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<h4> Best Education and Public Engagement </h4> | <h4> Best Education and Public Engagement </h4> | ||
<article> | <article> | ||
− | Throughout our project, we explained our topic to the public and the scientific community on multiple occasions and engaged in fruitful discussions. | + | Throughout our project, we explained our topic to the public and the scientific community on multiple occasions and engaged in fruitful discussions. Furthermore, we raised awareness for the chances of synthetic biology by cooperating with a number of initiatives and programs, including the “6th CeBiTec Pupils Academy”, “Teutolab Biotechnology”, the street science festival “GENIALE” and through collaboration with the biotechnological student’s initiative btS e.V. |
</article> | </article> | ||
<h4> Best Measurement </h4> | <h4> Best Measurement </h4> | ||
<article> | <article> | ||
− | + | Our toolbox for the incorporation of non-canonical amino acids provides innovative new methods for the characterization of all protein encoding parts, therefore offering advanced approaches for improved part characterization. With the help of non-canonical amino acids, the subcellular localization of a protein can be investigated. Measurement of intramolecular distances, protein immobilization and light regulation and modification enables sophisticated characterization of parts. | |
</article> | </article> | ||
<h4> Best Modeling </h4> | <h4> Best Modeling </h4> | ||
<article> | <article> | ||
− | + | Via structural prediction combined with recent knowledge from the scientific body, we generated optimized synthetases, which are intended to recognize synthetic amino acids. This builds the foundation of a promising and powerful alternative to synthetase selection in the lab. | |
</article> | </article> | ||
<h4> Best applied design </h4> | <h4> Best applied design </h4> |
Revision as of 15:51, 29 October 2017
Achievements
Establishment of two orthogonal methods for the detection of unnatural base pairs in a target sequence via Oxford Nanopore sequencing and an enzyme based detection method
Development of a software suite for these orthogonal methods
Integration and characterization of the nucleotide transporter PtNTT2 from P.tricornutum in E.coli for the uptake of unnatural nucleoside triphosphates
Proof that certain Taq-polymerases can efficiently incorporate unnatural nucleotides
Construction of a toolkit consisting of five aminoacyl-tRNA synthetases for incorporation of non-canonical amino acids
Development of a photoswitchable lycopene pathway
Design and chemical synthesis of a novel, fully synthetic amino acid based on cyanonitrobenzothiazol and asparagine and proof of its functionality
Modeling more than ten new aaRS sequences
Library development with several hundred thousand sequences for selecting aminoacyl-tRNA synthetases
Construction of positive and negative selection plasmids for the evolution of new synthetases for non-canonical amino acids
Improvement of an aminoacyl-tRNA synthetase test-system by introducing a FRET-system and development of a ranking system
Construction of an LED panel for irradiating 96-well microtiter plates, which can be used to manipulate non-canonical amino acids and much more
Development of an Android App to control the LED panel with your smartphone via Bluetooth
Writing of a biosafety report titled “Auxotrophy to Xeno-DNA: A Comprehensive Exploration of Combinatorial Mechanisms for a High-Fidelity Biosafety System”
Writing of the ChImp Report on the “Chances and Implications of an Expanded Genetic Code”