Team:Paris Bettencourt/Bibliography
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- | <li id="DiCarlo2013">James E. DiCarlo, Julie E. Norville, Prashant Mali, Xavier Rios, John Aach and George M. Church (2013). Genome engineering in Saccharomyces cerevisiae using CRISPR-Cas systems.<i>Nucleic Acids Research.</i> 2013, 1–8.</li> | + | <li id="DiCarlo2013">James E. DiCarlo, Julie E. Norville, Prashant Mali, Xavier Rios, John Aach and George M. Church (2013). Genome engineering in Saccharomyces cerevisiae using CRISPR-Cas systems.<i> Nucleic Acids Research.</i> 2013, 1–8.</li> |
- | <li id="Higashitani1992">Higashitani N., Higashitani I.A., Roth A., Horiuchi A.K. (1992). SOS Induction in Escherichia coli by Infection with Mutant Filamentous Phage That Are Defective in Initiation of Complementary-Strand DNA Synthesis.<i>Journal of Bacteriology.</i> 174:1612-1618.</li> | + | <li id="Higashitani1992">Higashitani N., Higashitani I.A., Roth A., Horiuchi A.K. (1992). SOS Induction in Escherichia coli by Infection with Mutant Filamentous Phage That Are Defective in Initiation of Complementary-Strand DNA Synthesis.<i> Journal of Bacteriology.</i> 174:1612-1618.</li> |
<li id="Karlsson2005">Karlsson F., Malmborg-Hager A.C., Albrekt A.S., Borrebaeck C.A.K. (2005) Genome-wide comparison of phage M13-infected vs. uninfected Escherichia coli. <i>Can. J. Microbiol.</i> 51:29-35.</li> | <li id="Karlsson2005">Karlsson F., Malmborg-Hager A.C., Albrekt A.S., Borrebaeck C.A.K. (2005) Genome-wide comparison of phage M13-infected vs. uninfected Escherichia coli. <i>Can. J. Microbiol.</i> 51:29-35.</li> | ||
<li id="Jayachandran2007">Jayachandran R., Sundaramurthy V., Combaluzier B., Mueller P., Korf H., Huygen K., Miyazaki T., Albrecht I., Massner J., Pieters J. (2007). Survival of Mycobacteria in Macrophages Is Mediated by Coronin 1-Dependent Activation of Calcineurin. <i>Cell.</i> 130:12-14 | <li id="Jayachandran2007">Jayachandran R., Sundaramurthy V., Combaluzier B., Mueller P., Korf H., Huygen K., Miyazaki T., Albrecht I., Massner J., Pieters J. (2007). Survival of Mycobacteria in Macrophages Is Mediated by Coronin 1-Dependent Activation of Calcineurin. <i>Cell.</i> 130:12-14 |
Revision as of 19:15, 3 October 2013
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Bibliography
We collected here the main references used for building our project
- James E. DiCarlo, Julie E. Norville, Prashant Mali, Xavier Rios, John Aach and George M. Church (2013). Genome engineering in Saccharomyces cerevisiae using CRISPR-Cas systems. Nucleic Acids Research. 2013, 1–8.
- Higashitani N., Higashitani I.A., Roth A., Horiuchi A.K. (1992). SOS Induction in Escherichia coli by Infection with Mutant Filamentous Phage That Are Defective in Initiation of Complementary-Strand DNA Synthesis. Journal of Bacteriology. 174:1612-1618.
- Karlsson F., Malmborg-Hager A.C., Albrekt A.S., Borrebaeck C.A.K. (2005) Genome-wide comparison of phage M13-infected vs. uninfected Escherichia coli. Can. J. Microbiol. 51:29-35.
- Jayachandran R., Sundaramurthy V., Combaluzier B., Mueller P., Korf H., Huygen K., Miyazaki T., Albrecht I., Massner J., Pieters J. (2007). Survival of Mycobacteria in Macrophages Is Mediated by Coronin 1-Dependent Activation of Calcineurin. Cell. 130:12-14
- Sommer S., Leitao A., Bernardi A., Bailone A., Devoret R. (1991). Introduction of a UV-damaged replicon into a recipient cell is not a sufficient condition to produce an SOS-inducing signal. Mutation Research/DNA Repair. 254:107-17.
- Yang Y, Bhatti A, Ke D, Gonzalez-Juarrero M, Lenaerts A, Kremer L, Guerardel Y, Zhang P, Ojha AK (2012). Exposure to a cutinase-like serine esterase triggers rapid lysis of multiple mycobacterial species. J Biol Chem. 288:382-92.