Literature DB >> 28373284

Pathogenic Acinetobacter species have a functional type I secretion system and contact-dependent inhibition systems.

Christian M Harding1, Marina R Pulido1,2, Gisela Di Venanzio1, Rachel L Kinsella1,3, Andrew I Webb4,5, Nichollas E Scott6, Jerónimo Pachón2, Mario F Feldman7.   

Abstract

Pathogenic Acinetobacter species, including Acinetobacter baumannii and Acinetobacter nosocomialis, are opportunistic human pathogens of increasing relevance worldwide. Although their mechanisms of drug resistance are well studied, the virulence factors that govern Acinetobacter pathogenesis are incompletely characterized. Here we define the complete secretome of A. nosocomialis strain M2 in minimal medium and demonstrate that pathogenic Acinetobacter species produce both a functional type I secretion system (T1SS) and a contact-dependent inhibition (CDI) system. Using bioinformatics, quantitative proteomics, and mutational analyses, we show that Acinetobacter uses its T1SS for exporting two putative T1SS effectors, an Repeats-in-Toxin (RTX)-serralysin-like toxin, and the biofilm-associated protein (Bap). Moreover, we found that mutation of any component of the T1SS system abrogated type VI secretion activity under nutrient-limited conditions, indicating a previously unrecognized cross-talk between these two systems. We also demonstrate that the Acinetobacter T1SS is required for biofilm formation. Last, we show that both A. nosocomialis and A. baumannii produce functioning CDI systems that mediate growth inhibition of sister cells lacking the cognate immunity protein. The Acinetobacter CDI systems are widely distributed across pathogenic Acinetobacter species, with many A. baumannii isolates harboring two distinct CDI systems. Collectively, these data demonstrate the power of differential, quantitative proteomics approaches to study secreted proteins, define the role of previously uncharacterized protein export systems, and observe cross-talk between secretion systems in the pathobiology of medically relevant Acinetobacter species.
© 2017 by The American Society for Biochemistry and Molecular Biology, Inc.

Entities:  

Keywords:  Acinetobacter; bacterial pathogenesis; bacterial toxin; biofilm; contact-dependent inhibition system; protein secretion; proteomics; type I secretion system

Mesh:

Substances:

Year:  2017        PMID: 28373284      PMCID: PMC5454093          DOI: 10.1074/jbc.M117.781575

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  62 in total

1.  Resistance-nodulation-cell division-type efflux pump involved in aminoglycoside resistance in Acinetobacter baumannii strain BM4454.

Authors:  S Magnet; P Courvalin; T Lambert
Journal:  Antimicrob Agents Chemother       Date:  2001-12       Impact factor: 5.191

2.  Contact-dependent inhibition of growth in Escherichia coli.

Authors:  Stephanie K Aoki; Rupinderjit Pamma; Aaron D Hernday; Jessica E Bickham; Bruce A Braaten; David A Low
Journal:  Science       Date:  2005-08-19       Impact factor: 47.728

Review 3.  Hospital-acquired infections due to gram-negative bacteria.

Authors:  Anton Y Peleg; David C Hooper
Journal:  N Engl J Med       Date:  2010-05-13       Impact factor: 91.245

4.  Overexpression of resistance-nodulation-cell division pump AdeFGH confers multidrug resistance in Acinetobacter baumannii.

Authors:  Sébastien Coyne; Nicolas Rosenfeld; Thierry Lambert; Patrice Courvalin; Bruno Périchon
Journal:  Antimicrob Agents Chemother       Date:  2010-08-09       Impact factor: 5.191

5.  Quorum sensing differentially regulates Pseudomonas aeruginosa type VI secretion locus I and homologous loci II and III, which are required for pathogenesis.

Authors:  B Lesic; M Starkey; J He; R Hazan; L G Rahme
Journal:  Microbiology (Reading)       Date:  2009-06-04       Impact factor: 2.777

6.  Protocol for micro-purification, enrichment, pre-fractionation and storage of peptides for proteomics using StageTips.

Authors:  Juri Rappsilber; Matthias Mann; Yasushi Ishihama
Journal:  Nat Protoc       Date:  2007       Impact factor: 13.491

7.  Multistate point-prevalence survey of health care-associated infections.

Authors:  Shelley S Magill; Jonathan R Edwards; Wendy Bamberg; Zintars G Beldavs; Ghinwa Dumyati; Marion A Kainer; Ruth Lynfield; Meghan Maloney; Laura McAllister-Hollod; Joelle Nadle; Susan M Ray; Deborah L Thompson; Lucy E Wilson; Scott K Fridkin
Journal:  N Engl J Med       Date:  2014-03-27       Impact factor: 91.245

8.  Analysis of high accuracy, quantitative proteomics data in the MaxQB database.

Authors:  Christoph Schaab; Tamar Geiger; Gabriele Stoehr; Juergen Cox; Matthias Mann
Journal:  Mol Cell Proteomics       Date:  2012-02-02       Impact factor: 5.911

9.  Genomic and functional analysis of the type VI secretion system in Acinetobacter.

Authors:  Brent S Weber; Sarah T Miyata; Jeremy A Iwashkiw; Brittany L Mortensen; Eric P Skaar; Stefan Pukatzki; Mario F Feldman
Journal:  PLoS One       Date:  2013-01-24       Impact factor: 3.240

10.  Biofilm-associated proteins: news from Acinetobacter.

Authors:  Eliana De Gregorio; Mariateresa Del Franco; Marianna Martinucci; Emanuela Roscetto; Raffaele Zarrilli; Pier Paolo Di Nocera
Journal:  BMC Genomics       Date:  2015-11-14       Impact factor: 3.969

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  26 in total

1.  Multidrug-resistant plasmids repress chromosomally encoded T6SS to enable their dissemination.

Authors:  Gisela Di Venanzio; Ki Hwan Moon; Brent S Weber; Juvenal Lopez; Pek Man Ly; Robert F Potter; Gautam Dantas; Mario F Feldman
Journal:  Proc Natl Acad Sci U S A       Date:  2019-01-09       Impact factor: 11.205

2.  The structure of Acinetobacter-secreted protease CpaA complexed with its chaperone CpaB reveals a novel mode of a T2SS chaperone-substrate interaction.

Authors:  Darya V Urusova; Rachel L Kinsella; Nichole D Salinas; M Florencia Haurat; Mario F Feldman; Niraj H Tolia
Journal:  J Biol Chem       Date:  2019-07-18       Impact factor: 5.157

3.  Mechanism of Kin-Discriminatory Demarcation Line Formation between Colonies of Swarming Bacteria.

Authors:  Pintu Patra; Christopher N Vassallo; Daniel Wall; Oleg A Igoshin
Journal:  Biophys J       Date:  2017-12-05       Impact factor: 4.033

Review 4.  Contact-dependent interbacterial toxins deliver a message.

Authors:  Erin C Garcia
Journal:  Curr Opin Microbiol       Date:  2017-11-01       Impact factor: 7.934

Review 5.  Uncovering the mechanisms of Acinetobacter baumannii virulence.

Authors:  Christian M Harding; Seth W Hennon; Mario F Feldman
Journal:  Nat Rev Microbiol       Date:  2017-12-18       Impact factor: 60.633

6.  Complete genome sequence and genome-scale metabolic modelling of Acinetobacter baumannii type strain ATCC 19606.

Authors:  Yan Zhu; Jing Lu; Jinxin Zhao; Xinru Zhang; Heidi H Yu; Tony Velkov; Jian Li
Journal:  Int J Med Microbiol       Date:  2020-02-05       Impact factor: 3.473

7.  The type VI secretion system protein AsaA in Acinetobacter baumannii is a periplasmic protein physically interacting with TssM and required for T6SS assembly.

Authors:  Lei Li; Yi-Nuo Wang; Hong-Bing Jia; Ping Wang; Jun-Fang Dong; Juan Deng; Feng-Min Lu; Qing-Hua Zou
Journal:  Sci Rep       Date:  2019-07-01       Impact factor: 4.379

8.  Acinetobacter baumannii NCIMB8209: a Rare Environmental Strain Displaying Extensive Insertion Sequence-Mediated Genome Remodeling Resulting in the Loss of Exposed Cell Structures and Defensive Mechanisms.

Authors:  Guillermo D Repizo; Martín Espariz; Joana L Seravalle; Juan Ignacio Díaz Miloslavich; Bruno A Steimbrüch; Howard A Shuman; Alejandro M Viale
Journal:  mSphere       Date:  2020-07-29       Impact factor: 4.389

Review 9.  Acinetobacter: an emerging pathogen with a versatile secretome.

Authors:  Noha M Elhosseiny; Ahmed S Attia
Journal:  Emerg Microbes Infect       Date:  2018-03-21       Impact factor: 7.163

10.  Acinetobacter nosocomialis: Defining the Role of Efflux Pumps in Resistance to Antimicrobial Therapy, Surface Motility, and Biofilm Formation.

Authors:  Daniel B Knight; Susan D Rudin; Robert A Bonomo; Philip N Rather
Journal:  Front Microbiol       Date:  2018-08-21       Impact factor: 5.640

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