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A computational assessment of pH-dependent differential interaction of T7 lysozyme with T7 RNA polymerase
- Source :
- BMC Structural Biology, BMC Structural Biology, Vol 17, Iss 1, Pp 1-11 (2017)
- Publication Year :
- 2017
-
Abstract
- Background T7 lysozyme (T7L), also known as N-acetylmuramoyl-L-alanine amidase, is a T7 bacteriophage gene product. It involves two functions: It can cut amide bonds in the bacterial cell wall and interacts with T7 RNA polymerase (T7RNAP) as a part of transcription inhibition. In this study, with the help of molecular dynamics (MD) calculations and computational interaction studies, we investigated the effect of varying pH conditions on conformational flexibilities of T7L and their influence on T7RNAP -T7L interactions. Results From the MD studies of the T7L at three different pH strengths viz. 5, neutral and 7.9 it was observed that T7L structure at pH 5 exhibited less stable nature with more residue level fluctuations, decrease of secondary structural elements and less compactness as compared to its counterparts: neutral pH and pH 7.9. The T-pad analysis of the MD trajectories identified local fluctuations in few residues that influenced the conformational differences in three pH strengths. From the docking of the minimum energy representative structures of T7L at different pH strengths (obtained from the free energy landscape analysis) with T7RNAP structures at same pH strengths, we saw strong interaction patterns at pH 7.9 and pH 5. The MD analysis of these complexes also confirmed the observations of docking study. From the combined in silico studies, it was observed that there are conformational changes in N-terminal and near helix 1 of T7L at different pH strengths, which are involved in the T7RNAP interaction, thereby varying the interaction pattern. Conclusion Since T7L has been used for developing novel therapeutics and T7RNAP one of the most biologically useful protein in both in-vitro and in vivo experiments, this in silico study of pH dependent conformational differences in T7L and the differential interaction with T7RNAP at different pH can provide a significant insight into the structural investigations on T7L and T7RNAP in varying pH environments. Electronic supplementary material The online version of this article (doi:10.1186/s12900-017-0077-9) contains supplementary material, which is available to authorized users.
- Subjects :
- 0301 basic medicine
Protein Conformation
In silico
T-pad analysis
Molecular Docking Simulation
T7 lysozyme
Amidase
Docking
03 medical and health sciences
Molecular dynamics
Viral Proteins
Protein structure
Structural Biology
Molecular dynamics simulation
medicine
T7 RNA polymerase
lcsh:QH301-705.5
Principal Component Analysis
030102 biochemistry & molecular biology
Chemistry
Energy landscape
Computational Biology
DNA-Directed RNA Polymerases
N-Acetylmuramoyl-L-alanine Amidase
Hydrogen-Ion Concentration
Crystallography
030104 developmental biology
lcsh:Biology (General)
Docking (molecular)
Biophysics
medicine.drug
Research Article
Subjects
Details
- ISSN :
- 14726807
- Volume :
- 17
- Issue :
- 1
- Database :
- OpenAIRE
- Journal :
- BMC structural biology
- Accession number :
- edsair.doi.dedup.....9d0b46143d69c0b567303a48a196cc74