Team:UC Davis/Parts

From 2009.igem.org

(Difference between revisions)
Line 40: Line 40:
src="https://static.igem.org/mediawiki/2009/a/a6/UCDAVIS_PIC6.png"
src="https://static.igem.org/mediawiki/2009/a/a6/UCDAVIS_PIC6.png"
style="border: 0px solid ; width: 78px; height: 37px;"></a>&nbsp;<a
style="border: 0px solid ; width: 78px; height: 37px;"></a>&nbsp;<a
-
href="https://2009.igem.org/Team:UC_Davis/Contacts_References"><img alt=""
+
href="https://2009.igem.org/Team:UC_Davis/Contacts_References"><img
-
src="https://static.igem.org/mediawiki/2009/1/1d/UCDAVIS_PIC7.png"
+
alt="" src="https://static.igem.org/mediawiki/2009/1/1d/UCDAVIS_PIC7.png"
style="border: 0px solid ; width: 83px; height: 37px;"></a></big></big></big></big></span></b><b
style="border: 0px solid ; width: 83px; height: 37px;"></a></big></big></big></big></span></b><b
style="color: rgb(0, 0, 0);"><span
style="color: rgb(0, 0, 0);"><span
Line 117: Line 117:
</b><br>
</b><br>
<hr style="width: 100%; height: 2px;">
<hr style="width: 100%; height: 2px;">
-
<p class="MsoNormal" style=""><b><span
+
<p><a name="INPNC"></a><big><span style="font-weight: bold;">INPNC:</span></big>Ice-nucleation
-
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><a
+
protein (INP) from Pseudomonas Syringae was suggested
-
name="INPNC"></a>INPNC</span></b><span
+
to be used for display of foreign proteins on the surface of <i>E. coli</i>(7).Furthermore,
-
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">:
+
-
Ice-nucleation protein (INP) from Pseudomonas Syringae was
+
-
suggested to be used for display of foreign proteins on the surface of <i>E.coli</i>(7).Furthermore,
+
researches have shown that an INP derivative constituting the N-and
researches have shown that an INP derivative constituting the N-and
-
C-terminal
+
C-terminal domains can and has been used to display foreign proteins on
-
domains can and has been used to display foreign proteins on the
+
the surface of <i>E. coli</i>(9). In our project we are intending to
-
surface of <i>E.coli</i>(9).
+
harness and make use of this feature by fusing a specific protein to
-
</span><span style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><o:p></o:p></span></p>
+
it. </p>
-
<p class="MsoNormal" style=""><i><span
+
<p><span style="font-style: italic;">We have modified this protein to
-
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">Note:
+
Biobrick standard, Tom Knights Standard.</span> </p>
-
A study has shown that "Ice- nucleation Protein (INP), an outer
+
-
membrane
+
-
protein from Pseudomonas syringae, is able to catalyze the ice crystal
+
-
formation of supercooled water.</span></i><span
+
-
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">In
+
-
our project we are intending to harness and make use of this feature by
+
-
fusing
+
-
a specific protein to it. <i>We have modified this protein to Biobrick
+
-
standard, Tom Knights Standard.</i></span><span
+
-
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><o:p></o:p></span></p>
+
<div class="MsoNormal" style="text-align: center;" align="center"><span
<div class="MsoNormal" style="text-align: center;" align="center"><span
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">
<hr align="center" size="2" width="100%"></span></div>
<hr align="center" size="2" width="100%"></span></div>
-
<p class="MsoNormal" style=""><a name="OmpA"></a><b><span
+
<p><a name="OmpA"></a><big><b><span
-
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">OmpA</span></b><span
+
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">OmpA</span></b></big><span
-
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">:
+
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><big>:</big>&nbsp;</span><span
-
OmpA is one of the proteins on the outer membrane of <i>E.coli</i>
+
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><i></i></span>OmpA
-
(13). OmpA has been found to be useful as utilizable fusion part that
+
is one of the proteins on the outer membrane of <i>E. coli</i> (13).
-
can fuse
+
OmpA has been found to be useful as utilizable fusion part that can
-
our protein to and display on the surface of <i>E.coli</i>. This part
+
fuse our protein to and display on the surface of <i>E. coli</i>.
-
has
+
This part has already been documented on the parts registry; however,
-
already been documented on the parts registry; however, it has not been
+
it has not been tested via fusion with a target protein linked with a
-
tested
+
cleavable signal sequence.
-
via fusion with a target protein linked with a cleavable signal
+
</p>
-
sequence.<u1:p></u1:p></span><span
+
<p><span style="font-style: italic;">We have modified this protein to
-
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><br>
+
Biobrick standard, Tom Knights Standard.</span> </p>
-
</span><i><span
+
<p><i>Note: “It has remained essentially unknown how proteins of E.
-
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">We
+
coli outer membrane are sorted and incorporated into this membrane” (10)</i>
-
have modified this protein to Biobrick standard, Tom Knights
+
</p>
-
Standard. </span></i><span
+
<p class="MsoNormal" style=""><span
-
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><u1:p></u1:p><o:p></o:p></span></p>
+
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><i><u1:p></u1:p>For
-
<p class="MsoNormal" style=""><i><span
+
more information go to:</i> <a
-
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">Note:</span></i><span
+
-
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">
+
-
“<i>It has
+
-
remained essentially unknown how proteins of Escherichia coli outer
+
-
membrane
+
-
are sorted and incorporated into this membrane” (10)<br>
+
-
<u1:p></u1:p>For more information go to:</i> <a
+
href="http://partsregistry.org/wiki/index.php?title=Part:BBa_J36836"><i><span
href="http://partsregistry.org/wiki/index.php?title=Part:BBa_J36836"><i><span
style="">http://partsregistry.org/wiki/index.php?title=Part:BBa_J36836</span></i></a></span><span
style="">http://partsregistry.org/wiki/index.php?title=Part:BBa_J36836</span></i></a></span><span
Line 177: Line 157:
<p class="MsoNormal" style=""><a name="RBS"></a><b><span
<p class="MsoNormal" style=""><a name="RBS"></a><b><span
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><u1:p></u1:p>RBS</span></b><span
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><u1:p></u1:p>RBS</span></b><span
-
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">:
+
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">:&nbsp;
-
Ribosome Binding site number 32 (BBa_J61132) from the registry is
+
</span>Ribosome Binding site number 32 (BBa_J61132) from the registry
-
being used in our secretion system.<u1:p></u1:p></span><span
+
is being used in our secretion system. <span
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><br>
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><br>
</span><i><span
</span><i><span
Line 194: Line 174:
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><u1:p></u1:p>Terminator</span></b><span
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><u1:p></u1:p>Terminator</span></b><span
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">:
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">:
-
We are using BBa_B0015, a double terminator, as our terminator in
+
</span>We are using BBa_B0015, a double terminator, as our terminator
-
both our secretion and pH system.<u1:p></u1:p></span><span
+
in both our secretion and pH system.<span
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><br>
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><br>
</span><i><span
</span><i><span
Line 210: Line 190:
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><u1:p></u1:p>GFP</span></b><span
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><u1:p></u1:p>GFP</span></b><span
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">:
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">:
-
We are using Green Fluorescent Protein as a reporter that also
+
</span>We are using Green Fluorescent Protein as a reporter that also
-
serves as a small protein in testing our secretion system.</span><span
+
serves as a small protein in testing our secretion system.<span
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><o:p></o:p></span></p>
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><o:p></o:p></span></p>
<div class="MsoNormal" style="text-align: center;" align="center"><span
<div class="MsoNormal" style="text-align: center;" align="center"><span
Line 219: Line 199:
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><u1:p></u1:p>Luciferase</span></b><span
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><u1:p></u1:p>Luciferase</span></b><span
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">:
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">:
-
Luciferase is a firefly protein that also fluoresces, so it
+
</span>Luciferase is a firefly protein that also fluoresces, so it
-
serves as a reporter as well as a testable large protein.<i><br>
+
serves as a reporter as well as a testable large protein.
-
More can be found in:</i></span><span
+
<span style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><o:p></o:p></span></p>
-
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><o:p></o:p></span></p>
+
<div class="MsoNormal" style="text-align: center;" align="center"><span
<div class="MsoNormal" style="text-align: center;" align="center"><span
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">
Line 229: Line 208:
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">LacI</span></b><span
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">LacI</span></b><span
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">:
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">:
-
One inducible Promoter which was found in the part registry.<i><br>
+
</span>One inducible Promoter which was found in the part registry.<br>
-
More can be found in: </i><a
+
<span
 +
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><i>More
 +
can be found in: </i><a
href="http://partsregistry.org/wiki/index.php?title=Part:BBa_R0010"><i><span
href="http://partsregistry.org/wiki/index.php?title=Part:BBa_R0010"><i><span
style="">http://partsregistry.org/wiki/index.php?title=Part:BBa_R0010</span></i></a></span><span
style="">http://partsregistry.org/wiki/index.php?title=Part:BBa_R0010</span></i></a></span><span
Line 237: Line 218:
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">
<hr align="center" size="2" width="100%"></span></div>
<hr align="center" size="2" width="100%"></span></div>
-
<p class="MsoNormal"><a name="SS"></a><b><span
+
<p><a name="SS"></a><b><span
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">SS</span></b><span
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">SS</span></b><span
-
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">:
+
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">:</span>This
-
This signal sequence, when placed between INPNC, contains a
+
signal sequence, when placed between INPNC, contains a
cleavable site that allows the target fusion protein to ‘secrete’ from
cleavable site that allows the target fusion protein to ‘secrete’ from
-
INPNC.&nbsp; We will do the same with OmpA.&nbsp; <u1:p></u1:p></span><span
+
INPNC. We will do the same with OmpA. </p>
-
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><o:p></o:p></span></p>
+
<p><span style="font-style: italic;">We have modified this protein to
-
<p class="MsoNormal" style=""><i><span
+
Biobrick standard, Tom Knights Standard.</span> </p>
-
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">We
+
<p class="MsoNormal" style=""><span
-
have modified this protein to Biobrick standard, Tom Knights
+
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">
-
Standard.</span></i><span
+
</span><i><span
 +
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"></span></i><span
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><o:p></o:p></span></p>
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><o:p></o:p></span></p>
<div class="MsoNormal" style="text-align: center;" align="center"><span
<div class="MsoNormal" style="text-align: center;" align="center"><span
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">
<hr align="center" size="2" width="100%"></span></div>
<hr align="center" size="2" width="100%"></span></div>
-
<p class="MsoNormal" style=""><a name="His"></a><b><span
+
<p><a name="His"></a><b><span
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">6-His
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">6-His
Tag</span></b><span
Tag</span></b><span
-
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">:
+
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">:</span>The
-
The 6-Histidine Tag serves as a tag for Western Blotting if our
+
6-Histidine Tag serves as a tag for Western Blotting if our
-
fluorescent reporters are not expressed as highly as we would like.<u1:p></u1:p></span><span
+
fluorescent reporters are not expressed as highly as we would like.
-
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><br>
+
</p>
-
</span><i><span
+
<p><i>Note: We are using this tag, just in case if the GFP or
-
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;">Note:
+
Luciferase does not work under a plate reader.</i>
-
We are using this tag, just in case if the GFP or Luciferase
+
</p>
-
does not work under a plate reader.</span></i><span
+
<p class="MsoNormal" style=""><i><span
 +
style="font-size: 13pt; line-height: 115%; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"></span></i><span
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><o:p></o:p></span></p>
style="font-family: &quot;Times New Roman&quot;,&quot;serif&quot;;"><o:p></o:p></span></p>
<div class="MsoNormal" style="text-align: center;" align="center"><span
<div class="MsoNormal" style="text-align: center;" align="center"><span

Revision as of 03:50, 26 September 2009

kjaBD K

 
Parts:  

Parts related to secretion:                                                                                                                            Parts related to pH sensor:
Proteins:
Promoters:
Others:
Proteins:
      Promoters:
  • ChvI
  • ChvG
                   

INPNC:Ice-nucleation protein (INP) from Pseudomonas Syringae was suggested to be used for display of foreign proteins on the surface of E. coli(7).Furthermore, researches have shown that an INP derivative constituting the N-and C-terminal domains can and has been used to display foreign proteins on the surface of E. coli(9). In our project we are intending to harness and make use of this feature by fusing a specific protein to it.

We have modified this protein to Biobrick standard, Tom Knights Standard.


OmpA: OmpA is one of the proteins on the outer membrane of E. coli (13). OmpA has been found to be useful as utilizable fusion part that can fuse our protein to and display on the surface of E. coli. This part has already been documented on the parts registry; however, it has not been tested via fusion with a target protein linked with a cleavable signal sequence.

We have modified this protein to Biobrick standard, Tom Knights Standard.

Note: “It has remained essentially unknown how proteins of E. coli outer membrane are sorted and incorporated into this membrane” (10)

For more information go to: http://partsregistry.org/wiki/index.php?title=Part:BBa_J36836


RBSRibosome Binding site number 32 (BBa_J61132) from the registry is being used in our secretion system.
For more information go to: http://partsregistry.org/wiki/index.php/Part:BBa_J61132


Terminator: We are using BBa_B0015, a double terminator, as our terminator in both our secretion and pH system.
For more information go to: http://partsregistry.org/wiki/index.php?title=Part:BBa_B0015


GFP: We are using Green Fluorescent Protein as a reporter that also serves as a small protein in testing our secretion system.


Luciferase: Luciferase is a firefly protein that also fluoresces, so it serves as a reporter as well as a testable large protein.


LacI: One inducible Promoter which was found in the part registry.
More can be found in: http://partsregistry.org/wiki/index.php?title=Part:BBa_R0010


SS:This signal sequence, when placed between INPNC, contains a cleavable site that allows the target fusion protein to ‘secrete’ from INPNC. We will do the same with OmpA.

We have modified this protein to Biobrick standard, Tom Knights Standard.


6-His Tag:The 6-Histidine Tag serves as a tag for Western Blotting if our fluorescent reporters are not expressed as highly as we would like.

Note: We are using this tag, just in case if the GFP or Luciferase does not work under a plate reader.


ChvI promoter: Gene fusion studies confirmed that ChvI gene was induced by acidic conditions (1). Also, it has been known to implicate in virulence (1). This gene is one of the candidates to be use in our biological pH sensor as a promoter.


KatA promoter :This Chromosomal gene is located on the linear chromosome (2) and it seems to be induced under an acidic environment as well as being involved in the Agrobacterium tumorigenesis (2).Research has suggested that ChvG is needed for "responsiveness of  gene expression to low pH "(2). This gene has become a candidate to complete our pH sensor device from this evidence.


AopB promoter: This Chromosomal gene located on the circular chromosome (2) encodes an outer member protein exposed on the bacterial cell surface (2). Also, ChvG was shown to be absolutely required for this gene expression (2)It seems to get induced under an acidic environment as well as being involved in the Agrobacterium tumorigenesis (2). Therefore, we have chosen this gene to be one of our candidates to complete our pH sensor device.


PhoA promoter: There has been a suggestion that ChvI can activate AP activity by activating transcription of this gene, PhoA (3). Therefore, this gene has become one of our candidates to complete our pH sensor device.


ImpA promoter: Gene fusion studies confirmed that impA genes was induced by acidic conditions (1), therefore, this is one of our candidates to complete our pH sensor device.