Difference between revisions of "Paper"

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* strongly induced in response to glucose starvation in M9 medium {{PubMed|23033921}}: [[putC]] [[putB]] [[ydaE]] [[glpF]] [[gapB]] [[fadE]] [[fadN]] [[fadF]] [[ydaD]] [[ydaT]] [[manP]] [[fruK]] [[ywcE]] [[ggt]] [[yerD]] [[ydaG]] [[nhaX]] [[manA]] [[ywmE]] [[iseA]]
+
 
 
* strongly repressed in response to glucose starvation in M9 medium {{PubMed|23033921}}: [[sdpB]] [[fbaA]] [[yxkC]] [[hupA]] [[rpmB]] [[rpmF]] [[acpA]] [[yqzE]] [[cycC]] [[serA]] [[ydbJ]] [[dhbB]] [[galE]] [[rpsS]] [[yydJ]] [[tcyA]] [[tagF]] [[yqcG]] [[nusG]] [[rplN]]
 
* strongly repressed in response to glucose starvation in M9 medium {{PubMed|23033921}}: [[sdpB]] [[fbaA]] [[yxkC]] [[hupA]] [[rpmB]] [[rpmF]] [[acpA]] [[yqzE]] [[cycC]] [[serA]] [[ydbJ]] [[dhbB]] [[galE]] [[rpsS]] [[yydJ]] [[tcyA]] [[tagF]] [[yqcG]] [[nusG]] [[rplN]]
  
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==POTM==
 
==POTM==
 
{{PubMed|}}
 
{{PubMed|}}
<pubmed> 22960854 </pubmed>
+
<pubmed> </pubmed>
* pages: [[ykgB]], [[spsI]], [[spsJ]], [[Uwe Sauer]], [[Dennis Vitkup]], [[metabolism]]
+
* pages:  
  
 
== für Master-Seminar ==
 
== für Master-Seminar ==
 
* zusätzlich:  {{PubMed|22931116}}
 
* zusätzlich:  {{PubMed|22931116}}
 
<pubmed>22761596 22817898 22761588 </pubmed>
 
<pubmed>22761596 22817898 22761588 </pubmed>

Revision as of 20:19, 8 October 2012

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Peter T McKenney, Patrick Eichenberger
Dynamics of spore coat morphogenesis in Bacillus subtilis.
Mol Microbiol: 2012, 83(2);245-60
[PubMed:22171814] [WorldCat.org] [DOI] (I p)

PubMed

sonst (nur Excel-Liste)

Kerstin

PubMed


Martin

und das neue GCP-Paper


Dominik

Frederik M Meyer, Jan Gerwig, Elke Hammer, Christina Herzberg, Fabian M Commichau, Uwe Völker, Jörg Stülke
Physical interactions between tricarboxylic acid cycle enzymes in Bacillus subtilis: evidence for a metabolon.
Metab Eng: 2011, 13(1);18-27
[PubMed:20933603] [WorldCat.org] [DOI] (I p)

Satinder K Singh, Stephen P Miller, Antony Dean, Leonard J Banaszak, David C LaPorte
Bacillus subtilis isocitrate dehydrogenase. A substrate analogue for Escherichia coli isocitrate dehydrogenase kinase/phosphatase.
J Biol Chem: 2002, 277(9);7567-73
[PubMed:11751849] [WorldCat.org] [DOI] (P p)

S K Singh, K Matsuno, D C LaPorte, L J Banaszak
Crystal structure of Bacillus subtilis isocitrate dehydrogenase at 1.55 A. Insights into the nature of substrate specificity exhibited by Escherichia coli isocitrate dehydrogenase kinase/phosphatase.
J Biol Chem: 2001, 276(28);26154-63
[PubMed:11290745] [WorldCat.org] [DOI] (P p)

R Chen, J A Grobler, J H Hurley, A M Dean
Second-site suppression of regulatory phosphorylation in Escherichia coli isocitrate dehydrogenase.
Protein Sci: 1996, 5(2);287-95
[PubMed:8745407] [WorldCat.org] [DOI] (P p)


Lorena

PubMed

Katrin Gunka, Fabian M Commichau
Control of glutamate homeostasis in Bacillus subtilis: a complex interplay between ammonium assimilation, glutamate biosynthesis and degradation.
Mol Microbiol: 2012, 85(2);213-24
[PubMed:22625175] [WorldCat.org] [DOI] (I p)

Katrin Gunka, Stefan Tholen, Jan Gerwig, Christina Herzberg, Jörg Stülke, Fabian M Commichau
A high-frequency mutation in Bacillus subtilis: requirements for the decryptification of the gudB glutamate dehydrogenase gene.
J Bacteriol: 2012, 194(5);1036-44
[PubMed:22178973] [WorldCat.org] [DOI] (I p)

John R Roth, Elisabeth Kugelberg, Andrew B Reams, Eric Kofoid, Dan I Andersson
Origin of mutations under selection: the adaptive mutation controversy.
Annu Rev Microbiol: 2006, 60;477-501
[PubMed:16761951] [WorldCat.org] [DOI] (P p)


Jannik

Aitor de las Heras, Robert J Cain, Magdalena K Bielecka, José A Vázquez-Boland
Regulation of Listeria virulence: PrfA master and commander.
Curr Opin Microbiol: 2011, 14(2);118-27
[PubMed:21388862] [WorldCat.org] [DOI] (I p)

Maryvonne Arnaud, Arnaud Chastanet, Michel Débarbouillé
New vector for efficient allelic replacement in naturally nontransformable, low-GC-content, gram-positive bacteria.
Appl Environ Microbiol: 2004, 70(11);6887-91
[PubMed:15528558] [WorldCat.org] [DOI] (P p)

R J Premaratne, W J Lin, E A Johnson
Development of an improved chemically defined minimal medium for Listeria monocytogenes.
Appl Environ Microbiol: 1991, 57(10);3046-8
[PubMed:1746963] [WorldCat.org] [DOI] (P p)


Jan

und das c-di-AMP Paper

Sebastian R Schmidl, Katrin Gronau, Nico Pietack, Michael Hecker, Dörte Becher, Jörg Stülke
The phosphoproteome of the minimal bacterium Mycoplasma pneumoniae: analysis of the complete known Ser/Thr kinome suggests the existence of novel kinases.
Mol Cell Proteomics: 2010, 9(6);1228-42
[PubMed:20097688] [WorldCat.org] [DOI] (I p)

L Jolly, P Ferrari, D Blanot, J Van Heijenoort, F Fassy, D Mengin-Lecreulx
Reaction mechanism of phosphoglucosamine mutase from Escherichia coli.
Eur J Biochem: 1999, 262(1);202-10
[PubMed:10231382] [WorldCat.org] [DOI] (P p)


POTM

PubMed

  • pages:

für Master-Seminar

Jonathan R Karr, Jayodita C Sanghvi, Derek N Macklin, Miriam V Gutschow, Jared M Jacobs, Benjamin Bolival, Nacyra Assad-Garcia, John I Glass, Markus W Covert
A whole-cell computational model predicts phenotype from genotype.
Cell: 2012, 150(2);389-401
[PubMed:22817898] [WorldCat.org] [DOI] (I p)

Tobias Bergmiller, Martin Ackermann, Olin K Silander
Patterns of evolutionary conservation of essential genes correlate with their compensability.
PLoS Genet: 2012, 8(6);e1002803
[PubMed:22761596] [WorldCat.org] [DOI] (I p)

Sanna Koskiniemi, Song Sun, Otto G Berg, Dan I Andersson
Selection-driven gene loss in bacteria.
PLoS Genet: 2012, 8(6);e1002787
[PubMed:22761588] [WorldCat.org] [DOI] (I p)