Difference between revisions of "Paper"

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==Paula==
 
==Paula==
 
<pubmed>19047753 21858145 19648949</pubmed>
 
<pubmed>19047753 21858145 19648949</pubmed>
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 +
==Carina==
 +
'''Additional publications:''' {{PubMed|21154411}}
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<pubmed> 22211522 18714086 </pubmed>
  
 
==Aneta==
 
==Aneta==

Revision as of 09:41, 18 April 2012

not yet in SubtiWiki

PubMed

sonst (nur Excel-Liste)

Not completely covererd in SW

PubMed


Sumana

Ilana Kolodkin-Gal, Diego Romero, Shugeng Cao, Jon Clardy, Roberto Kolter, Richard Losick
D-amino acids trigger biofilm disassembly.
Science: 2010, 328(5978);627-9
[PubMed:20431016] [WorldCat.org] [DOI] (I p)

Vanesa Olivares-Illana, Philippe Meyer, Emmanuelle Bechet, Virginie Gueguen-Chaignon, Didier Soulat, Sylvie Lazereg-Riquier, Ivan Mijakovic, Josef Deutscher, Alain J Cozzone, Olivier Laprévote, Solange Morera, Christophe Grangeasse, Sylvie Nessler
Structural basis for the regulation mechanism of the tyrosine kinase CapB from Staphylococcus aureus.
PLoS Biol: 2008, 6(6);e143
[PubMed:18547145] [WorldCat.org] [DOI] (I p)

Ivan Mijakovic, Sandrine Poncet, Grégory Boël, Alain Mazé, Sylvie Gillet, Emmanuel Jamet, Paulette Decottignies, Christophe Grangeasse, Patricia Doublet, Pierre Le Maréchal, Josef Deutscher
Transmembrane modulator-dependent bacterial tyrosine kinase activates UDP-glucose dehydrogenases.
EMBO J: 2003, 22(18);4709-18
[PubMed:12970183] [WorldCat.org] [DOI] (P p)


Patrick


Steffi


Paula


Carina

Additional publications: PubMed


Aneta

Frederik M Meyer, Matthieu Jules, Felix M P Mehne, Dominique Le Coq, Jens J Landmann, Boris Görke, Stéphane Aymerich, Jörg Stülke
Malate-mediated carbon catabolite repression in Bacillus subtilis involves the HPrK/CcpA pathway.
J Bacteriol: 2011, 193(24);6939-49
[PubMed:22001508] [WorldCat.org] [DOI] (I p)

Roelco J Kleijn, Joerg M Buescher, Ludovic Le Chat, Matthieu Jules, Stephane Aymerich, Uwe Sauer
Metabolic fluxes during strong carbon catabolite repression by malate in Bacillus subtilis.
J Biol Chem: 2010, 285(3);1587-96
[PubMed:19917605] [WorldCat.org] [DOI] (I p)

Guillaume Lerondel, Thierry Doan, Nicola Zamboni, Uwe Sauer, Stéphane Aymerich
YtsJ has the major physiological role of the four paralogous malic enzyme isoforms in Bacillus subtilis.
J Bacteriol: 2006, 188(13);4727-36
[PubMed:16788182] [WorldCat.org] [DOI] (P p)

Y Wei, A A Guffanti, M Ito, T A Krulwich
Bacillus subtilis YqkI is a novel malic/Na+-lactate antiporter that enhances growth on malate at low protonmotive force.
J Biol Chem: 2000, 275(39);30287-92
[PubMed:10903309] [WorldCat.org] [DOI] (P p)


Daniel


Raphael


POTM

PubMed

Sylvain Durand, Laetitia Gilet, Philippe Bessières, Pierre Nicolas, Ciarán Condon
Three essential ribonucleases-RNase Y, J1, and III-control the abundance of a majority of Bacillus subtilis mRNAs.
PLoS Genet: 2012, 8(3);e1002520
[PubMed:22412379] [WorldCat.org] [DOI] (I p)

Tiit Lukk, Ayano Sakai, Chakrapani Kalyanaraman, Shoshana D Brown, Heidi J Imker, Ling Song, Alexander A Fedorov, Elena V Fedorov, Rafael Toro, Brandan Hillerich, Ronald Seidel, Yury Patskovsky, Matthew W Vetting, Satish K Nair, Patricia C Babbitt, Steven C Almo, John A Gerlt, Matthew P Jacobson
Homology models guide discovery of diverse enzyme specificities among dipeptide epimerases in the enolase superfamily.
Proc Natl Acad Sci U S A: 2012, 109(11);4122-7
[PubMed:22392983] [WorldCat.org] [DOI] (I p)