Y Tang, G Ghirlanda, N Vaidehi, J Kua, D T Mainz, W A Goddard III, W F DeGrado, D A Tirrell
Index: Biochemistry 40(9) , 2790-6, (2001)
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Substitution of leucine residues by 5,5,5-trifluoroleucine at the d-positions of the leucine zipper peptide GCN4-p1d increases the thermal stability of the coiled-coil structure. The midpoint thermal unfolding temperature of the fluorinated peptide is elevated by 13 degrees C at 30 microM peptide concentration. The modified peptide is more resistant to chaotropic denaturants, and the free energy of folding of the fluorinated peptide is 0.5-1.2 kcal/mol larger than that of the hydrogenated form. A similarly fluorinated form of the DNA-binding peptide GCN4-bZip binds to target DNA sequences with affinity and specificity identical to those of the hydrogenated form, while demonstrating enhanced thermal stability. Molecular dynamics simulation on the fluorinated GCN4-p1d peptide using the Surface Generalized Born implicit solvation model revealed that the coiled-coil binding energy is 55% more favorable upon fluorination. These results suggest that fluorination of hydrophobic substructures in peptides and proteins may provide new means of increasing protein stability, enhancing protein assembly, and strengthening receptor-ligand interactions.
Structure | Name/CAS No. | Molecular Formula | Articles |
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5,5,5-TRIFLUORO-DL-LEUCINE
CAS:2792-72-5 |
C6H10F3NO2 |
The first isolation of two types of trifluoroleucine resista...
2003-10-01 [Biotechnol. Lett. 25(20) , 1735-8, (2003)] |
Construction of two new vectors for transformation of labora...
2004-01-01 [Folia Microbiol. (Praha) 49(5) , 534-8, (2004)] |
Self-association and membrane-binding behavior of melittins ...
2001-08-01 [J. Am. Chem. Soc. 123(30) , 7407-13, (2001)] |
Biosynthesis and stability of coiled-coil peptides containin...
2009-01-05 [ChemBioChem. 10(1) , 84-6, (2009)] |
Oxazoline-oxazinone oxidative rearrangement. divergent synth...
2009-08-07 [J. Org. Chem. 74(15) , 5510-5, (2009)] |
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