Difference between revisions of "Team:Oxford/Parts"

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<h2 id="Csp1H">Copper Storage Protein 1</h2>
 
<h2 id="Csp1H">Copper Storage Protein 1</h2>
 
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<p>
Copper storage protein 1 is a protein discovered in a methane-oxidizing alphaproteobacterium called<i> Methylosinus trichosporium OB3b. </i> (OB3b here stands for “oddball” strain 3b). This bacterium has a high demand for copper for use in its particular <a data-toggle="popover1" data-trigger="hover" title="Methane Monoxygenase" data-content="An enzyme that oxides methane">methane monoxygenase</a> enzyme. Vita et al. <sup>(1)</sup> discovered Csp1 in 2015, characterised the protein’s copper affinity and obtained crystal structures with and without copper.
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Copper storage protein 1 is a protein discovered in a methane-oxidizing alphaproteobacterium called<i> Methylosinus trichosporium OB3b. </i> (OB3b here stands for “oddball” strain 3b). This bacterium has a high demand for copper for use in its particular <a data-toggle="popover1" data-trigger="hover" title="Methane Monoxygenase" data-content="An enzyme that oxides methane">methane monoxygenase</a> enzyme. Vita et al.<sup>(1)</sup> discovered Csp1 in 2015, characterised the protein’s copper affinity and obtained crystal structures with and without copper.
 
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<h3 id="Csp1">TAT Csp1</h3>
 
<h3 id="Csp1">TAT Csp1</h3>
 
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<p>
Csp1 is a tetramer of four-helix bundles. Each monomer can bind up to 13 Cu(I) ions meaning that the tetramer binds a maximum of 52 copper ions. Vita et al crystallised Csp1 with and without copper bound. The copper is bound inside the pre-folded helical bundles by Cys residues in contrast to metallothioneins, which are unstructured until they fold around metal ion clusters. Vita et al. found an average copper affinity of approximately 1x10<sup>17</sup>M<sup>-1</sup>.
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Csp1 is a tetramer of four-helix bundles. Each monomer can bind up to 13 Cu(I) ions meaning that the tetramer binds a maximum of 52 copper ions. Vita et al crystallised Csp1 with and without copper bound. The copper is bound inside the pre-folded helical bundles by Cys residues in contrast to metallothioneins, which are unstructured until they fold around metal ion clusters. Vita et al.<sup>(1)</sup> found an average copper affinity of approximately 1x10<sup>17</sup>M<sup>-1</sup>.
 
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</p>
 
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We codon optimised Csp1 to <i>E. coli</i> and replaced the original TAT sequence with a TAT sequence from the <i>E. coli</i> protein <a data-toggle="popover1" data-trigger="hover" title="CueO" data-content="An E. coli multicopper oxidase enzyme that protects against copper toxicity by oxidising Cu(I) to the less toxic Cu(II)"> CueO</a>, which is also involved in copper regulation. To get Csp1 from the shipping vector to the pBAD expression system for testing the TAT sequence had to be modified but the addition of a serine residue after the initiator methionine. Serine was chosen over other amino acid possibilities because other TAT sequences seemed to have serine in this location.  
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We codon optimised Csp1 to <i>E. coli</i> and replaced the original TAT sequence with a TAT sequence from the <i>E. coli</i> protein <a data-toggle="popover1" data-trigger="hover" title="CueO" data-content="An E. coli multicopper oxidase enzyme that protects against copper toxicity by oxidising Cu(I) to the less toxic Cu(II)"> CueO</a>, which is also involved in copper regulation. To get Csp1 from the shipping vector to the pBAD expression system for testing the TAT sequence had to be modified by the addition of a serine residue after the initiator methionine. Serine was chosen over other amino acid possibilities because other TAT sequences seemed to have serine in this location.  
 
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<img src="https://static.igem.org/mediawiki/2016/0/0e/Csp1_single_for_Chelators_page_Sam_Oxford_2016.png" width="50%"/>
 
<img src="https://static.igem.org/mediawiki/2016/0/0e/Csp1_single_for_Chelators_page_Sam_Oxford_2016.png" width="50%"/>

Revision as of 09:45, 18 October 2016

iGEM Oxford 2016 - Cure for Copper