Haynes:LitRviewMar2012: Difference between revisions
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'''FEBS Letters''' | '''FEBS Letters''' | ||
* Kono H, Imanishi M, Negi S, Tatsutani K, Sakaeda Y, et al. (2012). | * Kono H, Imanishi M, Negi S, Tatsutani K, Sakaeda Y, et al. (2012). ''Rational design of DNA sequence-specific zinc fingers''. FEBS letters. 586: 918–923. | ||
'''Frontiers in Microbiotechnology''' | '''Frontiers in Microbiotechnology''' | ||
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'''Nature''' | '''Nature''' | ||
* Dana GV, Kuiken T, Rejeski D, Snow A. (2012). | * Dana GV, Kuiken T, Rejeski D, Snow A. (2012). ''Four steps to avoid a synthetic-biology disaster''. Nature. 483: 29. | ||
'''Nature Biotechnology''' | '''Nature Biotechnology''' | ||
*tba | *tba | ||
'''PLoS Biology''' | |||
* Levine JH, Fontes ME., Dworkin, J., & Elowitz, M. B. (2012). Pulsed feedback defers cellular differentiation. PLoS Biology, 10(1), e1001252. doi:10.1371/journal.pbio.1001252 | |||
<br>Summary: The Elowitz group reports a mechanism underlying a biological timer in bacteria (''Bacillus subtilis''). | |||
* Nishida, K., & Silver, P. A. (2012). Induction of biogenic magnetization and redox control by a component of the target of rapamycin complex 1 signaling pathway. PLoS Biology, 10(2), e1001269. doi:10.1371/journal.pbio.1001269 | |||
'''Systems and Synthetic Biology''' | '''Systems and Synthetic Biology''' | ||
*tba | *tba |
Revision as of 12:49, 2 April 2012
Spring 2012, 3/30/12
ACS Synthetic Biology
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FEBS Letters
- Kono H, Imanishi M, Negi S, Tatsutani K, Sakaeda Y, et al. (2012). Rational design of DNA sequence-specific zinc fingers. FEBS letters. 586: 918–923.
Frontiers in Microbiotechnology
- tba
Journal of Biological Engineering
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Journal of Cell Biology
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Molecular Biology of the Cell
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Molecular and Cellular Biology
- tba
Nature
- Dana GV, Kuiken T, Rejeski D, Snow A. (2012). Four steps to avoid a synthetic-biology disaster. Nature. 483: 29.
Nature Biotechnology
- tba
PLoS Biology
- Levine JH, Fontes ME., Dworkin, J., & Elowitz, M. B. (2012). Pulsed feedback defers cellular differentiation. PLoS Biology, 10(1), e1001252. doi:10.1371/journal.pbio.1001252
Summary: The Elowitz group reports a mechanism underlying a biological timer in bacteria (Bacillus subtilis).
- Nishida, K., & Silver, P. A. (2012). Induction of biogenic magnetization and redox control by a component of the target of rapamycin complex 1 signaling pathway. PLoS Biology, 10(2), e1001269. doi:10.1371/journal.pbio.1001269
Systems and Synthetic Biology
- tba