Difference between revisions of "Cell wall degradation/ turnover"
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== Genes in this functional category == | == Genes in this functional category == | ||
+ | ===Endopeptidases=== | ||
+ | * ''[[cwlK]]'' | ||
+ | *'' [[cwlO]]'' | ||
+ | * ''[[cwlS]]'' | ||
+ | * ''[[lytE]]'' | ||
+ | * ''[[lytF]]'' | ||
+ | * ''[[lytH]]'' | ||
+ | * ''[[yqgT]]'' | ||
+ | |||
+ | ===N-acetyl-β-D-glucosaminidases=== | ||
+ | * ''[[lytD]]'' | ||
+ | * ''[[lytG]]'' | ||
=== Autolysis === | === Autolysis === | ||
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* ''[[cwlA]]'' | * ''[[cwlA]]'' | ||
*'' [[cwlH]]'' | *'' [[cwlH]]'' | ||
− | |||
− | |||
*'' [[cwlP]]'' | *'' [[cwlP]]'' | ||
* ''[[cwlQ]]'' | * ''[[cwlQ]]'' | ||
− | |||
* ''[[cwlT]]'' | * ''[[cwlT]]'' | ||
* ''[[iseA]]'' | * ''[[iseA]]'' | ||
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* ''[[lytB]]'' | * ''[[lytB]]'' | ||
* ''[[lytC]]'' | * ''[[lytC]]'' | ||
− | |||
− | |||
− | |||
− | |||
− | |||
− | |||
* ''[[pbpE]]'' | * ''[[pbpE]]'' | ||
* ''[[xepA]]'' | * ''[[xepA]]'' | ||
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* ''[[ykvT]]'' | * ''[[ykvT]]'' | ||
* ''[[ytkC]]'' | * ''[[ytkC]]'' | ||
+ | |||
+ | === Degradation of wall teichoic acids === | ||
+ | * ''[[glpQ]]'' | ||
+ | * ''[[phoD]]'' | ||
=== Utilization of cell wall components === | === Utilization of cell wall components === | ||
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* ''[[nagB]]'' | * ''[[nagB]]'' | ||
*'' [[nagZ]]'' | *'' [[nagZ]]'' | ||
− | * ''[[ | + | * ''[[gamR]]'' |
=== Additional genes=== | === Additional genes=== | ||
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==Important Reviews== | ==Important Reviews== | ||
− | <pubmed> 19019149 18792692 10708363 17468031 18266855 21796380 24035761 </pubmed> | + | <pubmed> 19019149 18792692 10708363 17468031 18266855 21796380 24035761 22944244 </pubmed> |
=Back to [[categories]]= | =Back to [[categories]]= |
Latest revision as of 09:13, 27 October 2016
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Contents
Genes in this functional category
Endopeptidases
N-acetyl-β-D-glucosaminidases
Autolysis
Autolysis/ based on similarity
Degradation of wall teichoic acids
Utilization of cell wall components
Additional genes
Important Original Publications
Gaurav Misra, Enrique R Rojas, Ajay Gopinathan, Kerwyn Casey Huang
Mechanical consequences of cell-wall turnover in the elongation of a Gram-positive bacterium.
Biophys J: 2013, 104(11);2342-52
[PubMed:23746506]
[WorldCat.org]
[DOI]
(I p)
Morgan Beeby, James C Gumbart, Benoît Roux, Grant J Jensen
Architecture and assembly of the Gram-positive cell wall.
Mol Microbiol: 2013, 88(4);664-72
[PubMed:23600697]
[WorldCat.org]
[DOI]
(I p)
Important Reviews
Timothy K Lee, Kerwyn Casey Huang
The role of hydrolases in bacterial cell-wall growth.
Curr Opin Microbiol: 2013, 16(6);760-6
[PubMed:24035761]
[WorldCat.org]
[DOI]
(I p)
Timna J Wyckoff, Jennifer A Taylor, Nina R Salama
Beyond growth: novel functions for bacterial cell wall hydrolases.
Trends Microbiol: 2012, 20(11);540-7
[PubMed:22944244]
[WorldCat.org]
[DOI]
(I p)
Jan Reith, Christoph Mayer
Peptidoglycan turnover and recycling in Gram-positive bacteria.
Appl Microbiol Biotechnol: 2011, 92(1);1-11
[PubMed:21796380]
[WorldCat.org]
[DOI]
(I p)
Sarah Dubrac, Paola Bisicchia, Kevin M Devine, Tarek Msadek
A matter of life and death: cell wall homeostasis and the WalKR (YycGF) essential signal transduction pathway.
Mol Microbiol: 2008, 70(6);1307-22
[PubMed:19019149]
[WorldCat.org]
[DOI]
(I p)
Sarah Dubrac, Tarek Msadek
Tearing down the wall: peptidoglycan metabolism and the WalK/WalR (YycG/YycF) essential two-component system.
Adv Exp Med Biol: 2008, 631;214-28
[PubMed:18792692]
[WorldCat.org]
[DOI]
(P p)
Waldemar Vollmer, Bernard Joris, Paulette Charlier, Simon Foster
Bacterial peptidoglycan (murein) hydrolases.
FEMS Microbiol Rev: 2008, 32(2);259-86
[PubMed:18266855]
[WorldCat.org]
[DOI]
(P p)
Edie Scheurwater, Chris W Reid, Anthony J Clarke
Lytic transglycosylases: bacterial space-making autolysins.
Int J Biochem Cell Biol: 2008, 40(4);586-91
[PubMed:17468031]
[WorldCat.org]
[DOI]
(P p)
Thomas J Smith, Steve A Blackman, Simon J Foster
Autolysins of Bacillus subtilis: multiple enzymes with multiple functions.
Microbiology (Reading): 2000, 146 ( Pt 2);249-262
[PubMed:10708363]
[WorldCat.org]
[DOI]
(P p)