Difference between revisions of "Papers of the month"

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=2012=
 
=2012=
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* '''July 2012'''
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** [http://www.ncbi.nlm.nih.gov/pubmed/22670053 Dago ''et al''.] from the lab of [[Hendrik Szurmant]] studied the interactions between histidine kinase domains of [[two-component systems]] that result in autophosphorylation.
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** '''Relevant ''Subti''Wiki pages:'''  [[Hendrik Szurmant]], [[Jim Hoch]], [[two-component systems]], [[KinA]], [[KinD]], [[protein-protein interactions]]
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<pubmed> 22670053 </pubmed>
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* '''June 2012'''
 
* '''June 2012'''
 
** [http://www.ncbi.nlm.nih.gov/pubmed/22541437 Kolodkin-Gal ''et al''.] from the labs of [[Roberto Kolter]] and [[Richard Losick]] demonstrate that D-amino acids produced by [[RacX]] and [[YlmE]] and norspermidine produced by [[GabT]] and [[YaaO]] act together in preventing [[biofilm formation]] and triggering biofilm disassembly.
 
** [http://www.ncbi.nlm.nih.gov/pubmed/22541437 Kolodkin-Gal ''et al''.] from the labs of [[Roberto Kolter]] and [[Richard Losick]] demonstrate that D-amino acids produced by [[RacX]] and [[YlmE]] and norspermidine produced by [[GabT]] and [[YaaO]] act together in preventing [[biofilm formation]] and triggering biofilm disassembly.

Revision as of 05:56, 2 July 2012

2012

Angel E Dago, Alexander Schug, Andrea Procaccini, James A Hoch, Martin Weigt, Hendrik Szurmant
Structural basis of histidine kinase autophosphorylation deduced by integrating genomics, molecular dynamics, and mutagenesis.
Proc Natl Acad Sci U S A: 2012, 109(26);E1733-42
[PubMed:22670053] [WorldCat.org] [DOI] (I p)


Ilana Kolodkin-Gal, Shugeng Cao, Liraz Chai, Thomas Böttcher, Roberto Kolter, Jon Clardy, Richard Losick
A self-produced trigger for biofilm disassembly that targets exopolysaccharide.
Cell: 2012, 149(3);684-92
[PubMed:22541437] [WorldCat.org] [DOI] (I p)


Alexander K W Elsholz, Kürsad Turgay, Stephan Michalik, Bernd Hessling, Katrin Gronau, Dan Oertel, Ulrike Mäder, Jörg Bernhardt, Dörte Becher, Michael Hecker, Ulf Gerth
Global impact of protein arginine phosphorylation on the physiology of Bacillus subtilis.
Proc Natl Acad Sci U S A: 2012, 109(19);7451-6
[PubMed:22517742] [WorldCat.org] [DOI] (I p)


Levdikov VM, Blagova EV, McFeat A, Fogg MJ, Wilson KS, Wilkinson AJ  
Structure of components of an intercellular channel complex in sporulating Bacillus subtilis. 
Proc Natl Acad Sci U S A. 2012 Mar 19. [Epub ahead of print] 
PubMed:22431604


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2011


Locke JC, Young JW, Fontes M, Hernández Jiménez MJ, Elowitz MB  
Stochastic pulse regulation in bacterial stress response. 
Science. 2011 334:366-369. 
PubMed:21979936



Gintaras Deikus, David H Bechhofer
5' End-independent RNase J1 endonuclease cleavage of Bacillus subtilis model RNA.
J Biol Chem: 2011, 286(40);34932-40
[PubMed:21862575] [WorldCat.org] [DOI] (I p)

Lehnik-Habrink M, Schaffer M, Mäder U, Diethmaier C, Herzberg C, Stülke J  
RNA processing in Bacillus subtilis: identification of targets of the essential RNase Y. 
Mol Microbiol. 2011 81(6): 1459-73. 
PubMed:21815947


Bui Khanh Chi, Katrin Gronau, Ulrike Mäder, Bernd Hessling, Dörte Becher, Haike Antelmann
S-bacillithiolation protects against hypochlorite stress in Bacillus subtilis as revealed by transcriptomics and redox proteomics.
Mol Cell Proteomics: 2011, 10(11);M111.009506
[PubMed:21749987] [WorldCat.org] [DOI] (I p)


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  • May 2011
    • Miles et al. identified the enzyme for the key final step in the biosynthesis of queuosine, a hypermodified base found in the wobble positions of tRNA Asp, Asn, His, and Tyr from bacteria to man
    • Relevant SubtiWiki pages: QueG, translation