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SysMO is a European transnational funding and research initiative on "Systems Biology of Microorganisms".
The goal pursued by SysMO was to record and describe the dynamic molecular processes going on in unicellular microorganisms in a comprehensive way and to present these processes in the form of computerized mathematical models.
Systems biology will raise biomedical and biotechnological research to a new quality level and contribute markedly to progress in understanding. Pooling European research ...
Projects: BaCell-SysMO, COSMIC, SUMO, KOSMOBAC, SysMO-LAB, PSYSMO, SCaRAB, MOSES, TRANSLUCENT, STREAM, SulfoSys, SysMO DB, SysMO Funders, SilicoTryp, Noisy-Strep
Web page: http://sysmo.net/
BaCell-SysMO 2 Modelling carbon core metabolism in Bacillus subtilis – Exploring the contribution of protein complexes in core carbon and nitrogen metabolism.
Bacillus subtilis is a prime model organism for systems biology approaches because it is one of the most advanced models for functional genomics. Furthermore, comprehensive information on cell and molecular biology, physiology and genetics is available and the European Bacillus community (BACELL) has a well-established reputation for applying ...
Programme: SysMO
Public web page: http://www.sysmo.net/index.php?index=53
Organisms: Bacillus subtilis
Country: Germany
City: Marburg
Web page: http://www.uni-marburg.de/fb17/fachgebiete/mikrobio/molmibi
Abstract
Authors: , J. Brill, M. Thuring, G. Wunsche, M. Heun, H. Barzantny, ,
Date Published: 28th Dec 2012
Publication Type: Not specified
DOI: 10.1128/AEM.01934-12
Citation:
The talk shows that position 153 in various glutamate-kinases regulates proline feed-back regulation. This difference is shown for ProB being proline sensitivie and ProJ being proline independent.
Creator: Adrienne Zaprasis
Submitter: Ulf Liebal