Tyrosinyl example sentences

Related (2): tyrosinyl-tRNA, tyrosinyluria

"Tyrosinyl" Example Sentences

1. The tyrosinyl residue in the protein was found to be crucial for its function.
2. The enzyme catalyzed the addition of a tyrosinyl group to the substrate.
3. The tyrosinyl radical was formed during the reaction, indicating a radical mechanism.
4. The tyrosinyl moiety was modified using a variety of chemical reactions.
5. A Schiff base was formed between the tyrosinyl residue and the aldehyde substrate.
6. The tyrosinyl side chain was located on the protein surface, allowing for interactions with other molecules.
7. The tyrosinyl group was essential for the binding of the ligand to the receptor.
8. The tyrosinyl phosphatase was responsible for the dephosphorylation of tyrosine residues.
9. The tyrosinyl kinase was activated upon binding of its ligand.
10. The tyrosinyl phosphorylation of the protein regulated its activity.
11. The tyrosinyl residues were protected using a blocking group during peptide synthesis.
12. The tyrosinyl derivative exhibited potent biological activity against cancer cells.
13. The tyrosinyl radical was detected using electron paramagnetic resonance spectroscopy.
14. The tyrosinyl peptide was cleaved using a protease enzyme.
15. The tyrosinyl transferase enzyme was responsible for transferring the tyrosinyl group to its substrate.
16. The tyrosinyl hydroxylase enzyme catalyzed the hydroxylation of tyrosine residues.
17. The tyrosinyl fluoride derivative was used as an inhibitor in enzymatic assays.
18. The tyrosinyl radical was generated using a photosensitizer and light.
19. The tyrosinyl hydroperoxide was formed upon reaction with an oxidizing agent.
20. The tyrosinyl carbamate was synthesized using a carbamoylating reagent.
21. The tyrosinyl peptide bond was hydrolyzed using a protease enzyme.
22. The tyrosinyl phosphorylation of the protein was detected using mass spectrometry.
23. The tyrosinyl glycoside was synthesized using a glycosylation reaction.
24. The tyrosinyl chloride derivative was synthesized from tyrosine and thionyl chloride.
25. The tyrosinyl azide was synthesized using a diazotization reaction.
26. The tyrosinyl residue was located in a conserved region of the protein.
27. The tyrosinyl analog exhibited similar activity to the natural substrate.
28. The tyrosinyl biomarker was used for disease diagnosis.
29. The tyrosinyl sulfonate derivative was synthesized using a sulfonation reaction.
30. The tyrosinyl residue was cross-linked to a lysine residue using a zero-length cross-linker.
31. The tyrosinyl C-terminal peptide was synthesized using solid-phase peptide synthesis.
32. The tyrosinyl radical was trapped using a spin-trapping agent.
33. The tyrosinyl nucleotide was used as a substrate for DNA synthesis.
34. The tyrosinyl peptide was cyclized using a disulfide bond.
35. The tyrosinyl side chain was oxidized using hydrogen peroxide.
36. The tyrosinyl glycoside was characterized using NMR spectroscopy.
37. The tyrosinyl imine was synthesized using a condensation reaction.
38. The tyrosinyl-sulfated peptide was synthesized using a sulfation reaction.
39. The tyrosinyl radical was generated using a peroxidase enzyme and hydrogen peroxide.
40. The tyrosinyl peptide was used as a substrate for measuring enzyme activity.

Common Phases

1. Tyrosinyl residue;
2. Tyrosinyl radical;
3. Tyrosinyl kinase;
4. Tyrosinyl phosphatase;
5. Tyrosinyl-tRNA synthetase;
6. Tyrosinylated proteins;
7. Tyrosinylated peptides;
8. Tyrosinylated histones;
9. Tyrosinylated antibodies;
10. Tyrosinylated receptors.

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