Team:Paris Bettencourt/Bibliography

From 2013.igem.org

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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="FernaÂndez de Henestrosa2000">Antonio R. FernaÂndez de Henestrosa, Tomoo Ogi, Sayura Aoyagi, David Chafin, Jeffrey J. Hayes, Haruo Ohmori and Roger Woodgate (2000). Identification of additional genes belonging to the LexA regulon in Escherichia coli.<i> Molecular Microbiology .</i> 2000 35(6), 1560±1572.</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>
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   <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>
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    <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>
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   <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="Jiang2013">Wenyan Jiang, David Bikard, David Cox, Feng Zhang & Luciano A Marraffini (2013). RNA-guided editing of bacterial genomes using CRISPR-Cas systems.<i> Nature Biotechnology.</i> 31 (3), 233-2398.</li>
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  </li>
+
  <li id="Juers2012">Douglas H. Juers, Brian W. Matthews, and Reuben E. Huber (2012). LacZ b-galactosidase: Structure and function of an enzyme of historical and molecular biological importance.<i> PROTEIN SCIENCE.</i> 2012, 21,1792—1807.</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="Keller2001">Kimberly L. Keller, Terri L. Overbeck-Carrick, Doris J. Beck (2001). Survival and induction of SOS in Escherichia coli treated with cisplatin, UV irradiation, or mitomycin C are dependent on the function of the RecBC and RecFOR pathways of homologous recombination. <i> Mutation Research.</i> 486, 2001, 21–29.</li>
 +
  <li id="Kobayashi2009">Kobayashi, Ichizo; and Handa, Naofumi (2009). DNA Doublestrand Breaks and Their Consequences in Bacteria. <i> Encyclopedia of Life Sciences (ELS). John Wiley & Sons, Ltd: Chichester.</li>
 +
  <li id="Norman2004">Anders Norman, Lars Hestbjerg Hansen, and Søren J. Sørensen (2004). Construction of a ColD cda Promoter-Based SOS-Green Fluorescent Protein Whole-Cell Biosensor with Higher Sensitivity toward Genotoxic Compounds than Constructs Based on recA, umuDC, or sulA Promoters. <i> APPLIED AND ENVIRONMENTAL MICROBIOLOGY.</i> May 2005, p. 2338–2346.</li>
   <li id="Sommer2007">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. <i>Mutation Research/DNA Repair.</i> 254:107-17.</li>
   <li id="Sommer2007">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. <i>Mutation Research/DNA Repair.</i> 254:107-17.</li>
   <li id="Yang2012">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. <i>J Biol Chem.</i> 288:382-92.
   <li id="Yang2012">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. <i>J Biol Chem.</i> 288:382-92.

Revision as of 20:12, 3 October 2013

<body>
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.
  • Antonio R. FernaÂndez de Henestrosa, Tomoo Ogi, Sayura Aoyagi, David Chafin, Jeffrey J. Hayes, Haruo Ohmori and Roger Woodgate (2000). Identification of additional genes belonging to the LexA regulon in Escherichia coli. Molecular Microbiology . 2000 35(6), 1560±1572.
  • 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.
  • 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
  • Wenyan Jiang, David Bikard, David Cox, Feng Zhang & Luciano A Marraffini (2013). RNA-guided editing of bacterial genomes using CRISPR-Cas systems. Nature Biotechnology. 31 (3), 233-2398.
  • Douglas H. Juers, Brian W. Matthews, and Reuben E. Huber (2012). LacZ b-galactosidase: Structure and function of an enzyme of historical and molecular biological importance. PROTEIN SCIENCE. 2012, 21,1792—1807.
  • 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.
  • Kimberly L. Keller, Terri L. Overbeck-Carrick, Doris J. Beck (2001). Survival and induction of SOS in Escherichia coli treated with cisplatin, UV irradiation, or mitomycin C are dependent on the function of the RecBC and RecFOR pathways of homologous recombination. Mutation Research. 486, 2001, 21–29.
  • Kobayashi, Ichizo; and Handa, Naofumi (2009). DNA Doublestrand Breaks and Their Consequences in Bacteria. Encyclopedia of Life Sciences (ELS). John Wiley & Sons, Ltd: Chichester.
  • Anders Norman, Lars Hestbjerg Hansen, and Søren J. Sørensen (2004). Construction of a ColD cda Promoter-Based SOS-Green Fluorescent Protein Whole-Cell Biosensor with Higher Sensitivity toward Genotoxic Compounds than Constructs Based on recA, umuDC, or sulA Promoters. APPLIED AND ENVIRONMENTAL MICROBIOLOGY. May 2005, p. 2338–2346.
  • 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.
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