Difference between revisions of "Team:CityU HK/Experiments"
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<div class="paragraph" style="text-align:left;"><font size="3"><span "font-size:12.0pt;mso-bidi-font-size:="" 11.0pt;font-family:"calibri","sans-serif";mso-ascii-theme-font:minor-latin;="" mso-fareast-font-family:新細明體;mso-fareast-theme-font:minor-fareast;mso-hansi-theme-font:="" minor-latin;mso-bidi-font-family:"times="" roman";mso-bidi-theme-font:minor-bidi;="" mso-ansi-language:en-us;mso-fareast-language:zh-tw;mso-bidi-language:ar-sa"="" style="">The lacZ gene encodes β-galactosidase, which is an enzyme that digests lactose into glucose and galactose. A strong ribosome binding site (BBa_B0034) is added in front of the lacZ gene to increase the binding affinity of ribosomes to RBS. The lacY’ gene, preceded by a weak ribosome binding site (BBa_B0033), encodes for a mutated lactose permease that cannot be inhibited by glucose, and allows efficient transport of lactose into the cells. The constitutive promoter BBa_J23100 provides a constant and strong transcription for the two genes, which ensue sufficient production of β-galactosidase and allows transport of lactose for activating lysis plasmid.</span></font><br /><br /></div> | <div class="paragraph" style="text-align:left;"><font size="3"><span "font-size:12.0pt;mso-bidi-font-size:="" 11.0pt;font-family:"calibri","sans-serif";mso-ascii-theme-font:minor-latin;="" mso-fareast-font-family:新細明體;mso-fareast-theme-font:minor-fareast;mso-hansi-theme-font:="" minor-latin;mso-bidi-font-family:"times="" roman";mso-bidi-theme-font:minor-bidi;="" mso-ansi-language:en-us;mso-fareast-language:zh-tw;mso-bidi-language:ar-sa"="" style="">The lacZ gene encodes β-galactosidase, which is an enzyme that digests lactose into glucose and galactose. A strong ribosome binding site (BBa_B0034) is added in front of the lacZ gene to increase the binding affinity of ribosomes to RBS. The lacY’ gene, preceded by a weak ribosome binding site (BBa_B0033), encodes for a mutated lactose permease that cannot be inhibited by glucose, and allows efficient transport of lactose into the cells. The constitutive promoter BBa_J23100 provides a constant and strong transcription for the two genes, which ensue sufficient production of β-galactosidase and allows transport of lactose for activating lysis plasmid.</span></font><br /><br /></div> | ||
− | < | + | |
+ | <div id="lactose"><div style="height: 100px; overflow: hidden; width: 100%;"></div> | ||
+ | <hr class="styled-hr" style="width:100%;"></hr> | ||
+ | <div style="height: 30px; overflow: hidden; width: 100%;"></div></div> | ||
+ | <h2 class="wsite-content-title" style="text-align:left;"><span style=""><span style="">B. Construction of a tightly regulated lactose inducible promoter</span></span><br /></h2> | ||
<div class="paragraph" style="text-align:left;"><font size="3"><span "font-size:12.0pt;mso-bidi-font-size:="" 11.0pt;font-family:"calibri","sans-serif";mso-ascii-theme-font:minor-latin;="" mso-fareast-font-family:新細明體;mso-fareast-theme-font:minor-fareast;mso-hansi-theme-font:="" minor-latin;mso-bidi-font-family:"times="" roman";mso-bidi-theme-font:minor-bidi;="" mso-ansi-language:en-us;mso-fareast-language:zh-tw;mso-bidi-language:ar-sa"="" style="">Building a tightly regulated lactose inducible promoter<br />This Biobrick is a designed for engineering a tightly regulated LacI inducible promoter. This Biobrick consists of three parts: the <em style="">lacI</em><sup>Q</sup>promoter (P<em style="">lacI</em><sup>Q</sup>), wild type <em style="">lacI </em>gene and the <em style="">PL8-UV5 </em> promoter, a modified glucose-independent LacI control promoter (Figure 2).</span></font><br /></div> | <div class="paragraph" style="text-align:left;"><font size="3"><span "font-size:12.0pt;mso-bidi-font-size:="" 11.0pt;font-family:"calibri","sans-serif";mso-ascii-theme-font:minor-latin;="" mso-fareast-font-family:新細明體;mso-fareast-theme-font:minor-fareast;mso-hansi-theme-font:="" minor-latin;mso-bidi-font-family:"times="" roman";mso-bidi-theme-font:minor-bidi;="" mso-ansi-language:en-us;mso-fareast-language:zh-tw;mso-bidi-language:ar-sa"="" style="">Building a tightly regulated lactose inducible promoter<br />This Biobrick is a designed for engineering a tightly regulated LacI inducible promoter. This Biobrick consists of three parts: the <em style="">lacI</em><sup>Q</sup>promoter (P<em style="">lacI</em><sup>Q</sup>), wild type <em style="">lacI </em>gene and the <em style="">PL8-UV5 </em> promoter, a modified glucose-independent LacI control promoter (Figure 2).</span></font><br /></div> | ||
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<div class="paragraph" style="text-align:left;"><font size="3"><span style="">The lysis plasmid mainly is consisted of two parts: the lysis cassette and Lac repressor gene. </span><br /><span style=""></span><br /><span style=""></span> <span "font-size:12.0pt;mso-bidi-font-size:11.0pt;font-family:="" "calibri","sans-serif";mso-ascii-theme-font:minor-latin;mso-fareast-font-family:="" 新細明體;mso-fareast-theme-font:minor-fareast;mso-hansi-theme-font:minor-latin;="" mso-bidi-font-family:"times="" roman";mso-bidi-theme-font:minor-bidi;="" mso-ansi-language:en-us;mso-fareast-language:zh-tw;mso-bidi-language:ar-sa"="" style="">The lysis cassette is composed of holin (<em style="">S</em> gene), endolysin (<em style="">R</em> gene) and spanin (<em style="">Rz</em> gene). Two phage origins of the lysis cassette, phage lambda and phage 21, were cloned and compared. To speed up the cell lysis for releasing β-galactosidase, 2 modifications including codon optimization and mutations on the <em style="">S </em>gene were included. A missense mutation and a deletion of the trans-membrane domain were applied to the <em style="">S</em> gene of phage lambda and phage 21, respectively. Our team has constructed 9 lysis cassettes with different combinations (please refer to the <a href="https://2015.igem.org/Team:CityU_HK/Parts" style="color: #000000"><b><u>PARTS</u></b></a>). For all the cassettes, pL8-UV5, a LacI regulated promoter was used to turn the transcription on.</span></font></div> | <div class="paragraph" style="text-align:left;"><font size="3"><span style="">The lysis plasmid mainly is consisted of two parts: the lysis cassette and Lac repressor gene. </span><br /><span style=""></span><br /><span style=""></span> <span "font-size:12.0pt;mso-bidi-font-size:11.0pt;font-family:="" "calibri","sans-serif";mso-ascii-theme-font:minor-latin;mso-fareast-font-family:="" 新細明體;mso-fareast-theme-font:minor-fareast;mso-hansi-theme-font:minor-latin;="" mso-bidi-font-family:"times="" roman";mso-bidi-theme-font:minor-bidi;="" mso-ansi-language:en-us;mso-fareast-language:zh-tw;mso-bidi-language:ar-sa"="" style="">The lysis cassette is composed of holin (<em style="">S</em> gene), endolysin (<em style="">R</em> gene) and spanin (<em style="">Rz</em> gene). Two phage origins of the lysis cassette, phage lambda and phage 21, were cloned and compared. To speed up the cell lysis for releasing β-galactosidase, 2 modifications including codon optimization and mutations on the <em style="">S </em>gene were included. A missense mutation and a deletion of the trans-membrane domain were applied to the <em style="">S</em> gene of phage lambda and phage 21, respectively. Our team has constructed 9 lysis cassettes with different combinations (please refer to the <a href="https://2015.igem.org/Team:CityU_HK/Parts" style="color: #000000"><b><u>PARTS</u></b></a>). For all the cassettes, pL8-UV5, a LacI regulated promoter was used to turn the transcription on.</span></font></div> | ||
− | <div id="characterization"><div style="height: | + | <div id="characterization"><div style="height: 100px; overflow: hidden; width: 100%;"></div> |
<hr class="styled-hr" style="width:100%;"></hr> | <hr class="styled-hr" style="width:100%;"></hr> | ||
<div style="height: 30px; overflow: hidden; width: 100%;"></div></div> | <div style="height: 30px; overflow: hidden; width: 100%;"></div></div> |
Revision as of 13:11, 18 September 2015