Difference between revisions of "Team:AshesiGhana/Parts"

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Revision as of 11:33, 14 September 2017

A beginner's guide to Big O notation - Rob Bell

Parts

NowGFP-golB (FRET DONOR)

Mountain View

This part is a composite part composed of a green fluorescent protein (NowGFP) and a golB protein along with its own constitutive promoter, RBS and terminator with a spacer between the two genes. This composite part serves as the donor part of the FRET mechanism employed in this project. With the golB binding to gold atoms and the NowGFP giving off fluorescence to excite acceptor proteins.




                

mRuby2-golB (FRET ACCEPTOR)

Mountain View

This part is a composite part composed of a green fluorescent protein (NowGFP) and a golB protein along with its own constitutive promoter, RBS and terminator with a spacer between the two genes. This composite part serves as the donor part of the FRET mechanism employed in this project. With the golB binding to gold atoms and the NowGFP giving off fluorescence to excite acceptor proteins.





                

Enzyme Part 00k1

Mountain View

To aid in the gold liberation process this part has a Tetrathionate Hydrolase gene which was mimicked from the Acidithiobacillus ferrooxidans into the E.coli strain, to function in sulphur and iron oxidizing, a process used by the Acidithiobacillus ferrooxidans in the process of gold liberation. With its own constitutive promoter, RBS and terminator this part functions as one important part in the gold liberation goal of this project.



                

pH resistance Ecoli

Mountain View

This part is a composite part composed of a pH_resistance gene. With its own constitutive promoter, RBS and a double terminator, the part is designed for the E.coli to provide pH resistance to enable it to survive in the bio-mining environment


                

HIPIP Ecoli

Mountain View

This part is composed of a High potential iron-sulphur protein (HiPIP) with its own constitutive Promoter, RBS and double terminator. This part in addition to the Tetrathionate Hydrolase part enable the bacteria (E.coli) to liberate the gold from its ore similar to the way the Acidithiobacillus Ferrooxidans achieves this goal.