Team:UANL Mty-Mexico/Project/references

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<p><br><h3>References</h3></p>
<p><br><h3>References</h3></p>
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<ol>
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<br>
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   <li>Camacho <i>et al. </i>(2011) Occurrence and treatment of arsenic in groundwater and soil in northern Mexico and southwestern USA. <i>Chemosphere</i>. <b>83</b>:211–225</li>
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  <li>World Health Organization (2004) Guidelines for Drinking Water Quality. Recommendations, vol. 1, 3rd ed., World Health Organization, Geneva, pp. 306– 308.</li>
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<ul>
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  <li>National Research Council (1999) Arsenic in Drinking Water. The National Academies Press, Washington, DC, 330 pp.</li>
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   <li>Ali M.H. and Imperiali B. (2005) Protein oligomerization: How and why.<i> Bioorg Med Chem. </i><b>13</b>:5013-5020.</li>
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  <li>Secretaria de Salud y Asistencia (SSA) (2000) MODIFICACION a la Norma Oficial Mexicana NOM-127-SSA1-1994. url:http://www.salud.gob.mx/unidades/cdi/nom/m127ssa14.html</li>
+
  <li>Camacho L.M., Gutiérrez M., Alarcón-Herrera M.T., Villalba M. de L. and Deng S. (2011) Occurrence and treatment of arsenic in groundwater and soil in northern Mexico and southwestern USA. <i>Chemosphere</i>. <b>83</b>:211–225</li>
-
  <li>Kaur <i>et al.</i> (1992) Plasmid-encoded resistance to arsenic and antimony. <i>Plasmid</i>. <b>27</b>(1): 29-40.</li>
+
<li>DelProposto J., Majmudar C.Y., Smith J.L. and Brown W.C. (2008) Mocr: A novel fusion tag for enhancing solubility that is compatible with structural biology applications. <i>Protein Expr Purif. </i><b>63</b>:40-49.</li>
-
  <li>Wu &amp; Rosen (1993) Metalloregulated expression of the ars operon. <i>J Biol Chem</i>. <b>268</b>(1): 52-8.</li>
+
<li>Devgan V. (2009) Quantitative Signal Transduction Reporter Assays: The Future is Bright (Luminescent or Fluorescent). <i>SABiosciences</i>.</li>
-
  <li>Fujii <i>et al. </i>(2007) Increase in bioluminescence intensity of firefly luciferase using genetic modification. <i>Anal Biochem</i>. <b>366</b>(2): 131-6</li>
+
<li>Francisco J.A., Earhart C.F. and Georgiou G. (1992) Transport and anchoring of beta-lactamase to the external surface of <i>Escherichia coli.</i> <i>Proc Natl Acad Sci</i> USA. <b>89</b>:2713-2717.</li>
-
  <li>Devgan V. (2009) Quantitative Signal Transduction Reporter Assays: The Future is Bright (Luminescent or Fluorescent). <i>SABiosciences</i>.</li>
+
<li>Fujii H., Noda K., Asami Y., Kuroda A., Sakata M. and Tokida A. (2007) Increase in bioluminescence intensity of firefly luciferase using genetic modification. <i>Anal Biochem</i>. <b>366</b>:131-6</li>
-
  <li>Kostal <i>et al.</i> (2004) Enhanced Arsenic Accumulation in Engineered Bacterial Cells Expressing ArsR. <i>Appl Enrion Microbiol</i>. <b>70</b>(8): 4582-7.</li>
+
<li>Hammarström M., Hellgren N., van Den Berg S., Berglund H. and Härd T. (2002) Rapid screening for improved solubility of small human proteins produced as fusion proteins in <i>Escherichia coli</i>.<i> Protein Sci.</i> <b>11</b>:313-321.</li>
-
  <li>Ngu <i>et al.</i> (2006) Arsenic Binding to Human Metallothionein.<i> J Am Chem Soc. </i><b>128</b>(38): 12473-83.</li>
+
<li>Hong S.H., Gohya M., Ono H., Murakami H., Yamashita M., Hirayama N. and Murooka Y. (2000) Molecular design of novel metal-binding oligomeric human metallothioneins. <i>Appl Microbiol Biotechnol.</i> <b>54</b>:84-89. </li>
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  <li>Ali &amp; Imperiali (2005) Protein oligomerization: How and why.<i> Bioorg Med Chem. </i><b>13</b>(17): 5013-20.</li>
+
<li>Jose J. and Meyer T.F. (2007) The Autodisplay Story, from Discovery to Biotechnical and Biomedical Applications. <i>Microbiol Mol Biol</i>. <b>71</b>:600-619.</li>
-
  <li>Wu &amp; Rosen (1993) Metalloregulated expression of the ars operon.<i> J Biol Chem.</i> <b>268</b>(1): 52-8.</li>
+
<li>Kaur P. and Rosen B.P. (1992) Plasmid-encoded resistance to arsenic and antimony. <i>Plasmid</i>. <b>27</b>:29-40.</li>
-
  <li>Hong <i>et al.</i> (2000) Molecular design of novel metal-binding oligomeric human metallothioneins. <i>Appl Microbiol Biotechnol.</i> <b>54</b>(1): 84-9. </li>
+
<li>Kostal J., Yang R., Wu C.H., Mulchandani A. and Chen W. (2004) Enhanced Arsenic Accumulation in Engineered Bacterial Cells Expressing ArsR. <i>Appl Enrion Microbiol</i>. <b>70</b>:4582-4587.</li>
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  <li>Hammartörm <i>et al.</i> (2002) Rapid screening for improved solubility of small human proteins produced as fusion proteins in <i>Escherichia coli</i>.<i> Protein Sci.</i> <b>11</b>(2): 313-21.</li>
+
<li>Li C., Zhu Y., Benz I., Schmidt M.A., Chen W., Mulchandani A. and Qiao C. (2007) Presentation of Functional Organophosphorus Hydrolase Fusions on the Surface of <i>Escherichia coli</i> by the AIDA-I Autotransporter Pathway <i>Biotechnol Bioeng</i>. <b>99</b>:485-490.</li>
-
  <li>DelProposto<i> et al.</i> (2008) Mocr: A novel fusion tag for enhancing solubility that is compatible with structural biology applications. <i>Protein Expr Purif. </i><b>63</b>(1): 40-9.</li>
+
<li>Malik A. (2004). Metal bioremediation through growing cells. <i> Environ Int. </i><b>30</b>:261-278.</li>
-
  <li>Taniguchi <i>et al. </i>(2007) The Si-tag for Immobilizing Proteins on a Silica Surface. <i>Biotechnol Bioeng.</i> <b>96</b>(6): 1023-9.</li>
+
<li>Meng Y.L., Liu Z. and Rosen B.P. (2004). As(III) and Sb(III) uptake by G1pF and efflux by ArsB in Escherichia coli. <i>J Biol Chem. </i><b>18</b>:18334-18341</li>
-
  <li>van Bloois <i>et al.</i> (2011) Decorating microbes: surface display of proteins on <i>Escherichia coli.</i> <i>Trends Biotechnol.</i> <b>29</b>(2): 79-86.</li>
+
<li>National Research Council (1999) Arsenic in Drinking Water. The National Academies Press, Washington, DC, 330 pp.</li>
-
  <li>Jose &amp; Meyer (2007) The Autodisplay Story, from Discovery to Biotechnical and Biomedical Applications. <i>Microbiol Mol Biol</i>. <b>71</b>(4): 600-19.</li>
+
<li>Ngu T.T. and Stillman M.J. (2006) Arsenic Binding to Human Metallothionein.<i> J Am Chem Soc. </i><b>128</b>:12473-12483.</li>
-
  <li>Li <i>et al.</i> (2007) Presentation of Functional Organophosphorus Hydrolase Fusions on the Surface of <i>Escherichia coli</i> by the AIDA-I Autotransporter Pathway <i>Biotechnol Bioeng</i>. <b>99</b>(2): 485-90.</li>
+
<li>Secretaria de Salud (2000) MODIFICACION a la Norma Oficial Mexicana NOM-127-SSA1-1994. <a href="http://www.salud.gob.mx/unidades/cdi/nom/m127ssa14.html">http://www.salud.gob.mx/unidades/cdi/nom/m127ssa14.html</a></li>
-
  <li>Francisco <i>et al. </i>(1992) Transport and anchoring of beta-lactamase to the external surface of <i>Escherichia coli.</i> <i>Proc Natl Acad Sci</i> USA. <b>89</b>(7):2713-7.</li>
+
<li>Sigel A., Sigel H. and Sigel R.K.O. (2009). Metallothioneins and Related Chelators. Metal Ions in Life Sciences. <i>Cambridge RSC Publishing.</i> <b>48</b>:7966-7967.</li>
-
</ol>
+
<li>Taniguchi K., Nomura K., Hata Y., Nishimura T., Asami Y. and Kuroda A. (2007) The Si-tag for Immobilizing Proteins on a Silica Surface. <i>Biotechnol Bioeng.</i> <b>96</b>:1023-1029.</li>
 +
<li>van Bloois E., Winter R.T., Kolmar H. and Fraaije M.W. (2011) Decorating microbes: surface display of proteins on <i>Escherichia coli.</i> <i>Trends Biotechnol.</i> <b>29</b>:79-86.</li>
 +
<li>World Health Organization (2004) Guidelines for Drinking Water Quality. Recommendations, Vol. 1, 3rd Ed., World Health Organization, Geneva, pp. 306–308.</li>
 +
<li>Wu J. and Rosen B.P. (1993) Metalloregulated expression of the ars operon. <i>J Biol Chem</i>. <b>268</b>:52-58.</li>
 +
</ul>
</div>
</div>
  <div class="sidebar2">
  <div class="sidebar2">
     <ul class="nav">
     <ul class="nav">
 +
<a href="https://2012.igem.org/Team:UANL_Mty-Mexico/Project/abstract"><li>Abstract</a></li>
<a href="https://2012.igem.org/Team:UANL_Mty-Mexico/Project"><li>Overview</a></li>
<a href="https://2012.igem.org/Team:UANL_Mty-Mexico/Project"><li>Overview</a></li>
<a href="https://2012.igem.org/Team:UANL_Mty-Mexico/Project/detection"><li>Detection</a></li>
<a href="https://2012.igem.org/Team:UANL_Mty-Mexico/Project/detection"><li>Detection</a></li>
<a href="https://2012.igem.org/Team:UANL_Mty-Mexico/Project/capture"><li>Capture</a></li>
<a href="https://2012.igem.org/Team:UANL_Mty-Mexico/Project/capture"><li>Capture</a></li>
<a href="https://2012.igem.org/Team:UANL_Mty-Mexico/Project/recovery"><li>Recovery</a></li>
<a href="https://2012.igem.org/Team:UANL_Mty-Mexico/Project/recovery"><li>Recovery</a></li>
-
<a href="https://2012.igem.org/Team:UANL_Mty-Mexico/Project/circuit"><li><b>>>Circuit</b></a></li>
+
<a href="https://2012.igem.org/Team:UANL_Mty-Mexico/Project/circuit"><li>Circuit</a></li>
<a href="#"><li><b>>>References</b></a></li>
<a href="#"><li><b>>>References</b></a></li>
   </ul>  
   </ul>  

Latest revision as of 02:53, 27 September 2012

iGEM UANL 2012


References


  • Ali M.H. and Imperiali B. (2005) Protein oligomerization: How and why. Bioorg Med Chem. 13:5013-5020.
  • Camacho L.M., Gutiérrez M., Alarcón-Herrera M.T., Villalba M. de L. and Deng S. (2011) Occurrence and treatment of arsenic in groundwater and soil in northern Mexico and southwestern USA. Chemosphere. 83:211–225
  • DelProposto J., Majmudar C.Y., Smith J.L. and Brown W.C. (2008) Mocr: A novel fusion tag for enhancing solubility that is compatible with structural biology applications. Protein Expr Purif. 63:40-49.
  • Devgan V. (2009) Quantitative Signal Transduction Reporter Assays: The Future is Bright (Luminescent or Fluorescent). SABiosciences.
  • Francisco J.A., Earhart C.F. and Georgiou G. (1992) Transport and anchoring of beta-lactamase to the external surface of Escherichia coli. Proc Natl Acad Sci USA. 89:2713-2717.
  • Fujii H., Noda K., Asami Y., Kuroda A., Sakata M. and Tokida A. (2007) Increase in bioluminescence intensity of firefly luciferase using genetic modification. Anal Biochem. 366:131-6
  • Hammarström M., Hellgren N., van Den Berg S., Berglund H. and Härd T. (2002) Rapid screening for improved solubility of small human proteins produced as fusion proteins in Escherichia coli. Protein Sci. 11:313-321.
  • Hong S.H., Gohya M., Ono H., Murakami H., Yamashita M., Hirayama N. and Murooka Y. (2000) Molecular design of novel metal-binding oligomeric human metallothioneins. Appl Microbiol Biotechnol. 54:84-89.
  • Jose J. and Meyer T.F. (2007) The Autodisplay Story, from Discovery to Biotechnical and Biomedical Applications. Microbiol Mol Biol. 71:600-619.
  • Kaur P. and Rosen B.P. (1992) Plasmid-encoded resistance to arsenic and antimony. Plasmid. 27:29-40.
  • Kostal J., Yang R., Wu C.H., Mulchandani A. and Chen W. (2004) Enhanced Arsenic Accumulation in Engineered Bacterial Cells Expressing ArsR. Appl Enrion Microbiol. 70:4582-4587.
  • Li C., Zhu Y., Benz I., Schmidt M.A., Chen W., Mulchandani A. and Qiao C. (2007) Presentation of Functional Organophosphorus Hydrolase Fusions on the Surface of Escherichia coli by the AIDA-I Autotransporter Pathway Biotechnol Bioeng. 99:485-490.
  • Malik A. (2004). Metal bioremediation through growing cells. Environ Int. 30:261-278.
  • Meng Y.L., Liu Z. and Rosen B.P. (2004). As(III) and Sb(III) uptake by G1pF and efflux by ArsB in Escherichia coli. J Biol Chem. 18:18334-18341
  • National Research Council (1999) Arsenic in Drinking Water. The National Academies Press, Washington, DC, 330 pp.
  • Ngu T.T. and Stillman M.J. (2006) Arsenic Binding to Human Metallothionein. J Am Chem Soc. 128:12473-12483.
  • Secretaria de Salud (2000) MODIFICACION a la Norma Oficial Mexicana NOM-127-SSA1-1994. http://www.salud.gob.mx/unidades/cdi/nom/m127ssa14.html
  • Sigel A., Sigel H. and Sigel R.K.O. (2009). Metallothioneins and Related Chelators. Metal Ions in Life Sciences. Cambridge RSC Publishing. 48:7966-7967.
  • Taniguchi K., Nomura K., Hata Y., Nishimura T., Asami Y. and Kuroda A. (2007) The Si-tag for Immobilizing Proteins on a Silica Surface. Biotechnol Bioeng. 96:1023-1029.
  • van Bloois E., Winter R.T., Kolmar H. and Fraaije M.W. (2011) Decorating microbes: surface display of proteins on Escherichia coli. Trends Biotechnol. 29:79-86.
  • World Health Organization (2004) Guidelines for Drinking Water Quality. Recommendations, Vol. 1, 3rd Ed., World Health Organization, Geneva, pp. 306–308.
  • Wu J. and Rosen B.P. (1993) Metalloregulated expression of the ars operon. J Biol Chem. 268:52-58.

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