Team:Harvard/Judging
From 2011.igem.org
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- | '''✓''' Researched zinc finger proteins and choose 6 novel, < | + | '''✓''' Researched zinc finger proteins and choose 6 novel, <x>clinically relevant target sequences </x><br> |
'''✓''' Generated 55,000 zinc finger protein sequences using bioinformatics <br> | '''✓''' Generated 55,000 zinc finger protein sequences using bioinformatics <br> | ||
'''✓''' Expressed those 55,000 sequences in E.coli, with a sub-library for each target <br> | '''✓''' Expressed those 55,000 sequences in E.coli, with a sub-library for each target <br> |
Revision as of 15:45, 28 October 2011
[[File:HARVshield_logo.png|right|frameless|175px]]
=Wiki Highlights=
*Read our project description and summary on our [https://2011.igem.org/Team:Harvard/Project Project] page: more details on how team members completed work for the three sections of our project are on [https://2011.igem.org/Team:Harvard/Project/Design Design], [https://2011.igem.org/Team:Harvard/Project/Synthesize Synthesize], and [https://2011.igem.org/Team:Harvard/Project/Test Test] pages, respectively.
*Results of all parts of our project (including our [https://2011.igem.org/Team:Harvard/Results/Biobricks biobricks]) are located on our [https://2011.igem.org/Team:Harvard/Results Results] page, along with an [https://2011.igem.org/Team:Harvard/Results/Acknowledgements Acknowledgments] section.
*Human practices can be found on our [https://2011.igem.org/Team:Harvard/Human_Practices Human Practices] page.
*Please be sure to stop by our poster during the poster session with any questions.
=Accomplishments=
'''✓''' Researched zinc finger proteins and choose 6 novel, clinically relevant target sequences
'''✓''' Generated 55,000 zinc finger protein sequences using bioinformatics
'''✓''' Expressed those 55,000 sequences in E.coli, with a sub-library for each target
'''✓''' Created a genomic one-hybrid selection system sensitive enough to detect one in a million hits
'''✓''' Found up to 15 novel zinc finger proteins
'''✓''' Researched intellectual property and how it applies to zinc finger proteins
'''✓''' Made protocols, Biobricks, and source code freely available, so that others can adapt them for other projects
'''✓''' Generated 55,000 zinc finger protein sequences using bioinformatics
'''✓''' Expressed those 55,000 sequences in E.coli, with a sub-library for each target
'''✓''' Created a genomic one-hybrid selection system sensitive enough to detect one in a million hits
'''✓''' Found up to 15 novel zinc finger proteins
'''✓''' Researched intellectual property and how it applies to zinc finger proteins
'''✓''' Made protocols, Biobricks, and source code freely available, so that others can adapt them for other projects