Team:UCSF/Data2
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<regulartext>All of the parts that we created this summer are designed to be fusion proteins with Aga2, a yeast protein involved in mating. Aga2 disulfide bonds with Aga1, a membrane embedded protein, such that anything fused to Aga2 is displayed on the surface of the cell. <p> </regulartext> | <regulartext>All of the parts that we created this summer are designed to be fusion proteins with Aga2, a yeast protein involved in mating. Aga2 disulfide bonds with Aga1, a membrane embedded protein, such that anything fused to Aga2 is displayed on the surface of the cell. <p> </regulartext> | ||
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<img style="margin-bottom:0px; width:500px; margin-top:0px; padding:0;" src="http://dl.dropbox.com/u/24404809/Surface%20Display%20Figure1.jpg"> | <img style="margin-bottom:0px; width:500px; margin-top:0px; padding:0;" src="http://dl.dropbox.com/u/24404809/Surface%20Display%20Figure1.jpg"> | ||
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- | <regulartext1> <b>Interaction of Aga1 with Aga2-fused protein of interest leads to Yeast Cell Surface Display</b> </regulartext1> </div | + | <regulartext1> |
- | + | <b>Interaction of Aga1 with Aga2-fused protein of interest leads to Yeast Cell Surface Display</b> </regulartext1> </div> | |
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<regulartext>By displaying a protein that would have strong interactions with itself (or another protein), we wanted to be able to control whether or not two cells would adhere or interact with one another. An example of how two proteins would lead to cell-cell interactions is shown below:<p> </regulartext> | <regulartext>By displaying a protein that would have strong interactions with itself (or another protein), we wanted to be able to control whether or not two cells would adhere or interact with one another. An example of how two proteins would lead to cell-cell interactions is shown below:<p> </regulartext> | ||
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<img style="margin-bottom:0px; width:500px; margin-top:0px; padding:0;" src="http://dl.dropbox.com/u/24404809/Heterodimers.jpg"> | <img style="margin-bottom:0px; width:500px; margin-top:0px; padding:0;" src="http://dl.dropbox.com/u/24404809/Heterodimers.jpg"> | ||
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<h3red>Data For Our Favorite New Parts</h3red> <p> | <h3red>Data For Our Favorite New Parts</h3red> <p> | ||
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<a href="http://partsregistry.org/Part:BBa_K644001">Hwp1 Parts Registry</a> - Hwp1 BBa_K644001: when expressed on the surface of yeast, Hwp1 caused the cells to stick together in small biofilm0like formations similar to those made by <i>C. albicans</i> <p> | <a href="http://partsregistry.org/Part:BBa_K644001">Hwp1 Parts Registry</a> - Hwp1 BBa_K644001: when expressed on the surface of yeast, Hwp1 caused the cells to stick together in small biofilm0like formations similar to those made by <i>C. albicans</i> <p> | ||
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<h3red>Data For Pre-Existing Parts</h3red> <p> | <h3red>Data For Pre-Existing Parts</h3red> <p> | ||
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<a href="http://partsregistry.org/Part:BBa_K197018:Experience#Applications_of_BBa_K197018">Experience - Mgfp-5</a> - Mussel Foot Protein Mgfp-5 BBa_K197018 (Berkeley iGEM 2009): when expressed on the surface of yeast cells, mgfp5 caused the cells to stick together and form small clumps. <p><regulartext> | <a href="http://partsregistry.org/Part:BBa_K197018:Experience#Applications_of_BBa_K197018">Experience - Mgfp-5</a> - Mussel Foot Protein Mgfp-5 BBa_K197018 (Berkeley iGEM 2009): when expressed on the surface of yeast cells, mgfp5 caused the cells to stick together and form small clumps. <p><regulartext> | ||
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Latest revision as of 03:50, 29 September 2011