42 results on '"Krahn, Natalie"'
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2. Intein-based Design Expands Diversity of Selenocysteine Reporters
3. Selective cysteine-to-selenocysteine changes in a [NiFe]-hydrogenase confirm a special position for catalysis and oxygen tolerance
4. Replacing a Cysteine Ligand by Selenocysteine in a [NiFe]-Hydrogenase Unlocks Hydrogen Production Activity and Addresses the Role of Concerted Proton-Coupled Electron Transfer in Electrocatalytic Reversibility
5. Using selenocysteine-specific reporters to screen for efficient tRNASec variants
6. Homogenous overexpression of the extracellular matrix protein Netrin-1 in a hollow fiber bioreactor
7. Overcoming Challenges with Biochemical Studies of Selenocysteine and Selenoproteins.
8. Tuning tRNAs for improved translation.
9. Structural and Hydrodynamic Characterization of Dimeric Human Oligoadenylate Synthetase 2
10. Solution Structure of C. elegans UNC-6: A Nematode Paralogue of the Axon Guidance Protein Netrin-1
11. tRNA shape is an identity element for an archaeal pyrrolysyl-tRNA synthetase from the human gut
12. Engineering aminoacyl-tRNA synthetases for use in synthetic biology
13. Nanoscale Assembly of High-Mobility Group AT-Hook 2 Protein with DNA Replication Fork
14. Inhibition of glycosylation on a camelid antibody uniquely affects its FcγRI binding activity
15. tRNA shape is an identity element for an archaeal pyrrolysyl-tRNA synthetase from the human gut.
16. Recoding UAG to selenocysteine inSaccharomyces cerevisiae
17. Structural Decoding of the Netrin-1/UNC5 Interaction and its Therapeutical Implications in Cancers
18. Deciphering the Role of Selenoprotein M.
19. Dual incorporation of non-canonical amino acids enables production of post-translationally modified selenoproteins
20. Harnessing selenocysteine to enhance microbial cell factories for hydrogen production
21. Effects of nutrient levels and average culture pH on the glycosylation pattern of camelid-humanized monoclonal antibody
22. Unconventional genetic code systems in archaea
23. Diversification of aminoacyl-tRNA synthetase activities via genomic duplication
24. Uncovering translation roadblocks during the development of a synthetic tRNA
25. Uncovering translation roadblocks during the development of a synthetic tRNA
26. Chapter Three - Using selenocysteine-specific reporters to screen for efficient tRNASec variants
27. A novel tRNA feature found in an archaeal pyrrolysyl tRNA is a requirement for PylRS recognition
28. Recoding UAG to selenocysteine in Saccharomyces cerevisiae
29. Chapter Twelve - Engineering aminoacyl-tRNA synthetases for use in synthetic biology
30. Unconventional genetic code systems in archaea.
31. Introducing Selenocysteine into Recombinant Proteins in Escherichia coli
32. Naturally Occurring tRNAs With Non-canonical Structures
33. Front Cover: Hijacking Translation Initiation for Synthetic Biology (ChemBioChem 10/2020)
34. Hijacking Translation Initiation for Synthetic Biology
35. Effects of cysteine, asparagine, or glutamine limitations in Chinese hamster ovary cell batch and fed‐batch cultures
36. Modulating antibody‐dependent cellular cytotoxicity of epidermal growth factor receptor‐specific heavy‐chain antibodies through hinge engineering
37. Solution Structures of Wildtype and Deglycosylated Neuropilin 1
38. Structure and hydrodynamics of a DNA G-quadruplex with a cytosine bulge
39. Solution Structures of Wildtype and Deglycosylated Neuropilin 1
40. Solution Structure of C. elegansUNC-6: A Nematode Paralogue of the Axon Guidance Protein Netrin-1
41. Creating Selenocysteine-Specific Reporters Using Inteins.
42. Using selenocysteine-specific reporters to screen for efficient tRNA Sec variants.
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