Literature DB >> 28575388

Functional details of the Mycobacterium tuberculosis VapBC26 toxin-antitoxin system based on a structural study: insights into unique binding and antibiotic peptides.

Sung-Min Kang1, Do-Hee Kim1, Ki-Young Lee1, Sung Jean Park2, Hye-Jin Yoon3, Sang Jae Lee1, Hookang Im1, Bong-Jin Lee1.   

Abstract

Toxin-antitoxin (TA) systems are essential for bacterial persistence under stressful conditions. In particular, Mycobacterium tuberculosis express VapBC TA genes that encode the stable VapC toxin and the labile VapB antitoxin. Under normal conditions, these proteins interact to form a non-toxic TA complex, but the toxin is activated by release from the antitoxin in response to unfavorable conditions. Here, we present the crystal structure of the M. tuberculosis VapBC26 complex and show that the VapC26 toxin contains a pilus retraction protein (PilT) N-terminal (PIN) domain that is essential for ribonuclease activity and that, the VapB26 antitoxin folds into a ribbon-helix-helix DNA-binding motif at the N-terminus. The active site of VapC26 is sterically blocked by the flexible C-terminal region of VapB26. The C-terminal region of free VapB26 adopts an unfolded conformation but forms a helix upon binding to VapC26. The results of RNase activity assays show that Mg2+ and Mn2+ are essential for the ribonuclease activity of VapC26. As shown in the nuclear magnetic resonance spectra, several residues of VapB26 participate in the specific binding to the promoter region of the VapBC26 operon. In addition, toxin-mimicking peptides were designed that inhibit TA complex formation and thereby increase toxin activity, providing a novel approach to the development of new antibiotics.
© The Author(s) 2017. Published by Oxford University Press on behalf of Nucleic Acids Research.

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Year:  2017        PMID: 28575388      PMCID: PMC5737657          DOI: 10.1093/nar/gkx489

Source DB:  PubMed          Journal:  Nucleic Acids Res        ISSN: 0305-1048            Impact factor:   16.971


  112 in total

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Journal:  J Biol Chem       Date:  2002-03-15       Impact factor: 5.157

2.  Crystal structures of RNase H bound to an RNA/DNA hybrid: substrate specificity and metal-dependent catalysis.

Authors:  Marcin Nowotny; Sergei A Gaidamakov; Robert J Crouch; Wei Yang
Journal:  Cell       Date:  2005-07-01       Impact factor: 41.582

Review 3.  The PIN-domain toxin-antitoxin array in mycobacteria.

Authors:  Vickery L Arcus; Paul B Rainey; Susan J Turner
Journal:  Trends Microbiol       Date:  2005-08       Impact factor: 17.079

Review 4.  Toxins-antitoxins: plasmid maintenance, programmed cell death, and cell cycle arrest.

Authors:  Finbarr Hayes
Journal:  Science       Date:  2003-09-12       Impact factor: 47.728

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Authors:  Michal Bukowski; Anna Rojowska; Benedykt Wladyka
Journal:  Acta Biochim Pol       Date:  2011-03-11       Impact factor: 2.149

6.  Structure and proposed activity of a member of the VapBC family of toxin-antitoxin systems. VapBC-5 from Mycobacterium tuberculosis.

Authors:  Linda Miallau; Michael Faller; Janet Chiang; Mark Arbing; Feng Guo; Duilio Cascio; David Eisenberg
Journal:  J Biol Chem       Date:  2008-10-24       Impact factor: 5.157

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  18 in total

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Authors:  Do-Hee Kim; Sung-Min Kang; Sung Jean Park; Chenglong Jin; Hye-Jin Yoon; Bong-Jin Lee
Journal:  Nucleic Acids Res       Date:  2018-07-06       Impact factor: 16.971

Review 2.  Biology and evolution of bacterial toxin-antitoxin systems.

Authors:  Dukas Jurėnas; Nathan Fraikin; Frédéric Goormaghtigh; Laurence Van Melderen
Journal:  Nat Rev Microbiol       Date:  2022-01-02       Impact factor: 60.633

3.  tRNAfMet Inactivating Mycobacterium tuberculosis VapBC Toxin-Antitoxin Systems as Therapeutic Targets.

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Review 4.  Regulation of Three Virulence Strategies of Mycobacterium tuberculosis: A Success Story.

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Journal:  Int J Mol Sci       Date:  2018-01-24       Impact factor: 5.923

5.  Characterization of a toxin-antitoxin system in Mycobacterium tuberculosis suggests neutralization by phosphorylation as the antitoxicity mechanism.

Authors:  Xia Yu; Xiaopan Gao; Kaixiang Zhu; Han Yin; Xujian Mao; Justyna Aleksandra Wojdyla; Bo Qin; Hairong Huang; Meitian Wang; Yi-Cheng Sun; Sheng Cui
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6.  mRNA Interferase Bacillus cereus BC0266 Shows MazF-Like Characteristics Through Structural and Functional Study.

Authors:  Sung-Min Kang; Ji Sung Koo; Chang-Min Kim; Do-Hee Kim; Bong-Jin Lee
Journal:  Toxins (Basel)       Date:  2020-06-08       Impact factor: 4.546

7.  Identification of Three Type II Toxin-Antitoxin Systems in Streptococcus suis Serotype 2.

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8.  Structural, functional and biological insights into the role of Mycobacterium tuberculosis VapBC11 toxin-antitoxin system: targeting a tRNase to tackle mycobacterial adaptation.

Authors:  Amar Deep; Prabhakar Tiwari; Sakshi Agarwal; Soni Kaundal; Saqib Kidwai; Ramandeep Singh; Krishan G Thakur
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9.  Structure-Based Prototype Peptides Targeting the Pseudomonas aeruginosa Type VI Secretion System Effector as a Novel Antibacterial Strategy.

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10.  VapC proteins from Mycobacterium tuberculosis share ribonuclease sequence specificity but differ in regulation and toxicity.

Authors:  Abigail Sharrock; Alaine Ruthe; Emma S V Andrews; Vickery A Arcus; Joanna L Hicks
Journal:  PLoS One       Date:  2018-08-31       Impact factor: 3.240

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