Difference between revisions of "Papers of the month"

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=2012=
 
=2012=
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* '''April 2012'''
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** [http://www.ncbi.nlm.nih.gov/pubmed/22431613 Meisner ''et al''.] and [http://www.ncbi.nlm.nih.gov/pubmed/22431604 Levdikov ''et al''.] from the labs of [[Charles Moran]] and [[Tony Wilkinson]], respectively, have report the structure of the complex between [[SpoIIQ]] and [[SpoIIIAH]]. These two proteins interact through two membranes to connect the forespore and the mother cell during [[sporulation proteins|sporulation]]. The structure of the complex suggest that it is the extracellular component of a gap junction-like intercellular channel for the traffic of proteins between the two compartments.
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** '''Relevant ''Subti''Wiki pages:'''  [[Charles Moran]], [[Tony Wilkinson]], [[sporulation proteins|sporulation]], [[SpoIIQ]], [[SpoIIIAH]]
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<pubmed> 22431613 22431604</pubmed>
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* '''March 2012'''
 
* '''March 2012'''
 
** [http://www.ncbi.nlm.nih.gov/pubmed/22383848 Buescher ''et al''.] and [http://www.ncbi.nlm.nih.gov/pubmed/22383849 Nicolas ''et al''.] from the BaSysBio consortium diected by [[Philippe Noirot]] studied the dynamic metabolic and transcriptional responses of ''B. subtilis'' to changes of the growth conditions. One of the major issues is the adaptation of the cells upon a nutrient switch from glucose to malate and ''vice versa''. Importantly, the study by [http://www.ncbi.nlm.nih.gov/pubmed/22383849 Nicholas ''et al''.] provides an analysis of gene expression at 104 different conditions as revealed by tiling arrays.
 
** [http://www.ncbi.nlm.nih.gov/pubmed/22383848 Buescher ''et al''.] and [http://www.ncbi.nlm.nih.gov/pubmed/22383849 Nicolas ''et al''.] from the BaSysBio consortium diected by [[Philippe Noirot]] studied the dynamic metabolic and transcriptional responses of ''B. subtilis'' to changes of the growth conditions. One of the major issues is the adaptation of the cells upon a nutrient switch from glucose to malate and ''vice versa''. Importantly, the study by [http://www.ncbi.nlm.nih.gov/pubmed/22383849 Nicholas ''et al''.] provides an analysis of gene expression at 104 different conditions as revealed by tiling arrays.

Revision as of 14:53, 4 April 2012

2012


  • A comment on these papers:


  • A comment on this paper:

Liza Gross
Built-in timer delays differentiation.
PLoS Biol: 2012, 10(1);e1001254
[PubMed:22303284] [WorldCat.org] [DOI] (I p)



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


Jamie Richards, Quansheng Liu, Olivier Pellegrini, Helena Celesnik, Shiyi Yao, David H Bechhofer, Ciarán Condon, Joel G Belasco
An RNA pyrophosphohydrolase triggers 5'-exonucleolytic degradation of mRNA in Bacillus subtilis.
Mol Cell: 2011, 43(6);940-9
[PubMed:21925382] [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

Patrice Bruscella, Karen Shahbabian, Soumaya Laalami, Harald Putzer
RNase Y is responsible for uncoupling the expression of translation factor IF3 from that of the ribosomal proteins L35 and L20 in Bacillus subtilis.
Mol Microbiol: 2011, 81(6);1526-41
[PubMed:21843271] [WorldCat.org] [DOI] (I p)

Martin Lehnik-Habrink, Joseph Newman, Fabian M Rothe, Alexandra S Solovyova, Cecilia Rodrigues, Christina Herzberg, Fabian M Commichau, Richard J Lewis, Jörg Stülke
RNase Y in Bacillus subtilis: a Natively disordered protein that is the functional equivalent of RNase E from Escherichia coli.
J Bacteriol: 2011, 193(19);5431-41
[PubMed:21803996] [WorldCat.org] [DOI] (I p)


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)


  • A comment on these papers:

Andrew Jermy
Bacterial physiology: MreB takes a back seat.
Nat Rev Microbiol: 2011, 9(8);560-1
[PubMed:21725336] [WorldCat.org] [DOI] (I e)



  • 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