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From Constructs to Crystals – Towards Structure Determination of β-barrel Outer Membrane Proteins
Published on: July 4, 2016
In-silico three dimensional structure prediction of important Neisseria meningitidis proteins
Muhammad Ali1, Muhammad Aurongzeb2, Yasmeen Rashid1
1Department of Biochemistry, University of Karachi, Karachi, Pakistan.
Abstract:
Pathogenic bacteria Neisseria meningitidis cause serious infection i.e. meningitis (infection of the brain) worldwide. Among five pathogenic serogroups, serogroup B causes life threatening illness as there is no effective vaccine available due to its poor immunogenicity. A total of 73 genes in N. meningitidis genome have identified that were proved to be essential for meningococcal disease and were considered as crucial drug targets. We targeted five of those proteins, which are known to involve in amino acid biosynthesis, for homology-based three dimensional structure determinations by MODELLER (v9.19) and evaluated the models by PROSA and PROCHECK programs. Detailed structural analyses of NMB0358, NMB0943, NMB1446, NMB1577 and NMB1814 proteins were carried out during the present research. Based on a high degree of sequence conservation between target and template protein sequences, excellent models were built. The overall three dimensional architectures as well as topologies of all the proteins were quite similar with that of the templates. Active site residues of all the homology models were quite conserved with respect to their respective templates indicating similar catalytic mechanisms in these orthologues. Here, we are reporting, for the first time, detailed three dimensional folds of N. meningitidis pathogenic factors involved in a crucial cellular metabolic pathway. Moreover, the three dimensional structural information of these important drug targets would be utilized in computer-aided drug designing in future.
Insights
Researchers determined the 3D structures of five essential Neisseria meningitidis proteins involved in amino acid biosynthesis. This structural data provides crucial insights for developing new drugs against meningitis caused by this pathogen.
Area of Science:
- * Structural biology
- * Bioinformatics
- * Microbiology
Background:
- * Neisseria meningitidis causes meningitis, a serious global infection.
- * Serogroup B is particularly dangerous due to lack of effective vaccines.
- * 73 essential genes in N. meningitidis are identified as potential drug targets.
Purpose of the Study:
- * To determine the 3D structures of five essential N. meningitidis proteins involved in amino acid biosynthesis.
- * To provide structural insights for computer-aided drug design against N. meningitidis.
Main Methods:
- * Homology modeling using MODELLER (v9.19).
- * Protein model evaluation using PROSA and PROCHECK.
- * Detailed structural and active site analyses.
Main Results:
- * High-quality 3D homology models were generated for five target proteins (NMB0358, NMB0943, NMB1446, NMB1577, NMB1814).
- * Models exhibited high sequence conservation and similar 3D architectures to their templates.
- * Conserved active site residues suggest similar catalytic mechanisms.
Conclusions:
- * First detailed 3D structures reported for these N. meningitidis pathogenic factors.
- * Structural information is valuable for future drug discovery efforts targeting essential metabolic pathways.

