Difference between revisions of "Team:HUST-China/Proof Of Concept"

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                                 <div class="modal-content">
 
                                 <div class="modal-content">
 
                                     <div class="modal-header"><h5 class="modal-title" id="Proof2Label">Proof2</h5></div>
 
                                     <div class="modal-header"><h5 class="modal-title" id="Proof2Label">Proof2</h5></div>
                                     <div class="modal-body"><h1>Chassis Yeast</h1>
+
                                     <div class="modal-body"><h2>Chassis Yeast</h2>
 
                     <p>Pichia pastoris, a kind of methylotrophic yeast separated by Ogata in 1969, can grow in culture
 
                     <p>Pichia pastoris, a kind of methylotrophic yeast separated by Ogata in 1969, can grow in culture
 
                         media with methanol as the only carbon source.[1].P.pastoris, being the second widely used
 
                         media with methanol as the only carbon source.[1].P.pastoris, being the second widely used
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                         proteins have been successfully expressed in P. pastoris, and P. pastoris has become one of the
 
                         proteins have been successfully expressed in P. pastoris, and P. pastoris has become one of the
 
                         most commonly used expression systems.[3].</p>
 
                         most commonly used expression systems.[3].</p>
                     <h1>Xylose Responding Regulation System</h1>
+
                     <h2>Xylose Responding Regulation System</h2>
 
                     <p>In order to express the genes at the right time, we introduced a Xylose Responding Regulation
 
                     <p>In order to express the genes at the right time, we introduced a Xylose Responding Regulation
 
                         System. The system includes two promoters: the constitutive promoter Panb1, applied in the dye
 
                         System. The system includes two promoters: the constitutive promoter Panb1, applied in the dye
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                         Pynr071c[5], applied in the decolorization and straightening devices. And the two promoters have
 
                         Pynr071c[5], applied in the decolorization and straightening devices. And the two promoters have
 
                         been proved that would express in Saccharomyces cerevisiae, so we try them in P.pastoris.</p>
 
                         been proved that would express in Saccharomyces cerevisiae, so we try them in P.pastoris.</p>
                     <h1>Expression of parts</h1>
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                     <h2>Expression of parts</h2>
 
                     <p>As for our functional genes, they had been expressed in some chassis. FMO <a
 
                     <p>As for our functional genes, they had been expressed in some chassis. FMO <a
 
                             href="http://parts.igem.org/Part:BBa_K3711003">BBa_K3711003</a> in E.coli, Laccase <a
 
                             href="http://parts.igem.org/Part:BBa_K3711003">BBa_K3711003</a> in E.coli, Laccase <a
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                                 <div class="modal-content">
 
                                 <div class="modal-content">
 
                                     <div class="modal-header"><h5 class="modal-title" id="Proof3Label">Proof3</h5></div>
 
                                     <div class="modal-header"><h5 class="modal-title" id="Proof3Label">Proof3</h5></div>
                                     <div class="modal-body"><h1>The pigments can be used to dye</h1>
+
                                     <div class="modal-body"><h2>The pigments can be used to dye</h2>
 
                     <div class="image"><img alt=" "
 
                     <div class="image"><img alt=" "
 
                                             src="https://static.igem.org/mediawiki/2021/d/d7/T--HUST-China--img--proof--proof2.png"
 
                                             src="https://static.igem.org/mediawiki/2021/d/d7/T--HUST-China--img--proof--proof2.png"
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                                 href="https://2021.igem.org/Team:HUST-China/Proof_Of_Concept/Results">result</a> for
 
                                 href="https://2021.igem.org/Team:HUST-China/Proof_Of_Concept/Results">result</a> for
 
                         more information.</p>
 
                         more information.</p>
                     <h1>The Color of Hairs Can Be Faded</h1>
+
                     <h2>The Color of Hairs Can Be Faded</h2>
 
                     <p>In our design, we have gained information from papers that lipoxygenase can fade the color
 
                     <p>In our design, we have gained information from papers that lipoxygenase can fade the color
 
                         produced by lycopene[11], curcumin reductase can fade curcumin[12], and indigo can be faded by
 
                         produced by lycopene[11], curcumin reductase can fade curcumin[12], and indigo can be faded by
 
                         laccase[13]. We also finished some experiments to prove these enzymes can work as we thought. <a
 
                         laccase[13]. We also finished some experiments to prove these enzymes can work as we thought. <a
 
                                 href="https://2021.igem.org/Team:HUST-China/Proof_Of_Concept/Results">(Results)</a></p>
 
                                 href="https://2021.igem.org/Team:HUST-China/Proof_Of_Concept/Results">(Results)</a></p>
                     <h1>The Short Peptides Can Be Used to Perm</h1>
+
                     <h2>The Short Peptides Can Be Used to Perm</h2>
 
                     <div class="image"><img alt=" "
 
                     <div class="image"><img alt=" "
 
                                             src="https://static.igem.org/mediawiki/2021/a/ab/T--HUST-China--img--proof--proof3.png"
 
                                             src="https://static.igem.org/mediawiki/2021/a/ab/T--HUST-China--img--proof--proof3.png"
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                         it and more information please refer to <a
 
                         it and more information please refer to <a
 
                                 href="https://2021.igem.org/Team:HUST-China/Proof_Of_Concept/Results">result</a>.</p>
 
                                 href="https://2021.igem.org/Team:HUST-China/Proof_Of_Concept/Results">result</a>.</p>
                     <h1>Use Our Products in Real Life</h1>
+
                     <h2>Use Our Products in Real Life</h2>
 
                     <p>For the use of our products in reality, we have designed two main apparatuses. The fermentation
 
                     <p>For the use of our products in reality, we have designed two main apparatuses. The fermentation
 
                         bottle is used to produce pigments and short peptides. And the dyeing comb is used to change the
 
                         bottle is used to produce pigments and short peptides. And the dyeing comb is used to change the

Revision as of 00:49, 22 October 2021

Proof Of Concept | iGEM HUST-China

Proof Of Concept


Introduction

Our project (click design for detailed information) integrated at most five reactions within a system. Each reaction in the system is interrelated by metabolic or regulatory pathways. Integrated with the systems, the Pichia pastoris GS115 can express target products which are separated and applied with our hardware. We will prove the validity and feasibility from the following three aspects including construction, expression and application.

Construction

Every system is composed of dye and perm device as well as decolorization and straightening device, constituted of several parts. The construction process shall be divided into two parts: first connecting the parts to build devices, next assembling devices into systems. During this process, we chose seamless cloning of homologous recombination at the beginning and turned to enzyme digestion and ligation, finally getting the expected result through the latter method.

Expression

The constructed devices and systems were transformed into pichia pastoris GS115 and expressed. We added α-factor as the signal peptide in front of the functional genes for extra-cellular secretion but ended up unsatisfactory. The signal peptide was removed for intracellular expression and we got ideal result, with most protein successfully expressed. The activity of two kinds of enzymes were measured.

Application

When it comes to the application of our products, we should ensure the theoretical basis of our pathways. Furthermore, to put it into the real world for use, we need the support of hardware. In this section, we introduce these two aspects.

Hmm…I can hardly pick out any flaw in this part, what about you? Here is another thing I really care about—the safety of the products! Don’t you worry about whether the products of this team can cause cancer or do damage to hair like other hairdressing products in the market?

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