Literature DB >> 19129190

The Listeria monocytogenes sortase-B recognizes varied amino acids at position 2 of the sorting motif.

Javier F Mariscotti1, Francisco García-del Portillo, M Graciela Pucciarelli.   

Abstract

Sortases are bacterial enzymes that anchor surface proteins covalently to the peptidoglycan upon cleavage of a motif located at their C-terminal end. Motifs recognized by sortases of the class-B (SrtB) are defined by the consensus sequence NP(Q/K)(T/S)(N/G/S)(D/A). Evidence supporting this consensus is limited to IsdC of Staphylococcus aureus and Bacillus anthracis, cleaved at motifs NPQTN and NPKTG, respectively. In Listeria monocytogenes, StrB has two substrates, Lmo2185 and Lmo2186, containing NAKTN and NKVTN (or the overlapping sequence NPKSS) as putative sorting motifs. Some of these motifs do not match the consensus, because they lack either proline (P) at position 2 or glutamine/lysine (Q/K) at position 3. Here, we identified NPKSS as a sorting motif of Lmo2186 by monitoring anchoring to peptidoglycan of chimeras lacking each of its two predicted motifs. Motif-swapping experiments confirmed that NPKSS, but not NKVTN, could replace NAKTN for anchoring of an Lmo2185 chimera. Residue substitutions in the NPKSS sequence revealed the essentiality of proline at position 2 for recognition of this particular motif. Lysine at position 3 was however dispensable. Deletion of NAKTN, on the other hand, abrogated SrtB-mediated anchoring of the Lmo2185 chimera. NAKTN, therefore, represents an exception to the rule of a conserved proline in position 2 of the sorting motif. Taken together, our data indicate that proline is not absolutely required for substrate recognition by sortases of the class-B. In addition, they prove the capacity of a single sortase, as SrtB of L. monocytogenes, to recognize varied amino acids at position 2 of the sorting motif.

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Year:  2009        PMID: 19129190     DOI: 10.1074/jbc.M807989200

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


  10 in total

1.  Regulated shift from helical to polar localization of Listeria monocytogenes cell wall-anchored proteins.

Authors:  Serawit Bruck; Nicolas Personnic; Marie-Christine Prevost; Pascale Cossart; Hélène Bierne
Journal:  J Bacteriol       Date:  2011-07-01       Impact factor: 3.490

2.  Association of ActA to peptidoglycan revealed by cell wall proteomics of intracellular Listeria monocytogenes.

Authors:  Francisco García-del Portillo; Enrique Calvo; Valentina D'Orazio; M Graciela Pucciarelli
Journal:  J Biol Chem       Date:  2011-08-16       Impact factor: 5.157

3.  Novel mechanism of hemin capture by Hbp2, the hemoglobin-binding hemophore from Listeria monocytogenes.

Authors:  G Reza Malmirchegini; Megan Sjodt; Sergey Shnitkind; Michael R Sawaya; Justin Rosinski; Salete M Newton; Phillip E Klebba; Robert T Clubb
Journal:  J Biol Chem       Date:  2014-10-14       Impact factor: 5.157

4.  Structural and computational studies of the Staphylococcus aureus sortase B-substrate complex reveal a substrate-stabilized oxyanion hole.

Authors:  Alex W Jacobitz; Jeff Wereszczynski; Sung Wook Yi; Brendan R Amer; Grace L Huang; Angelyn V Nguyen; Michael R Sawaya; Michael E Jung; J Andrew McCammon; Robert T Clubb
Journal:  J Biol Chem       Date:  2014-02-11       Impact factor: 5.157

Review 5.  Sec-secretion and sortase-mediated anchoring of proteins in Gram-positive bacteria.

Authors:  Olaf Schneewind; Dominique Missiakas
Journal:  Biochim Biophys Acta       Date:  2013-11-22

6.  Characterization of the sortase repertoire in Bacillus anthracis.

Authors:  Willy Aucher; Sophie Davison; Agnès Fouet
Journal:  PLoS One       Date:  2011-11-04       Impact factor: 3.240

7.  The NEAT Domain-Containing Proteins of Clostridium perfringens Bind Heme.

Authors:  Jocelyn M Choo; Jackie K Cheung; Jessica A Wisniewski; David L Steer; Dieter M Bulach; Thomas J Hiscox; Anjana Chakravorty; A Ian Smith; David A Gell; Julian I Rood; Milena M Awad
Journal:  PLoS One       Date:  2016-09-16       Impact factor: 3.240

8.  Comparison between Listeria sensu stricto and Listeria sensu lato strains identifies novel determinants involved in infection.

Authors:  Jakob Schardt; Grant Jones; Stefanie Müller-Herbst; Kristina Schauer; Sarah E F D'Orazio; Thilo M Fuchs
Journal:  Sci Rep       Date:  2017-12-19       Impact factor: 4.379

9.  Immuno-targeting of Staphylococcus aureus via surface remodeling complexes.

Authors:  Mary J Sabulski; Sean E Pidgeon; Marcos M Pires
Journal:  Chem Sci       Date:  2017-08-23       Impact factor: 9.825

Review 10.  How Listeria monocytogenes organizes its surface for virulence.

Authors:  Filipe Carvalho; Sandra Sousa; Didier Cabanes
Journal:  Front Cell Infect Microbiol       Date:  2014-04-29       Impact factor: 5.293

  10 in total

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