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</div> | </div> | ||
− | <h6 | + | <h6 align="center"> References: |
[1] Müller-Newen, G., Küster, A., Hemmann, U., Keul,R., Horsten, U., Martens, A., Graeve, L., Wijdenes, J., Heinrich, P. (1998) Soluble IL-6 Receptor Potentiates the Antagonistic Activity of Soluble gp130 on IL-6 Responses. The Journal American of Association Immunology. ISSN: 1550-6606. | [1] Müller-Newen, G., Küster, A., Hemmann, U., Keul,R., Horsten, U., Martens, A., Graeve, L., Wijdenes, J., Heinrich, P. (1998) Soluble IL-6 Receptor Potentiates the Antagonistic Activity of Soluble gp130 on IL-6 Responses. The Journal American of Association Immunology. ISSN: 1550-6606. | ||
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The system is first regulated by a Pbad promoter, which allows to induce expression with L-arabinose of the nsrR repressor protein (of PyeaR promoter) and then regulate the expression of mutated gp80 with the PyeaR promoter, after it senses nitrosative stress. Reporter fluorescent proteins iLOV and M-Cherry will help us corroborate expression of both promoter systems. iLOV will be attached to the Pbad-nsrR system and M-Cherry to the PyeaR-Mutatedgp80 system. The mutated gp80 has a His-Tag (6 histidines) attached to it for purification purposes. It is also attached to a signal peptide for excretion into the media. | The system is first regulated by a Pbad promoter, which allows to induce expression with L-arabinose of the nsrR repressor protein (of PyeaR promoter) and then regulate the expression of mutated gp80 with the PyeaR promoter, after it senses nitrosative stress. Reporter fluorescent proteins iLOV and M-Cherry will help us corroborate expression of both promoter systems. iLOV will be attached to the Pbad-nsrR system and M-Cherry to the PyeaR-Mutatedgp80 system. The mutated gp80 has a His-Tag (6 histidines) attached to it for purification purposes. It is also attached to a signal peptide for excretion into the media. | ||
</h5> | </h5> | ||
− | <h6 align="center"> References: | + | <h6 style="color:#FF00BF" align="center"> References: |
[1] Müller-Newen, G., Küster, A., Hemmann, U., Keul,R., Horsten, U., Martens, A., Graeve, L., Wijdenes, J., Heinrich, P. (1998) Soluble IL-6 Receptor Potentiates the Antagonistic Activity of Soluble gp130 on IL-6 Responses. The Journal American of Association Immunology. ISSN: 1550-6606. | [1] Müller-Newen, G., Küster, A., Hemmann, U., Keul,R., Horsten, U., Martens, A., Graeve, L., Wijdenes, J., Heinrich, P. (1998) Soluble IL-6 Receptor Potentiates the Antagonistic Activity of Soluble gp130 on IL-6 Responses. The Journal American of Association Immunology. ISSN: 1550-6606. | ||
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<h1></h1> | <h1></h1> | ||
<img src="https://static.igem.org/mediawiki/2018/4/4e/T--TecMonterrey_GDL--Construct23.png" align="right"> | <img src="https://static.igem.org/mediawiki/2018/4/4e/T--TecMonterrey_GDL--Construct23.png" align="right"> | ||
− | <h5> This is the same “Plan A” for E. coli but adapted to Lactobacillus rhamnosus GG, since it is a natural probiotic organism. Plan A which consists of producing the soluble form gp130 attached to novel signal peptides for secretion to the media, this proteins will form a dimer with gp80 found in the gut, which will then attach to IL-6 and form a stable trimer capable of blocking interleukin inflammatory signalization. The construct is codon optimized for L. rhamnosus GG, it has promoters, RBS and terminators that have been used before for L. rhamnosus. It also contains two restriction sites, between the iGEM prefix and suffix, to ligate the Lactobacillus ORI site. </ | + | <h5> This is the same “Plan A” for E. coli but adapted to Lactobacillus rhamnosus GG, since it is a natural probiotic organism. Plan A which consists of producing the soluble form gp130 attached to novel signal peptides for secretion to the media, this proteins will form a dimer with gp80 found in the gut, which will then attach to IL-6 and form a stable trimer capable of blocking interleukin inflammatory signalization. The construct is codon optimized for L. rhamnosus GG, it has promoters, RBS and terminators that have been used before for L. rhamnosus. It also contains two restriction sites, between the iGEM prefix and suffix, to ligate the Lactobacillus ORI site. </h5> |
<h5> | <h5> | ||
<img src="https://static.igem.org/mediawiki/2018/9/91/T--TecMonterrey_GDL--ConstructIL-6.png" align="left"> | <img src="https://static.igem.org/mediawiki/2018/9/91/T--TecMonterrey_GDL--ConstructIL-6.png" align="left"> | ||
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<h1></h1> | <h1></h1> | ||
<h1></h1> | <h1></h1> | ||
− | <h6 align="center"> References: | + | <h6 style="color:#FF00BF" align="center"> References: |
[1] Müller-Newen, G., Küster, A., Hemmann, U., Keul,R., Horsten, U., Martens, A., Graeve, L., Wijdenes, J., Heinrich, P. (1998) Soluble IL-6 Receptor Potentiates the Antagonistic Activity of Soluble gp130 on IL-6 Responses. The Journal American of Association Immunology. ISSN: 1550-6606. | [1] Müller-Newen, G., Küster, A., Hemmann, U., Keul,R., Horsten, U., Martens, A., Graeve, L., Wijdenes, J., Heinrich, P. (1998) Soluble IL-6 Receptor Potentiates the Antagonistic Activity of Soluble gp130 on IL-6 Responses. The Journal American of Association Immunology. ISSN: 1550-6606. | ||
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</h5> | </h5> | ||
− | <h6 align="center"> References: | + | <h6 style="color:#FF00BF" align="center"> References: |
[1] Müller-Newen, G., Küster, A., Hemmann, U., Keul,R., Horsten, U., Martens, A., Graeve, L., Wijdenes, J., Heinrich, P. (1998) Soluble IL-6 Receptor Potentiates the Antagonistic Activity of Soluble gp130 on IL-6 Responses. The Journal American of Association Immunology. ISSN: 1550-6606. | [1] Müller-Newen, G., Küster, A., Hemmann, U., Keul,R., Horsten, U., Martens, A., Graeve, L., Wijdenes, J., Heinrich, P. (1998) Soluble IL-6 Receptor Potentiates the Antagonistic Activity of Soluble gp130 on IL-6 Responses. The Journal American of Association Immunology. ISSN: 1550-6606. | ||
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</h5> | </h5> | ||
− | <h6> References: | + | <h6 style="color:#FF00BF" align="center"> References: |
[1] Han, S., Machhi, S., Berge, M., Xi, G., Linke, T., & Schoner, R. (2017). Novel signal peptides improve the secretion of recombinant Staphylococcus aureus Alpha toxinH35L in Escherichia coli. AMB Express, 7, 93. http://doi.org/10.1186/s13568-017-0394-1 | [1] Han, S., Machhi, S., Berge, M., Xi, G., Linke, T., & Schoner, R. (2017). Novel signal peptides improve the secretion of recombinant Staphylococcus aureus Alpha toxinH35L in Escherichia coli. AMB Express, 7, 93. http://doi.org/10.1186/s13568-017-0394-1 | ||
</h6> | </h6> | ||
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<h5 align="center"> This plasmid expression vector has a T7 promoter (BBa_I712074) which will be induced by IPTG, it contains a specific strong RBS for E. coli, the signal peptide SP2-Nsp2, iLOV (BBa_K660004) as the fluorescent with a His-Tag (6 histidines) attached to it; finally an E. coli specific terminator (BBa_I712074). | <h5 align="center"> This plasmid expression vector has a T7 promoter (BBa_I712074) which will be induced by IPTG, it contains a specific strong RBS for E. coli, the signal peptide SP2-Nsp2, iLOV (BBa_K660004) as the fluorescent with a His-Tag (6 histidines) attached to it; finally an E. coli specific terminator (BBa_I712074). | ||
</h5> | </h5> | ||
− | <h6> References: | + | <h6 style="color:#FF00BF" align="center"> References: |
[1] Han, S., Machhi, S., Berge, M., Xi, G., Linke, T., & Schoner, R. (2017). Novel signal peptides improve the secretion of recombinant Staphylococcus aureus Alpha toxinH35L in Escherichia coli. AMB Express, 7, 93. http://doi.org/10.1186/s13568-017-0394-1 | [1] Han, S., Machhi, S., Berge, M., Xi, G., Linke, T., & Schoner, R. (2017). Novel signal peptides improve the secretion of recombinant Staphylococcus aureus Alpha toxinH35L in Escherichia coli. AMB Express, 7, 93. http://doi.org/10.1186/s13568-017-0394-1 | ||
</h6> | </h6> | ||
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</h5> | </h5> | ||
− | <h6> References: | + | <h6 style="color:#FF00BF" align="center"> References: |
[1] Han, S., Machhi, S., Berge, M., Xi, G., Linke, T., & Schoner, R. (2017). Novel signal peptides improve the secretion of recombinant Staphylococcus aureus Alpha toxinH35L in Escherichia coli. AMB Express, 7, 93. http://doi.org/10.1186/s13568-017-0394-1 | [1] Han, S., Machhi, S., Berge, M., Xi, G., Linke, T., & Schoner, R. (2017). Novel signal peptides improve the secretion of recombinant Staphylococcus aureus Alpha toxinH35L in Escherichia coli. AMB Express, 7, 93. http://doi.org/10.1186/s13568-017-0394-1 | ||
</h6> | </h6> | ||
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</h5> | </h5> | ||
− | <h6> References: | + | <h6 style="color:#FF00BF" align="center"> References: |
[1] Han, S., Machhi, S., Berge, M., Xi, G., Linke, T., & Schoner, R. (2017). Novel signal peptides improve the secretion of recombinant Staphylococcus aureus Alpha toxinH35L in Escherichia coli. AMB Express, 7, 93. http://doi.org/10.1186/s13568-017-0394-1 | [1] Han, S., Machhi, S., Berge, M., Xi, G., Linke, T., & Schoner, R. (2017). Novel signal peptides improve the secretion of recombinant Staphylococcus aureus Alpha toxinH35L in Escherichia coli. AMB Express, 7, 93. http://doi.org/10.1186/s13568-017-0394-1 | ||
</h6> | </h6> | ||
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</h5> | </h5> | ||
− | <h6> References: | + | <h6 style="color:#FF00BF" align="center"> References: |
[1] Han, S., Machhi, S., Berge, M., Xi, G., Linke, T., & Schoner, R. (2017). Novel signal peptides improve the secretion of recombinant Staphylococcus aureus Alpha toxinH35L in Escherichia coli. AMB Express, 7, 93. http://doi.org/10.1186/s13568-017-0394-1 | [1] Han, S., Machhi, S., Berge, M., Xi, G., Linke, T., & Schoner, R. (2017). Novel signal peptides improve the secretion of recombinant Staphylococcus aureus Alpha toxinH35L in Escherichia coli. AMB Express, 7, 93. http://doi.org/10.1186/s13568-017-0394-1 | ||
</h6> | </h6> | ||
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</h5> | </h5> | ||
− | <h6> References: | + | <h6 style="color:#FF00BF" align="center"> References: |
[1] Han, S., Machhi, S., Berge, M., Xi, G., Linke, T., & Schoner, R. (2017). Novel signal peptides improve the secretion of recombinant Staphylococcus aureus Alpha toxinH35L in Escherichia coli. AMB Express, 7, 93. http://doi.org/10.1186/s13568-017-0394-1 | [1] Han, S., Machhi, S., Berge, M., Xi, G., Linke, T., & Schoner, R. (2017). Novel signal peptides improve the secretion of recombinant Staphylococcus aureus Alpha toxinH35L in Escherichia coli. AMB Express, 7, 93. http://doi.org/10.1186/s13568-017-0394-1 | ||
</h6> | </h6> | ||
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</h5> | </h5> | ||
− | <h6> References: | + | <h6 style="color:#FF00BF" align="center"> References: |
[1] Han, S., Machhi, S., Berge, M., Xi, G., Linke, T., & Schoner, R. (2017). Novel signal peptides improve the secretion of recombinant Staphylococcus aureus Alpha toxinH35L in Escherichia coli. AMB Express, 7, 93. http://doi.org/10.1186/s13568-017-0394-1 | [1] Han, S., Machhi, S., Berge, M., Xi, G., Linke, T., & Schoner, R. (2017). Novel signal peptides improve the secretion of recombinant Staphylococcus aureus Alpha toxinH35L in Escherichia coli. AMB Express, 7, 93. http://doi.org/10.1186/s13568-017-0394-1 | ||
</h6> | </h6> | ||
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<h5> This plasmid expression vector has a spaCBA promoter, it contains a specific RBS for L. rhamnosus GG, the signal peptide SP2-Nsp2, M-cherry (BBa_J18932) as the fluorescent reporter with a His-Tag (6 histidines) attached to it; and the terminator 667. | <h5> This plasmid expression vector has a spaCBA promoter, it contains a specific RBS for L. rhamnosus GG, the signal peptide SP2-Nsp2, M-cherry (BBa_J18932) as the fluorescent reporter with a His-Tag (6 histidines) attached to it; and the terminator 667. | ||
</h5> | </h5> | ||
− | <h6> References: | + | <h6 style="color:#FF00BF" align="center"> References: |
[1] Han, S., Machhi, S., Berge, M., Xi, G., Linke, T., & Schoner, R. (2017). Novel signal peptides improve the secretion of recombinant Staphylococcus aureus Alpha toxinH35L in Escherichia coli. AMB Express, 7, 93. http://doi.org/10.1186/s13568-017-0394-1 | [1] Han, S., Machhi, S., Berge, M., Xi, G., Linke, T., & Schoner, R. (2017). Novel signal peptides improve the secretion of recombinant Staphylococcus aureus Alpha toxinH35L in Escherichia coli. AMB Express, 7, 93. http://doi.org/10.1186/s13568-017-0394-1 | ||
</h6> | </h6> | ||
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<h5> This plasmid expression vector has a spaCBA promoter, it contains a specific RBS for L. rhamnosus GG, M-cherry (BBa_J18932) as the fluorescent reporter with a His-Tag (6 histidines) attached to it; and the terminator 667. It also contains restriction sites to ligate with the Lactobacillus ORI. | <h5> This plasmid expression vector has a spaCBA promoter, it contains a specific RBS for L. rhamnosus GG, M-cherry (BBa_J18932) as the fluorescent reporter with a His-Tag (6 histidines) attached to it; and the terminator 667. It also contains restriction sites to ligate with the Lactobacillus ORI. | ||
</h5> | </h5> | ||
− | <h6> References: | + | <h6 style="color:#FF00BF" align="center"> References: |
[1] Han, S., Machhi, S., Berge, M., Xi, G., Linke, T., & Schoner, R. (2017). Novel signal peptides improve the secretion of recombinant Staphylococcus aureus Alpha toxinH35L in Escherichia coli. AMB Express, 7, 93. http://doi.org/10.1186/s13568-017-0394-1 | [1] Han, S., Machhi, S., Berge, M., Xi, G., Linke, T., & Schoner, R. (2017). Novel signal peptides improve the secretion of recombinant Staphylococcus aureus Alpha toxinH35L in Escherichia coli. AMB Express, 7, 93. http://doi.org/10.1186/s13568-017-0394-1 | ||
</h6> | </h6> | ||
<div> | <div> |
Revision as of 01:44, 6 October 2018