Team:Washington

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(The Idealized Protein Purification System: Improving the lives of molecular biologists)
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=== The Idealized Protein Purification System: Improving the lives of molecular biologists ===
=== The Idealized Protein Purification System: Improving the lives of molecular biologists ===
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The use of recombinant protein production using ''E. coli''-based protein expression systems has revolutionized the fields of biotechnology and medicine. Although generating purified protein plays a central role in the field of biotechnology, the production of purified protein is a time-consuming and laborious procedure that requires expensive and specialized equipment, and, we believe, is therefore not suited to today's thrifty synthetic biologist.  Our project, the Ideal Protein Purification System, aims to create an all-in-one protein expression and purification system using BioBrick standards to greatly simplify protein production for synthetic biologists, reducing the time and cost involved in standard protein purification methodsOur method uses a novel combination of two systems: secretion and display.  In our method, your protein of interest is fused to two separate tags: a secretion tag and a display tag.  The secretion tag directs protein secretion via our BioBricked Secretion System outside of the cell into the growth media.  The display tag binds to the Display System which is located on the cell surface.  Collecting your purified target protein is as simple as pelleting cells and re-suspending them in an elution buffer, releasing the protein of interestOur research exhibits the utility of synthetic biology for developing new techniques that improve upon established practices.
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Recombinant, purified protein production is a decades-old technology that has revolutionized research in biotechnology and medicine. However, the traditional method of purified protein production is a time-consuming and laborious procedure requiring expensive and specialized equipment.  Our project, the Idealized Protein Purification (IPP) system, is an all-in-one protein expression and purification platform built on BioBrick standards that will reduce costs, save time, and simplify procedures associated with recombinant protein productionThe key to our IPP system is a novel combination of three subsystems: expression, secretion and display.  We use ''E. coli'' bacteria that we have genetically modified to be a chassis for expressing your favorite protein, secreting it to the media, then binding and displaying the protein on the cell surface.  At this point, collecting your favorite ''purified protein'' is as simple as pelleting and re-suspending a sufficient quantity of bacterial cells in an elution buffer.  The speed and simplicity of our IPP system exhibits the utility of synthetic biology for developing new techniques that improve upon established practices.
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Latest revision as of 03:10, 22 October 2009

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IPP System Overview Target System Secretion System Display System Release System

target
secretion
display
release

The Idealized Protein Purification System: Improving the lives of molecular biologists

Recombinant, purified protein production is a decades-old technology that has revolutionized research in biotechnology and medicine. However, the traditional method of purified protein production is a time-consuming and laborious procedure requiring expensive and specialized equipment. Our project, the Idealized Protein Purification (IPP) system, is an all-in-one protein expression and purification platform built on BioBrick standards that will reduce costs, save time, and simplify procedures associated with recombinant protein production. The key to our IPP system is a novel combination of three subsystems: expression, secretion and display. We use E. coli bacteria that we have genetically modified to be a chassis for expressing your favorite protein, secreting it to the media, then binding and displaying the protein on the cell surface. At this point, collecting your favorite purified protein is as simple as pelleting and re-suspending a sufficient quantity of bacterial cells in an elution buffer. The speed and simplicity of our IPP system exhibits the utility of synthetic biology for developing new techniques that improve upon established practices.

Continue to Project Description >