Difference between revisions of "Team:Aachen/Basic Part"

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<h2 style="border-bottom: 5px solid #005b04;padding-left: 0.8cm;">Basic Building Blocks</h2>
 
<h2 style="border-bottom: 5px solid #005b04;padding-left: 0.8cm;">Basic Building Blocks</h2>
 
<br/><p align="justify" style="padding-left:1.0cm; padding-right:1.0cm; font-size: 16px;">
 
<br/><p align="justify" style="padding-left:1.0cm; padding-right:1.0cm; font-size: 16px;">
<b>K2020000</b> – subtilisin E gene, optimized for <i>E. coli</i> codon usage</br>
+
<big><b><span style="color:#005C04 ;">BBa_K2020000</span></b></big> – subtilisin E gene, optimized for <i>E. coli</i> codon usage</br>
 
The gene of this BioBrick can be used to express subtilisin E, which is an alkaline serine protease, which non specifically digest proteins, in <i>Escherichia coli</i>. To use this part a suitable leader sequence has to be placed in front as the sequence of this BioBrick does not contain a start codon.
 
The gene of this BioBrick can be used to express subtilisin E, which is an alkaline serine protease, which non specifically digest proteins, in <i>Escherichia coli</i>. To use this part a suitable leader sequence has to be placed in front as the sequence of this BioBrick does not contain a start codon.
 
Its sequence was originally obtained from a wild type <i>Bacillus subtilis</i> but was codon optimized for <i>E. coli</i>.</br></br>
 
Its sequence was originally obtained from a wild type <i>Bacillus subtilis</i> but was codon optimized for <i>E. coli</i>.</br></br>
<b>K2020001</b> – subtilisin E gene, optimized for <i>E. coli</i> codon usage, with leader sequence pelB</br>
+
 
 +
<big><b><span style="color:#005C04 ;">BBa_K2020001</span></b></big> – subtilisin E gene, optimized for <i>E. coli</i> codon usage, with leader sequence pelB</br>
 
This composite part consists of the leader sequence pelB (<a href=”http://parts.igem.org/Part:BBa_J32015”>BBa_J32015</a>) and the subtilisin E gene (<a href=”http://parts.igem.org/Part:BBa_K2020000”>K2020000</a>) from our first BioBrick. It can be used to express subtilisin E in <i>Escherichia coli</i> and simultaneously secret the enzyme into the periplasm of the cell. Subtilisin E is an alkaline serine protease which non-specifically digests proteins.</br>
 
This composite part consists of the leader sequence pelB (<a href=”http://parts.igem.org/Part:BBa_J32015”>BBa_J32015</a>) and the subtilisin E gene (<a href=”http://parts.igem.org/Part:BBa_K2020000”>K2020000</a>) from our first BioBrick. It can be used to express subtilisin E in <i>Escherichia coli</i> and simultaneously secret the enzyme into the periplasm of the cell. Subtilisin E is an alkaline serine protease which non-specifically digests proteins.</br>
 
To generate a functional coding sequence that can be expressed in <i>E. coli</i> the leader sequence pelB, which begins with a start codon, was placed in front of the subtilisin E gene.</br>
 
To generate a functional coding sequence that can be expressed in <i>E. coli</i> the leader sequence pelB, which begins with a start codon, was placed in front of the subtilisin E gene.</br>
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<h2 style="border-bottom: 5px solid #005b04;padding-left: 0.8cm;">Mutated Versions</h2>
 
<h2 style="border-bottom: 5px solid #005b04;padding-left: 0.8cm;">Mutated Versions</h2>
 
<br/><p align="justify" style="padding-left:1.0cm; padding-right:1.0cm; font-size: 16px;">
 
<br/><p align="justify" style="padding-left:1.0cm; padding-right:1.0cm; font-size: 16px;">
<b>K2020003</b> – mutated expression system for subtilisin E in <i>E. coli</i> (S221Y)</br>
+
<big><b><span style="color:#005C04 ;">BBa_K2020003</span></b></big> – mutated expression system for subtilisin E in <i>E. coli</i> (S221Y)</br>
 
The named BioBrick K2020002 above for the expression of subtilisin E in <i>E. coli</i> is the basic concept of this new part. Therefore it consists of the promoter <a href=”http://parts.igem.org/Part:BBa_R0010”>BBa_R0010</a>, the ribosome binding site <a href=”http://parts.igem.org/Part:BBa_B0034”>BBa_B0034</a>, the leader sequence pelB <a href=”http://parts.igem.org/Part:BBa_J32015”>BBa_J32015</a>, the newly created BioBrick part <a href=”http://parts.igem.org/Part:BBa_K2020000”>BBa_K2020000</a> and the terminator <a href=”http://parts.igem.org/Part:BBa_B0010”>BBa_B0010</a> like the expression system itself. The whole expression is based on the usage in <i>E. coli</i>, so the sequence of the subtilisin E gene from a wild type <i>Bacillus subtilis</i> was optimized for <i>E. coli</i> codon usage. </br>
 
The named BioBrick K2020002 above for the expression of subtilisin E in <i>E. coli</i> is the basic concept of this new part. Therefore it consists of the promoter <a href=”http://parts.igem.org/Part:BBa_R0010”>BBa_R0010</a>, the ribosome binding site <a href=”http://parts.igem.org/Part:BBa_B0034”>BBa_B0034</a>, the leader sequence pelB <a href=”http://parts.igem.org/Part:BBa_J32015”>BBa_J32015</a>, the newly created BioBrick part <a href=”http://parts.igem.org/Part:BBa_K2020000”>BBa_K2020000</a> and the terminator <a href=”http://parts.igem.org/Part:BBa_B0010”>BBa_B0010</a> like the expression system itself. The whole expression is based on the usage in <i>E. coli</i>, so the sequence of the subtilisin E gene from a wild type <i>Bacillus subtilis</i> was optimized for <i>E. coli</i> codon usage. </br>
 
The sequence was partly ordered from IDT (<a href=”http://parts.igem.org/Part:BBa_K2020001”>BBa_K2020001</a> + <a href=”http://parts.igem.org/Part:BBa_B0010”>BBa_B0010</a>) and then cloned into <a href=”http://parts.igem.org/Part:BBa_J04500”>BBa_J04500</a>, a protein expression backbone which already carries the LacI promoter <a href=”http://parts.igem.org/Part:BBa_R0010”>BBa_R0010</a> and the ribosome binding site <a href=”http://parts.igem.org/Part:BBa_B0034”>BBa_B0034</a>. Afterwards, a mutation in the active site of the enzyme was introduced by performing a site-directed mutagenesis. The codon AGC of serine<sup>221</sup> was substituted with TAC which codes for tyrosine.</br>
 
The sequence was partly ordered from IDT (<a href=”http://parts.igem.org/Part:BBa_K2020001”>BBa_K2020001</a> + <a href=”http://parts.igem.org/Part:BBa_B0010”>BBa_B0010</a>) and then cloned into <a href=”http://parts.igem.org/Part:BBa_J04500”>BBa_J04500</a>, a protein expression backbone which already carries the LacI promoter <a href=”http://parts.igem.org/Part:BBa_R0010”>BBa_R0010</a> and the ribosome binding site <a href=”http://parts.igem.org/Part:BBa_B0034”>BBa_B0034</a>. Afterwards, a mutation in the active site of the enzyme was introduced by performing a site-directed mutagenesis. The codon AGC of serine<sup>221</sup> was substituted with TAC which codes for tyrosine.</br>
 
By performing a site-directed mutagenesis, serine in the catalytic triade of the enzyme was exchanged against tyrosine. Therefore, the alkaline serine protease looses its proteolytic activity of non-specifically digesting proteins. Caused to its leader sequence pelB <a href=”http://parts.igem.org/Part:BBa_J32015”>BBa_J32015</a>, the BioBrick secrets an inactive version of subtilisin E into the periplasm of the cell as soon as it is introduced into <i>E. coli</i>. </br></br>
 
By performing a site-directed mutagenesis, serine in the catalytic triade of the enzyme was exchanged against tyrosine. Therefore, the alkaline serine protease looses its proteolytic activity of non-specifically digesting proteins. Caused to its leader sequence pelB <a href=”http://parts.igem.org/Part:BBa_J32015”>BBa_J32015</a>, the BioBrick secrets an inactive version of subtilisin E into the periplasm of the cell as soon as it is introduced into <i>E. coli</i>. </br></br>
<b>K2020004</b> – mutated expression system for subtilisin E in <i>E. coli</i> (S221X)</br></br>
+
 
<b>K2020005</b> – mutated expression system for subtilisin E in <i>E. coli</i> (Y77W)</br></br>
+
<big><b><span style="color:#005C04 ;">BBa_K2020004</span></b></big> – mutated expression system for subtilisin E in <i>E. coli</i> (S221X)</br></br>
 +
 
 +
<big><b><span style="color:#005C04 ;">BBa_K2020005</span></b></big> – mutated expression system for subtilisin E in <i>E. coli</i> (Y77W)</br></br>
 
<b>K2020006</b> – mutated expression system for subtilisin E in <i>E. coli</i> (Y77X)</br></br>
 
<b>K2020006</b> – mutated expression system for subtilisin E in <i>E. coli</i> (Y77X)</br></br>
  
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<h2 style="border-bottom: 5px solid #005b04;padding-left: 0.8cm;">Improvement of an Existing Part</h2>
 
<h2 style="border-bottom: 5px solid #005b04;padding-left: 0.8cm;">Improvement of an Existing Part</h2>
 
<br/><p align="justify" style="padding-left:1.0cm; padding-right:1.0cm; font-size: 16px;">
 
<br/><p align="justify" style="padding-left:1.0cm; padding-right:1.0cm; font-size: 16px;">
<b>K2020026</b> – leader sequence MFalpha (different version of the biobrick <a href=”http://parts.igem.org/Part:BBa_K792002”>BBa_K792002</a>)</br></br>
+
<big><b><span style="color:#005C04 ;">BBa_K2020026</span></b></big> – leader sequence MFalpha (different version of the biobrick <a href=”http://parts.igem.org/Part:BBa_K792002”>BBa_K792002</a>)</br></br>
<b>K2020027</b> – leader sequence MFalpha (<a href=”http://parts.igem.org/Part:BBa_K2020026”>BBa_K2020026</a>) plus fluorescence protein RFP (<a href=”http://parts.igem.org/Part:BBa_E2060”>BBa_E2060</a>)</br></br>
+
<big><b><span style="color:#005C04 ;">BBa_K2020027</span></b></big> – leader sequence MFalpha (<a href=”http://parts.igem.org/Part:BBa_K2020026”>BBa_K2020026</a>) plus fluorescence protein RFP (<a href=”http://parts.igem.org/Part:BBa_E2060”>BBa_E2060</a>)</br></br>
<b>K2020028</b> – leader sequence MFalpha (<a href=”http://parts.igem.org/Part:BBa_K2020026”>BBa_K2020026</a>) plus fluorescence protein YFP (<a href=”http://parts.igem.org/Part:BBa_K165005”>BBa_K165005</a>)</br></br>
+
<big><b><span style="color:#005C04 ;">BBa_K2020028</span></b></big> – leader sequence MFalpha (<a href=”http://parts.igem.org/Part:BBa_K2020026”>BBa_K2020026</a>) plus fluorescence protein YFP (<a href=”http://parts.igem.org/Part:BBa_K165005”>BBa_K165005</a>)</br></br>
<b>K2020029</b> – leader sequence MFalpha (<a href=”http://parts.igem.org/Part:BBa_K2020026”>BBa_K2020026</a>) plus fluorescence protein mOrange (<a href=”http://parts.igem.org/Part:BBa_E2050”>BBa_E2050</a>)</br></br>
+
<big><b><span style="color:#005C04 ;">BBa_K2020029</span></b></big> – leader sequence MFalpha (<a href=”http://parts.igem.org/Part:BBa_K2020026”>BBa_K2020026</a>) plus fluorescence protein mOrange (<a href=”http://parts.igem.org/Part:BBa_E2050”>BBa_E2050</a>)</br></br>
 
    
 
    
 
</div>
 
</div>
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<h2 style="border-bottom: 5px solid #005b04;padding-left: 0.8cm;">Screening System</h2>
 
<h2 style="border-bottom: 5px solid #005b04;padding-left: 0.8cm;">Screening System</h2>
 
<br/><p align="justify" style="padding-left:1.0cm; padding-right:1.0cm; font-size: 16px;">
 
<br/><p align="justify" style="padding-left:1.0cm; padding-right:1.0cm; font-size: 16px;">
<b>K2020040</b> – screening plasmid for incorporation of non-canonical amino acids → pRXG (twin pFRY)</br></br>
+
<big><b><span style="color:#005C04 ;">BBa_K2020040</span></b></big> – screening plasmid for incorporation of non-canonical amino acids → pRXG (twin pFRY)</br></br>
<b>K2020041</b> – screening plasmid for incorporation of non-canonical amino acids → pRYG (twin pFRYC)</br></br>
+
<big><b><span style="color:#005C04 ;">BBa_K2020041</span></b></big> – screening plasmid for incorporation of non-canonical amino acids → pRYG (twin pFRYC)</br></br>
  
 
<h2 style="border-bottom: 5px solid #005b04;padding-left: 0.8cm;">tRNA and Synthetases</h2>
 
<h2 style="border-bottom: 5px solid #005b04;padding-left: 0.8cm;">tRNA and Synthetases</h2>
 
<br/><p align="justify" style="padding-left:1.0cm; padding-right:1.0cm; font-size: 16px;">
 
<br/><p align="justify" style="padding-left:1.0cm; padding-right:1.0cm; font-size: 16px;">
<b>K2020042</b> – tRNA specific for tyrosine and UAG codon in <i>E. coli</i></br>
+
<big><b><span style="color:#005C04 ;">BBa_K2020042</span></b></big> – tRNA specific for tyrosine and UAG codon in <i>E. coli</i></br>
 
Details about this part can be seen above in the section “Best New Basic Part”.</br></br>
 
Details about this part can be seen above in the section “Best New Basic Part”.</br></br>
<b>K2020043</b> – tRNA synthetase specific for the ncAA AzF and UAG codon in <i>E. coli</i> → AzF-RS</br>
+
<big><b><span style="color:#005C04 ;">BBa_K2020043</span></b></big> – tRNA synthetase specific for the ncAA AzF and UAG codon in <i>E. coli</i> → AzF-RS</br>
 
Details about this part can be seen above in the section “Parts Collection”.</br></br>
 
Details about this part can be seen above in the section “Parts Collection”.</br></br>
<b>K2020045</b> – tRNA synthetase specific for the ncAA NitroY and UAG codon in <i>E. coli</i> → NitroY-RS</br>
+
<big><b><span style="color:#005C04 ;">BBa_K2020045</span></b></big> – tRNA synthetase specific for the ncAA NitroY and UAG codon in <i>E. coli</i> → NitroY-RS</br>
 
Details about this part can be seen above in the section “Parts Collection”.</br></br>
 
Details about this part can be seen above in the section “Parts Collection”.</br></br>
<b>K2020046</b> – tRNA synthetase specific for the ncAA CNF and UAG codon in <i>E. coli</i> → CNF-RS</br>
+
<big><b><span style="color:#005C04 ;">BBa_K2020046</span></b></big> – tRNA synthetase specific for the ncAA CNF and UAG codon in <i>E. coli</i> → CNF-RS</br>
 
Details about this part can be seen above in the section “Parts Collection”.</br></br>
 
Details about this part can be seen above in the section “Parts Collection”.</br></br>
<b>K2020050</b> – tRNA synthetase specific for tyrosine and UAG codon in <i>E. coli</i> → Y-RS</br>
+
<big><b><span style="color:#005C04 ;">BBa_K2020050</span></b></big> – tRNA synthetase specific for tyrosine and UAG codon in <i>E. coli</i> → Y-RS</br>
 
Details about this part can be seen above in the section “Parts Collection”.</br></br>
 
Details about this part can be seen above in the section “Parts Collection”.</br></br>
<b>K2020051</b> – mutated tRNA synthetase specific for tyrosine and UAG codon in <i>E. coli</i> → Y-RS with Y32G</br>
+
<big><b><span style="color:#005C04 ;">BBa_K2020051</span></b></big> – mutated tRNA synthetase specific for tyrosine and UAG codon in <i>E. coli</i> → Y-RS with Y32G</br>
 
Details about this part can be seen above in the section “Parts Collection”.</br></br>
 
Details about this part can be seen above in the section “Parts Collection”.</br></br>
<b>BBa_K2020052 to BBa_K2020061</b> - tRNA synthetase specific for DMNB-serine and UAG codon in <i>E. coli</i> → version 1 to 10</br>
+
<big><b><span style="color:#005C04 ;">BBa_K2020052 to BBa_K2020061</span></b></big> - tRNA synthetase specific for DMNB-serine and UAG codon in <i>E. coli</i> → version 1 to 10</br>
 
Details about these parts can be seen above in the section “Parts Collection”.</br></br>
 
Details about these parts can be seen above in the section “Parts Collection”.</br></br>
  

Revision as of 16:26, 17 October 2016

Welcome to iGEM Aachen 2016

Parts

BioBrick Description
K2020000 subtilisin E gene, optimized for E. coli codon usage
K2020001 subtilisin E gene, optimized for E. coli codon usage, with leader sequence pelB
K2020002 expression system for subtilisin E in E. coli
K2020003 mutated expression system for subtilisin E in E. coli (S221Y)
K2020004 mutated expression system for subtilisin E in E. coli (S221X)
K2020005 mutated expression system for subtilisin E in E. coli (Y77W)
K2020006 mutated expression system for subtilisin E in E. coli (Y77X)
K2020026 leader sequence MFalpha (different version of the biobrick K792002)
K2020027 leader sequence MFalpha (BBa_K2020026) plus fluorescence protein RFP (BBa_E2060)
K2020028 leader sequence MFalpha (BBa_K2020026) plus fluorescence protein YFP (BBa_K165005)
K2020029 leader sequence MFalpha (BBa_K2020026) plus fluorescence protein mOrange (BBa_E2050)
K2020040 screening plasmid for incorporation of non-canonical amino acids → pRXG (twin pFRY)
K2020041 screening plasmid for incorporation of non-canonical amino acids → pRYG (twin pFRYC)
K2020042 tRNA specific for tyrosine and UAG codon in E. coli
K2020043 tRNA synthetase specific for the ncAA AzF and UAG codon in E. coli → AzF-RS
K2020045 tRNA synthetase specific for the ncAA NitroY and UAG codon in E. coli → NitroY-RS
K2020046 tRNA synthetase specific for the ncAA CNF and UAG codon in E. coli → CNF-RS
K2020050 tRNA synthetase specific for tyrosine and UAG codon in E. coli → Y-RS
K2020051 mutated tRNA synthetase specific for tyrosine and UAG codon in E. coli → Y-RS with Y32G
K2020052 tRNA synthetase specific for DMNB-serine and UAG codon in E. coli → version 1
K2020053 tRNA synthetase specific for DMNB-serine and UAG codon in E. coli → version 2
K2020054 tRNA synthetase specific for DMNB-serine and UAG codon in E. coli → version 3
K2020055 tRNA synthetase specific for DMNB-serine and UAG codon in E. coli → version 4
K2020056 tRNA synthetase specific for DMNB-serine and UAG codon in E. coli → version 5
K2020057 tRNA synthetase specific for DMNB-serine and UAG codon in E. coli → version 6
K2020058 tRNA synthetase specific for DMNB-serine and UAG codon in E. coli → version 7
K2020059 tRNA synthetase specific for DMNB-serine and UAG codon in E. coli → version 8
K2020060 tRNA synthetase specific for DMNB-serine and UAG codon in E. coli → version 9
K2020061 tRNA synthetase specific for DMNB-serine and UAG codon in E. coli → version 10

BBa_K2020042 - tRNA specific for tyrosine and UAG codon in E. coli

BBa_K2020002 – expression system for subtilisin E in E. coli
This expression system consists of the promoter BBa_R0011, the ribosome binding site BBa_B0034, the newly created BioBrick part BBa_K2020001 and the terminator BBa_B0010. BioBrick BBa_K2020001 is a composite part itself and includes the secretion tag pelB (BBa_J32015) and a subtilisin E gene optimized for Escherichia coli codon usage (BBa_K2020000). Once introduced into E. coli, this BioBrick is able to produce subtilisin E, an alkaline serine protease which non-specifically digest proteins, and simultaneously secret the enzyme into the periplasm of the cell. Caused by the lacI regulated promoter BBa_R0010, the expression system can be induced by addition of IPTG.

BBa_K2020043 – tRNA synthetase specific for the ncAA AzF and UAG codon in E. coli → AzF-RS

BBa_K2020045 – tRNA synthetase specific for the ncAA NitroY and UAG codon in E. coli → NitroY-RS

BBa_K2020046 – tRNA synthetase specific for the ncAA CNF and UAG codon in E. coli → CNF-RS

BBa_K2020050 - tRNA synthetase specific for tyrosine and UAG codon in E. coli → Y-RS

BBa_K2020051 - mutated tRNA synthetase specific for tyrosine and UAG codon in E. coli → Y-RS with Y32G

BBa_K2020052 – tRNA synthetase specific for DMNB-serine and UAG codon in E. coli → version 1

BBa_K2020053 – tRNA synthetase specific for DMNB-serine and UAG codon in E. coli → version 2

BBa_K2020054 – tRNA synthetase specific for DMNB-serine and UAG codon in E. coli → version 3

BBa_K2020055 – tRNA synthetase specific for DMNB-serine and UAG codon in E. coli → version 4

BBa_K2020056 – tRNA synthetase specific for DMNB-serine and UAG codon in E. coli → version 5

BBa_K2020057 – tRNA synthetase specific for DMNB-serine and UAG codon in E. coli → version 6

BBa_K2020058 – tRNA synthetase specific for DMNB-serine and UAG codon in E. coli → version 7

BBa_K2020059 – tRNA synthetase specific for DMNB-serine and UAG codon in E. coli → version 8

BBa_K2020060 – tRNA synthetase specific for DMNB-serine and UAG codon in E. coli → version 9

BBa_K2020061 – tRNA synthetase specific for DMNB-serine and UAG codon in E. coli → version 10

Basic Building Blocks


BBa_K2020000 – subtilisin E gene, optimized for E. coli codon usage
The gene of this BioBrick can be used to express subtilisin E, which is an alkaline serine protease, which non specifically digest proteins, in Escherichia coli. To use this part a suitable leader sequence has to be placed in front as the sequence of this BioBrick does not contain a start codon. Its sequence was originally obtained from a wild type Bacillus subtilis but was codon optimized for E. coli.

BBa_K2020001 – subtilisin E gene, optimized for E. coli codon usage, with leader sequence pelB
This composite part consists of the leader sequence pelB (BBa_J32015) and the subtilisin E gene (K2020000) from our first BioBrick. It can be used to express subtilisin E in Escherichia coli and simultaneously secret the enzyme into the periplasm of the cell. Subtilisin E is an alkaline serine protease which non-specifically digests proteins.
To generate a functional coding sequence that can be expressed in E. coli the leader sequence pelB, which begins with a start codon, was placed in front of the subtilisin E gene.
Caused to subtilisin E’s partly toxicity for E. coli, this BioBrick should be cloned into an expression system with an inducible promoter. This has to hinder the organism in the expression of the protease while its growing period. With the iGEM promoter BBa_R0011 it was not possible to successfully express subtilisin E. Hence, we exchange the promoter against BBa_R0010.

K2020002 – expression system for subtilisin E in E. coli
Details about this part can be seen above in the section “Best New Composite Part”.

Mutated Versions


BBa_K2020003 – mutated expression system for subtilisin E in E. coli (S221Y)
The named BioBrick K2020002 above for the expression of subtilisin E in E. coli is the basic concept of this new part. Therefore it consists of the promoter BBa_R0010, the ribosome binding site BBa_B0034, the leader sequence pelB BBa_J32015, the newly created BioBrick part BBa_K2020000 and the terminator BBa_B0010 like the expression system itself. The whole expression is based on the usage in E. coli, so the sequence of the subtilisin E gene from a wild type Bacillus subtilis was optimized for E. coli codon usage.
The sequence was partly ordered from IDT (BBa_K2020001 + BBa_B0010) and then cloned into BBa_J04500, a protein expression backbone which already carries the LacI promoter BBa_R0010 and the ribosome binding site BBa_B0034. Afterwards, a mutation in the active site of the enzyme was introduced by performing a site-directed mutagenesis. The codon AGC of serine221 was substituted with TAC which codes for tyrosine.
By performing a site-directed mutagenesis, serine in the catalytic triade of the enzyme was exchanged against tyrosine. Therefore, the alkaline serine protease looses its proteolytic activity of non-specifically digesting proteins. Caused to its leader sequence pelB BBa_J32015, the BioBrick secrets an inactive version of subtilisin E into the periplasm of the cell as soon as it is introduced into E. coli.

BBa_K2020004 – mutated expression system for subtilisin E in E. coli (S221X)

BBa_K2020005 – mutated expression system for subtilisin E in E. coli (Y77W)

K2020006 – mutated expression system for subtilisin E in E. coli (Y77X)

Improvement of an Existing Part


BBa_K2020026 – leader sequence MFalpha (different version of the biobrick BBa_K792002)

BBa_K2020027 – leader sequence MFalpha (BBa_K2020026) plus fluorescence protein RFP (BBa_E2060)

BBa_K2020028 – leader sequence MFalpha (BBa_K2020026) plus fluorescence protein YFP (BBa_K165005)

BBa_K2020029 – leader sequence MFalpha (BBa_K2020026) plus fluorescence protein mOrange (BBa_E2050)

Screening System


BBa_K2020040 – screening plasmid for incorporation of non-canonical amino acids → pRXG (twin pFRY)

BBa_K2020041 – screening plasmid for incorporation of non-canonical amino acids → pRYG (twin pFRYC)

tRNA and Synthetases


BBa_K2020042 – tRNA specific for tyrosine and UAG codon in E. coli
Details about this part can be seen above in the section “Best New Basic Part”.

BBa_K2020043 – tRNA synthetase specific for the ncAA AzF and UAG codon in E. coli → AzF-RS
Details about this part can be seen above in the section “Parts Collection”.

BBa_K2020045 – tRNA synthetase specific for the ncAA NitroY and UAG codon in E. coli → NitroY-RS
Details about this part can be seen above in the section “Parts Collection”.

BBa_K2020046 – tRNA synthetase specific for the ncAA CNF and UAG codon in E. coli → CNF-RS
Details about this part can be seen above in the section “Parts Collection”.

BBa_K2020050 – tRNA synthetase specific for tyrosine and UAG codon in E. coli → Y-RS
Details about this part can be seen above in the section “Parts Collection”.

BBa_K2020051 – mutated tRNA synthetase specific for tyrosine and UAG codon in E. coli → Y-RS with Y32G
Details about this part can be seen above in the section “Parts Collection”.

BBa_K2020052 to BBa_K2020061 - tRNA synthetase specific for DMNB-serine and UAG codon in E. coli → version 1 to 10
Details about these parts can be seen above in the section “Parts Collection”.