A Staphylococcus aureus Proteome Overview: Shared and Specific Proteins and Protein Complexes from Representative Strains of All Three Clades

is an important model organism and pathogen. This proteome overview details shared and specific proteins and selected virulence-relevant protein complexes from representative strains of all three major clades. To determine the strain distribution and major clades we used a refined strain comparison...

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Veröffentlicht in:Proteomes 2016-02, Vol.4 (1), p.8
Hauptverfasser: Liang, Chunguang, Schaack, Dominik, Srivastava, Mugdha, Gupta, Shishir K, Sarukhanyan, Edita, Giese, Anne, Pagels, Martin, Romanov, Natalie, Pané-Farré, Jan, Fuchs, Stephan, Dandekar, Thomas
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Sprache:eng
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Zusammenfassung:is an important model organism and pathogen. This proteome overview details shared and specific proteins and selected virulence-relevant protein complexes from representative strains of all three major clades. To determine the strain distribution and major clades we used a refined strain comparison combining ribosomal RNA, MLST markers, and looking at highly-conserved regions shared between strains. This analysis shows three sub-clades (A-C) for . As calculations are complex and strain annotation is quite time consuming we compare here key representatives of each clade with each other: model strains COL, USA300, Newman, and HG001 (clade A), model strain N315 and Mu50 (clade B) and ED133 and MRSA252 (clade C). We look at these individual proteomes and compare them to a background of 64 strains. There are overall 13,284 proteins not part of the core proteome which are involved in different strain-specific or more general complexes requiring detailed annotation and new experimental data to be accurately delineated. By comparison of the eight representative strains, we identify strain-specific proteins (e.g., 18 in COL, 105 in N315 and 44 in Newman) that characterize each strain and analyze pathogenicity islands if they contain such strain-specific proteins. We identify strain-specific protein repertoires involved in virulence, in cell wall metabolism, and phosphorylation. Finally we compare and analyze protein complexes conserved and well-characterized among (a total of 103 complexes), as well as predict and analyze several individual protein complexes, including structure modeling in the three clades.
ISSN:2227-7382
2227-7382
DOI:10.3390/proteomes4010008