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  Excretion of cytoplasmic proteins (ECP) in Staphylococcus aureus

Ebner, P., Prax, M., Nega, M., Koch, I., Dube, L., Yu, W., et al. (2015). Excretion of cytoplasmic proteins (ECP) in Staphylococcus aureus. Molecular Microbiology, 97(4), 775-789. doi:10.1111/mmi.13065.

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 Creators:
Ebner, P, Author
Prax, M, Author
Nega, M, Author
Koch, I1, Author           
Dube, L, Author
Yu, W, Author
Rinker, J, Author
Popella, P, Author
Flötenmeyer, M1, Author           
Götz, F, Author
Affiliations:
1Electron Microscopy, Max Planck Institute for Developmental Biology, Max Planck Society, ou_3375794              

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 Abstract: Excretion of cytoplasmic proteins (ECP) is a common physiological feature in bacteria and eukaryotes. However, how these proteins without a typical signal peptide are excreted in bacteria is poorly understood. We studied the excretion pattern of cytoplasmic proteins using two glycolytic model enzymes, aldolase and enolase, and show that their excretion takes place mainly during the exponential growth phase in Staphylococcus aureus very similar to that of Sbi, an IgG-binding protein, which is secreted via the Sec-pathway. The amount of excreted enolase is substantial and is comparable with that of Sbi. For localization of the exit site, we fused aldolase and enolase with the peptidoglycan-binding motif, LysM, to trap the enzymes at the cell wall. With both immune fluorescence labeling and immunogold localization on electron microscopic thin sections aldolase and enolase were found apart from the cytoplasmic area particularly in the cross wall and at the septal cleft of dividing cells, whereas the non-excreted Ndh2, a soluble NADH:quinone oxidoreductase, is only seen attached to the inner side of the cytoplasmic membrane. The selectivity, the timing and the localization suggest that ECP is not a result of unspecific cell lysis but is mediated by an as yet unknown mechanism.

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 Dates: 2015-08
 Publication Status: Issued
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 Table of Contents: -
 Rev. Type: -
 Identifiers: DOI: 10.1111/mmi.13065
PMID: 26009926
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Title: Molecular Microbiology
  Other : Mol. Microbiol.
Source Genre: Journal
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Publ. Info: Oxford : Blackwell Science
Pages: - Volume / Issue: 97 (4) Sequence Number: - Start / End Page: 775 - 789 Identifier: ISSN: 0950-382X
CoNE: https://pure.mpg.de/cone/journals/resource/954925574950