Literature DB >> 20975691

Peptidoglycan architecture can specify division planes in Staphylococcus aureus.

Robert D Turner1, Emma C Ratcliffe, Richard Wheeler, Ramin Golestanian, Jamie K Hobbs, Simon J Foster.   

Abstract

Division in Staphylococci occurs equatorially and on specific sequentially orthogonal planes in three dimensions, resulting, after incomplete cell separation, in the 'bunch of grapes' cluster organization that defines the genus. The shape of Staphylococci is principally maintained by peptidoglycan. In this study, we use Atomic Force Microscopy (AFM) and fluorescence microscopy with vancomycin labelling to examine purified peptidoglycan architecture and its dynamics in Staphylococcus aureus and correlate these with the cell cycle. At the presumptive septum, cells were found to form a large belt of peptidoglycan in the division plane before the centripetal formation of the septal disc; this often had a 'piecrust' texture. After division, the structures remain as orthogonal ribs, encoding the location of past division planes in the cell wall. We propose that this epigenetic information is used to enable S. aureus to divide in sequentially orthogonal planes, explaining how a spherical organism can maintain division plane localization with fidelity over many generations.

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Year:  2010        PMID: 20975691     DOI: 10.1038/ncomms1025

Source DB:  PubMed          Journal:  Nat Commun        ISSN: 2041-1723            Impact factor:   14.919


  43 in total

1.  Exploring intracellular space: function of the Min system in round-shaped Escherichia coli.

Authors:  Brian D Corbin; Xuan-Chuan Yu; William Margolin
Journal:  EMBO J       Date:  2002-04-15       Impact factor: 11.598

2.  Native cell wall organization shown by cryo-electron microscopy confirms the existence of a periplasmic space in Staphylococcus aureus.

Authors:  Valério R F Matias; Terry J Beveridge
Journal:  J Bacteriol       Date:  2006-02       Impact factor: 3.490

3.  A landmark protein essential for establishing and perpetuating the polarity of a bacterial cell.

Authors:  Hubert Lam; Whitman B Schofield; Christine Jacobs-Wagner
Journal:  Cell       Date:  2006-03-10       Impact factor: 41.582

4.  Different modes of vancomycin and D-alanyl-D-alanine peptidase binding to cell wall peptide and a possible role for the vancomycin resistance protein.

Authors:  J R Knox; R F Pratt
Journal:  Antimicrob Agents Chemother       Date:  1990-07       Impact factor: 5.191

5.  Cell wall peptidoglycan architecture in Bacillus subtilis.

Authors:  Emma J Hayhurst; Lekshmi Kailas; Jamie K Hobbs; Simon J Foster
Journal:  Proc Natl Acad Sci U S A       Date:  2008-09-10       Impact factor: 11.205

6.  Electron microscopy of the lysis of Staphylococcus aureus cell walls by Aeromonas lytic factor.

Authors:  C M Gilbo; C D Beaton; N W Coles
Journal:  J Bacteriol       Date:  1967-06       Impact factor: 3.490

7.  Arrangement of peptidoglycan in the cell wall of Staphylococcus spp.

Authors:  K Amako; A Umeda; K Murata
Journal:  J Bacteriol       Date:  1982-05       Impact factor: 3.490

8.  Dispersed mode of Staphylococcus aureus cell wall synthesis in the absence of the division machinery.

Authors:  Mariana G Pinho; Jeff Errington
Journal:  Mol Microbiol       Date:  2003-11       Impact factor: 3.501

9.  Thickness and elasticity of gram-negative murein sacculi measured by atomic force microscopy.

Authors:  X Yao; M Jericho; D Pink; T Beveridge
Journal:  J Bacteriol       Date:  1999-11       Impact factor: 3.490

10.  Comprehensive identification of essential Staphylococcus aureus genes using Transposon-Mediated Differential Hybridisation (TMDH).

Authors:  Roy R Chaudhuri; Andrew G Allen; Paul J Owen; Gil Shalom; Karl Stone; Marcus Harrison; Timothy A Burgis; Michael Lockyer; Jorge Garcia-Lara; Simon J Foster; Stephen J Pleasance; Sarah E Peters; Duncan J Maskell; Ian G Charles
Journal:  BMC Genomics       Date:  2009-07-01       Impact factor: 3.969

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  62 in total

1.  Binding mechanism of the peptidoglycan hydrolase Acm2: low affinity, broad specificity.

Authors:  Audrey Beaussart; Thomas Rolain; Marie-Clémence Duchêne; Sofiane El-Kirat-Chatel; Guillaume Andre; Pascal Hols; Yves F Dufrêne
Journal:  Biophys J       Date:  2013-08-06       Impact factor: 4.033

2.  In vitro single-cell dissection revealing the interior structure of cable bacteria.

Authors:  Zaixing Jiang; Shuai Zhang; Lasse Hyldgaard Klausen; Jie Song; Qiang Li; Zegao Wang; Bjørn Torger Stokke; Yudong Huang; Flemming Besenbacher; Lars Peter Nielsen; Mingdong Dong
Journal:  Proc Natl Acad Sci U S A       Date:  2018-08-06       Impact factor: 11.205

3.  Nutrient-dependent structural changes in S. aureus peptidoglycan revealed by solid-state NMR spectroscopy.

Authors:  Xiaoxue Zhou; Lynette Cegelski
Journal:  Biochemistry       Date:  2012-10-02       Impact factor: 3.162

Review 4.  From the regulation of peptidoglycan synthesis to bacterial growth and morphology.

Authors:  Athanasios Typas; Manuel Banzhaf; Carol A Gross; Waldemar Vollmer
Journal:  Nat Rev Microbiol       Date:  2011-12-28       Impact factor: 60.633

Review 5.  Recent advances in rapid pathogen detection method based on biosensors.

Authors:  Ying Chen; Zhenzhen Wang; Yingxun Liu; Xin Wang; Ying Li; Ping Ma; Bing Gu; Hongchun Li
Journal:  Eur J Clin Microbiol Infect Dis       Date:  2018-03-22       Impact factor: 3.267

Review 6.  Bacterial Cell Division: Nonmodels Poised to Take the Spotlight.

Authors:  Prahathees J Eswara; Kumaran S Ramamurthi
Journal:  Annu Rev Microbiol       Date:  2017-07-11       Impact factor: 15.500

Review 7.  Structural basis for the coordination of cell division with the synthesis of the bacterial cell envelope.

Authors:  Simon Booth; Richard J Lewis
Journal:  Protein Sci       Date:  2019-09-30       Impact factor: 6.725

8.  Staphylococcus aureus peptidoglycan stem packing by rotational-echo double resonance NMR spectroscopy.

Authors:  Sung Joon Kim; Manmilan Singh; Maria Preobrazhenskaya; Jacob Schaefer
Journal:  Biochemistry       Date:  2013-05-14       Impact factor: 3.162

Review 9.  Peptidoglycan at its peaks: how chromatographic analyses can reveal bacterial cell wall structure and assembly.

Authors:  Samantha M Desmarais; Miguel A De Pedro; Felipe Cava; Kerwyn Casey Huang
Journal:  Mol Microbiol       Date:  2013-06-03       Impact factor: 3.501

10.  Reconstruction of mreB expression in Staphylococcus aureus via a collection of new integrative plasmids.

Authors:  Ana Yepes; Gudrun Koch; Andrea Waldvogel; Juan-Carlos Garcia-Betancur; Daniel Lopez
Journal:  Appl Environ Microbiol       Date:  2014-04-18       Impact factor: 4.792

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