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Conticello, Vincent, Emory University
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Chemistry
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Chemistry, Biochemistry
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Development and Application of Synthetic Riboswitches as Tools
to Study Bacterial Pathogenesis
1 of 20
Design, Development and Application of a Novel In-Silico
High-throughput Screening Approach
2 of 20
I: Expanding Genetic Code in S. cevevisiae with an
Orthogonal tRNATrp/UCA/ Tryptophanyl tRNA Synthetase
Pair II: Synthetic Yeast Prions based on a Non-NQ-rich
Amyloidogenic Sequence Derived from the NAC Protein Sequence of
α-Synuclein.
3 of 20
Conformational Exchange: A Common Mechanism for Amyloid Assembly
4 of 20
Role of Loop Motions in Enzyme Catalysis
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Engineering The Substrate Specificity Of Human Deoxycytidine Kinase
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Engineering Candida antarctica lipase B by circular permutation and incremental truncation
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Engineering of elastin using noncanonical amino acids
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Muti-site specific incorporation of non-canonical amino acids for
biomaterials design
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Application of fluorescent nucleoside analogs in direct evolution
of Drosophila melanogaster deoxyribonucleoside kinase
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Two-Dimensional Self-Assembly of Collagen-Mimetic Peptides
11 of 20
Understanding Synthetic Riboswitch Mechanism and Creating
Predictive Biophysical Model for Designing Novel Synthetic
Riboswitches
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The Rational Design of Environmentally-Responsive Elements in Synthetic Helical Fibers
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Development of Monocarbonyl Curcumin Analogues Towards Treating
Tuberculosis and Cancer
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Biomaterial Design: Human Tropoelastin
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Generation of Novel Yeast Prions through Domain Substitutions of Saccharomyces cerevisiae Sup35p
16 of 20
Widening the Active Site of Bacillus circulans Xylanase
by Amino Acid Insertion
17 of 20
Cloning, Expression, and Characterization of a HEAT Repeat Solenoid
Protein
18 of 20
Globin Coupled Sensor Signaling in P. carotovorum: A Model of
Biofilm Regulation through Oligomerization of Diguanylate Cyclases
19 of 20
Biological Engineering with Chemical-Sensing Macromolecular
Switches: I. Discovery and Applications of Small-Molecule Dependent
Synthetic Riboswitches II. A Genetic Toolbox for Creating
Reversible Ca 2+ -Sensitive Biomaterials
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