Difference between revisions of "Team:Hong Kong-CUHK/Results"
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− | 2. The PCR product of Recombination Template for mamAB Operon was then ligated into pSB1C3 backbone, forming BBa_K1648000, and ligated with promotor and double terminator in pSB1C3 backbone, forming BBa_K1648002. They were verified by double digestion (Figure 2) and sequencing.<br> </p> | + | 2. The PCR product of Recombination Template for mamAB Operon was then ligated into pSB1C3 backbone, forming <a href="http://parts.igem.org/Part:BBa_K1648000">BBa_K1648000</a>, and ligated with promotor and double terminator in pSB1C3 backbone, forming <a href="http://parts.igem.org/Part:BBa_K1648002>BBa_K1648002</a>. They were verified by double digestion (Figure 2) and sequencing.<br> </p> |
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− | <p>Figure 2. Checking of recombinant plasmid using double digestion. L: DNA ladder. Lane 1-3: Recombination Template for mamAB Operon (BBa_K1648000) without digestion, with single digestion at XbaI site, with double digestion cut at XbaI and PstI site. Lane 4-6: Recombination Template for mamAB Operon with Promotor and Terminator (BBa_K1648002) without digestion, with single digestion at XbaI site, with double digestion cut at XbaI and PstI site. </p><br> | + | <p>Figure 2. Checking of recombinant plasmid using double digestion. L: DNA ladder. Lane 1-3: Recombination Template for mamAB Operon (<a href="http://parts.igem.org/Part:BBa_K1648000">BBa_K1648000</a>) without digestion, with single digestion at XbaI site, with double digestion cut at XbaI and PstI site. Lane 4-6: Recombination Template for mamAB Operon with Promotor and Terminator (<a href="http://parts.igem.org/Part:BBa_K1648002>BBa_K1648002</a>) without digestion, with single digestion at XbaI site, with double digestion cut at XbaI and PstI site. </p><br> |
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− | <p>3. The PCR product of Recombination Template for mamXY, mamGC and mms Operons was also ligated with promotor and double terminator in pSB1C3 backbone, forming BBa_K1648003. They were | + | <p>3. The PCR product of Recombination Template for mamXY, mamGC and mms Operons was also ligated with promotor and double terminator in pSB1C3 backbone, forming <a href="http://parts.igem.org/Part:BBa_K1648003">BBa_K1648003</a>. They were confirmed by double digestion (Fig. 3) and sequencing.</p> <br> |
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− | <p>Figure 3. Checking of recombinant plasmid using double digestion. L: DNA ladder. Lane 1-3: Recombination Template for mamXY, mamGC and mms Operons with Promotor and Terminator (BBa_K1648003) without digestion, with single digestion at XbaI site, with double digestion cut at XbaI and PstI site.</p> | + | <p>Figure 3. Checking of recombinant plasmid using double digestion. L: DNA ladder. Lane 1-3: Recombination Template for mamXY, mamGC and mms Operons with Promotor and Terminator (<a href="http://parts.igem.org/Part:BBa_K1648003">BBa_K1648003</a>) without digestion, with single digestion at XbaI site, with double digestion cut at XbaI and PstI site.</p> |
− | <p>4. Expression test of Recombination Template for mamAB Operon with Promotor and Terminator (BBa_K1648002). After introducing BBa_K1648002 into Azotobacter vinelandii by stable genomic integration, every coding parts were successfully expressed. The expression of BBa_K1648002 was shown in SDS-PAGE (Figure 4).</p><br> | + | <p>4. Expression test of Recombination Template for mamAB Operon with Promotor and Terminator (<a href="http://parts.igem.org/Part:BBa_K1648002>BBa_K1648002</a>). After introducing <a href="http://parts.igem.org/Part:BBa_K1648002>BBa_K1648002</a> into Azotobacter vinelandii by stable genomic integration, every coding parts were successfully expressed. The expression of <a href="http://parts.igem.org/Part:BBa_K1648002>BBa_K1648002</a> was shown in SDS-PAGE (Figure 4).</p><br> |
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− | <p>Figure 4. SDS-PAGE showing expression of Recombination Template for mamAB Operon with Promotor and Terminator (BBa_K1648002) in Azotobacter vinelandii. L: Protein ladder. Lane 1: Wild-type Azotobacter vinelandii. Lane 2: transformed Azotobacter vinelandii. Lane 2 shows 3 more bands compared to lane 1, in which the ~25 kDa band is the protein coded by chloramphenicol resistant gene in BBa_K1648002, the ~15 kDa and ~ 13kDa bands are the protein coded by Recombination Template for mamAB Operon.</p><br> | + | <p>Figure 4. SDS-PAGE showing expression of Recombination Template for mamAB Operon with Promotor and Terminator (<a href="http://parts.igem.org/Part:BBa_K1648002>BBa_K1648002</a>) in Azotobacter vinelandii. L: Protein ladder. Lane 1: Wild-type Azotobacter vinelandii. Lane 2: transformed Azotobacter vinelandii. Lane 2 shows 3 more bands compared to lane 1, in which the ~25 kDa band is the protein coded by chloramphenicol resistant gene in <a href="http://parts.igem.org/Part:BBa_K1648002>BBa_K1648002</a>, the ~15 kDa and ~ 13kDa bands are the protein coded by Recombination Template for mamAB Operon.</p><br> |
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− | <p><b>• Ongoing effort is the homologous recombination of BBa_K1648002 transformed Azotobacter vinelandii.</b></p><br> | + | <p><b>• Ongoing effort is the homologous recombination of <a href="http://parts.igem.org/Part:BBa_K1648002>BBa_K1648002</a> transformed Azotobacter vinelandii.</b></p><br> |
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− | <p>2. The PCR product of GFP-nanobody was then ligated into pSB1C3 backbone, forming BBa_K1648005. Double digestion (Figure 7) and sequencing verified it.</p><br> | + | <p>2. The PCR product of GFP-nanobody was then ligated into pSB1C3 backbone, forming <a href="http://parts.igem.org/Part:BBa_K1648005">BBa_K1648005</a>. Double digestion (Figure 7) and sequencing verified it.</p><br> |
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− | <p>Figure 7. Checking of recombinant plasmid using double digestion. L: DNA ladder. Lane 1-3: GFP- nanobody (BBa_K1648005) without digestion, with single digestion at XbaI site, with double digestion cut at XbaI and PstI site.</p><br> | + | <p>Figure 7. Checking of recombinant plasmid using double digestion. L: DNA ladder. Lane 1-3: GFP- nanobody (<a href="http://parts.igem.org/Part:BBa_K1648005">BBa_K1648005</a>) without digestion, with single digestion at XbaI site, with double digestion cut at XbaI and PstI site.</p><br> |
− | <p>3. J04450 was inserted into Insertion Kit, forming Insertion Kit for Fusing Protein of Interest to Magnetosome Membrane (BBa_K1648004) fulfilled the biobrick standard, while GFP-nanobody (BBa_K1648006) was also added into Insertion Kit respectively. Double digestion (Fig. 8) shows the expected result.</p><br> | + | <p>3. J04450 was inserted into Insertion Kit, forming Insertion Kit for Fusing Protein of Interest to Magnetosome Membrane (<a href="http://parts.igem.org/Part:BBa_K1648004">BBa_K1648004</a>) fulfilled the biobrick standard, while GFP-nanobody (<a href="http://parts.igem.org/Part:BBa_K1648006">BBa_K1648006</a>) was also added into Insertion Kit respectively. Double digestion (Fig. 8) shows the expected result.</p><br> |
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− | <p>Figure 8. Checking of recombinant Insertion Kit for Fusing Protein of Interest to Magnetosome Membrane (BBa_K1648004) using double digestion. (A) L: DNA ladder. Lane 1-3: Insertion Kit for Fusing Protein of Interest to Magnetosome Membrane (BBa_K1648004) without digestion, with single digestion at XbaI site, with double digestion cut at XbaI and PstI site. (B) L: DNA ladder. Lane 1-3: Insertion kit with GFP-nanobody (BBa_K1648006) without digestion, with single digestion at XbaI site, with double digestion cut at XbaI and PstI site.</p><br> | + | <p>Figure 8. Checking of recombinant Insertion Kit for Fusing Protein of Interest to Magnetosome Membrane (<a href="http://parts.igem.org/Part:BBa_K1648004">BBa_K1648004</a>) using double digestion. (A) L: DNA ladder. Lane 1-3: Insertion Kit for Fusing Protein of Interest to Magnetosome Membrane (<a href="http://parts.igem.org/Part:BBa_K1648004">BBa_K1648004</a>) without digestion, with single digestion at XbaI site, with double digestion cut at XbaI and PstI site. (B) L: DNA ladder. Lane 1-3: Insertion kit with GFP-nanobody (<a href="http://parts.igem.org/Part:BBa_K1648006">BBa_K1648006</a>) without digestion, with single digestion at XbaI site, with double digestion cut at XbaI and PstI site.</p><br> |
<p><b>• Current progress is the characterization of mamC-GFP nanobody fused protein.</b></p><br> | <p><b>• Current progress is the characterization of mamC-GFP nanobody fused protein.</b></p><br> |
Revision as of 21:55, 18 September 2015