Triphosphate
Protein structure
Biochemical Simulations
Macromolecular Structure Analysis
Nucleotide
lcsh:Science
Protein secondary structure
P-glycoprotein
chemistry.chemical_classification
Crystallography
Multidisciplinary
010304 chemical physics
biology
Physics
Simulation and Modeling
Replicate
Condensed Matter Physics
Lipids
Transmembrane domain
Cholesterol
Membrane
Order (biology)
Physical Sciences
Crystal Structure
medicine.symptom
Biological system
Research Article
Protein Structure
Crystal Lattices
Protein domain
Molecular Dynamics Simulation
Research and Analysis Methods
03 medical and health sciences
Protein Domains
0103 physical sciences
medicine
Solid State Physics
Animals
ATP Binding Cassette Transporter, Subfamily B, Member 1
Sensitivity (control systems)
Binding site
P-Glycoproteins
Molecular Biology
Glycoproteins
Binding Sites
Membranes
lcsh:R
Biology and Life Sciences
Computational Biology
Proteins
030104 developmental biology
Mechanism of action
chemistry
biology.protein
lcsh:Q
Adenosine triphosphate
Multidrug transporter
Subjects
Details
- Language :
- English
- ISSN :
- 19326203
- Volume :
- 13
- Issue :
- 1
- Database :
- OpenAIRE
- Journal :
- PLoS ONE
- Accession number :
- edsair.doi.dedup.....5763d239e71a7a7ba72034551a138b05