Literature DB >> 16699190

Invariance and variability in bacterial PanK: a study based on the crystal structure of Mycobacterium tuberculosis PanK.

Satyabrata Das1, Parimal Kumar, Vikrant Bhor, A Surolia, M Vijayan.   

Abstract

Pantothenate kinase (PanK) is a ubiquitous and essential enzyme that catalyzes the first step of the universal coenzyme A biosynthetic pathway. In this step, pantothenate (vitamin B(5)) is converted to 4'-phosphopantothenate, which subsequently forms coenzyme A in four enzymatic steps. The complex of this enzyme from Mycobacterium tuberculosis (MtPanK) with a derivative of the feedback inhibitor coenzyme A has been crystallized in two forms and its structure solved. The structure was refined in both forms using room-temperature and low-temperature X-ray data. In both forms, the MtPanK subunit has a mononucleotide-binding fold with a seven-stranded central beta-sheet and helices on either side. However, there is a small though significant difference in subunit association between the two forms. The structure is also grossly similar to the enzyme from Escherichia coli. The active-site pocket and the dimeric interface are on two opposite sides of the PanK subunit. The enzymes from M. tuberculosis and E. coli exhibit several differences, particularly at the dimeric interface. On the other hand, the coenzyme A-binding region is almost entirely conserved. A delineation of the invariant and variable features of the PanK structure further indicates that the dimeric interface is very variable, while the coenzyme A-binding site is substantially invariant. A sequence alignment involving various bacterial PanKs is in agreement with this conclusion. The strong correlation between structural plasticity, evolutionary conservation and variability and function exhibited by the molecule could be important in the design of species-specific inhibitors of the enzyme.

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Year:  2006        PMID: 16699190     DOI: 10.1107/S0907444906012728

Source DB:  PubMed          Journal:  Acta Crystallogr D Biol Crystallogr        ISSN: 0907-4449


  13 in total

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2.  Overexpression, purification, crystallization and preliminary X-ray analysis of uracil N-glycosylase from Mycobacterium tuberculosis in complex with a proteinaceous inhibitor.

Authors:  Prem Singh; Ramappa K Talawar; P D V Krishna; Umesh Varshney; M Vijayan
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3.  Cloning, expression, purification, crystallization and preliminary X-ray analysis of peptidyl-tRNA hydrolase from Mycobacterium tuberculosis.

Authors:  M Selvaraj; N S Singh; Siddhartha Roy; R Sangeetha; Umesh Varshney; M Vijayan
Journal:  Acta Crystallogr Sect F Struct Biol Cryst Commun       Date:  2006-08-26

4.  Cloning, expression, purification, crystallization and preliminary X-ray studies of argininosuccinate lyase (Rv1659) from Mycobacterium tuberculosis.

Authors:  A Paul; A Mishra; A Surolia; M Vijayan
Journal:  Acta Crystallogr Sect F Struct Biol Cryst Commun       Date:  2013-11-29

5.  Biochemical and structural studies of mutants indicate concerted movement of the dimer interface and ligand-binding region of Mycobacterium tuberculosis pantothenate kinase.

Authors:  A Paul; P Kumar; A Surolia; M Vijayan
Journal:  Acta Crystallogr F Struct Biol Commun       Date:  2017-10-30       Impact factor: 1.056

6.  Exploring structural motifs necessary for substrate binding in the active site of Escherichia coli pantothenate kinase.

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7.  The role of UPF0157 in the folding of M. tuberculosis dephosphocoenzyme A kinase and the regulation of the latter by CTP.

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Journal:  PLoS One       Date:  2009-10-30       Impact factor: 3.240

8.  Structural and biochemical characterization of compounds inhibiting Mycobacterium tuberculosis pantothenate kinase.

Authors:  Christofer Björkelid; Terese Bergfors; Anand Kumar V Raichurkar; Kakoli Mukherjee; Krishnan Malolanarasimhan; Balachandra Bandodkar; T Alwyn Jones
Journal:  J Biol Chem       Date:  2013-05-09       Impact factor: 5.157

9.  targetTB: a target identification pipeline for Mycobacterium tuberculosis through an interactome, reactome and genome-scale structural analysis.

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Journal:  BMC Syst Biol       Date:  2008-12-19

Review 10.  The application of tetracyclineregulated gene expression systems in the validation of novel drug targets in Mycobacterium tuberculosis.

Authors:  Joanna C Evans; Valerie Mizrahi
Journal:  Front Microbiol       Date:  2015-08-04       Impact factor: 5.640

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