Team:Michigan/Project
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Our cells will use quorum sensing to determine when the flocculation will start. The cells will produce an inducer either AHL or AI-2. You can find their lab notebook [[Team:Michigan/Quorum Sensing|here]]. | Our cells will use quorum sensing to determine when the flocculation will start. The cells will produce an inducer either AHL or AI-2. You can find their lab notebook [[Team:Michigan/Quorum Sensing|here]]. | ||
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+ | ''E. coli'' cells detect their population density by a method known as "quorum sensing." All cells produce a molecule known as Auto-Inducer 2 (AI-2) via the gene ''LuxS''. AI-2 is actively imported via a complex of Lsr membrane proteins, after which it is phosphorylated and binds to the repressor LsrR. This binding relieves the Lsr operon from repression, increasing levels of both the AI-2 import and phosphorylation and of LsrR. The net effect is that cells respond to a threshold concentration of AI-2 (a threshold population density) by altering expression of many genes. ''E. coli'', for example, tends to increase biofilm production in response to AI-2. | ||
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+ | Certain species of microalgae useful for harvesting as biofuel, specifically ''Chlorella vulagris'', have been characterized as releasing compounds that mimic the action of AI-2 or AHL, activating the quorum sensing circuits of many bacteria, including ''Vibrio harveyi'', which responds to the same compound as ''E. coli'', AI-2. | ||
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+ | The goals of the quorum sensing team are two-fold: first to characterize the response of ''E. coli'' to the ''C. vulgaris'' AI-2 mimic (which may be actual AI-2), and second to engineer ''E. coli'' to flocculate in response to the presence of ''C. vulgaris''. The first task will be accomplished by transforming a LuxS-mutant strain of ''E. coli'' (cannot produce its own AI-2) with an AI-2 reporter biobrick. We will then harvest supernatant from ''C. vulgaris'', which should contain AI-2 or its mimic, and apply it to the reporter strain to test its response. The second task will be accomplished by ligating a gene that causes over-expression of pili (characterized by the pili team) to the Lsr promoter, which is derepressed in response to AI-2. By transforming this part into LuxS-mutant ''E. coli'', we hope to create strain that will stick to algae and will flocculate only in the presence of ''C. vulgaris''. | ||
== Virus Surface Display == | == Virus Surface Display == |
Revision as of 03:40, 20 August 2010