Team:Michigan/Project
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== Hy-Bi: Pili/Adhesion Hyperexpression == | == Hy-Bi: Pili/Adhesion Hyperexpression == | ||
- | Type 1 pili (also known as fimbriae) are proteinaceous adhesins that are found on the surface of E. coli. One cell can contain up to 100 pili, which can form up to 2 um long. The pili help E. coli. form biofilms. | + | [[Image:Michigan-Pili2.png|350px|thumb|left|Fig. 1]] |
+ | Type 1 pili (also known as fimbriae) are proteinaceous adhesins that are found on the surface of E. coli. One cell can contain up to 100 pili, which can form up to 2 um long. You can view an electron micrograph of pili in Fig 1. [1].The pili help E. coli. form biofilms. | ||
- | + | The pili are controlled by the ''fim'' operon. This operon consists of several genes. The pili themselves are composed of several thousand subunits of FimA. The tip of each pili consists of the genes FimF, FimG, and FimH. FimH is an adhesin and is linked to FimA through FimF and FimG. Inside the cell, FimC carries proteins to the structural platform, FimD, which then assembles the pilus rod. You can see this visually in Fig. 2 [2]. This whole process is regulated by the recombinases FimB and FimE. These genes control an invertible DNA sequence, which, when in the "on" position, promotes the production of pili. You can learn more about the regulatory system in the [[Team:Michigan/Modeling#Pili|modeling section]]. | |
- | The pili are controlled by the ''fim'' operon. This operon consists of several genes. The pili themselves are composed of several thousand subunits of FimA. The tip of each pili consists of the genes FimF, FimG, and FimH. FimH is an adhesin and is linked to FimA through FimF and FimG. Inside the cell, FimC carries proteins to the structural platform, FimD, which then assembles the pilus rod. You can see this visually in Fig. | + | |
By overproducing the pili, we hope to increase flocculation. We plan to accomplish this goal by putting the FimB gene on a plasmid. Because of the way the pili regulation system works, this should promote piliation in the cell, and therefore, increase flocculation. You can find the pili team's lab notebook [[Team:Michigan/Pili Expression|here]]. | By overproducing the pili, we hope to increase flocculation. We plan to accomplish this goal by putting the FimB gene on a plasmid. Because of the way the pili regulation system works, this should promote piliation in the cell, and therefore, increase flocculation. You can find the pili team's lab notebook [[Team:Michigan/Pili Expression|here]]. | ||
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+ | [[Image:Michigan-Pili.png|300px|thumb|left|Fig. 2]] | ||
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== References == | == References == | ||
+ | 1. Hahn, E., Wild,P., Hermanns, U., Peter Sebbel, P., Glockshuber, R., Haner, M., Taschner, N., Burkhard, P., Aebi, U., A. Muller, S., Exploring the 3D Molecular Architecture of Escherichia coli Type 1 Pili, ''Journal of Molecular Biology'' '''323''' 845-857 (2002) | ||
- | + | 2. Vetsch, M., Puorger, C., Pilus chaperones represent a new type of protein-folding catalyst. ''Nature'' '''431,''' 329-332 (2004). | |
- | + | 3. Li, J., Atilla, C., Wang, L., Wood, T. K., Valdes, J. J., Bently, W. E. ''Quorum Sensing in Escherichia coli Is Signaled by AI-2/LsrR: Effects on Small RNA and Biofilm Architecture''. Bacteriology. '''189''': 6011-6020 (2007). |
Revision as of 01:41, 17 September 2010