Conformational Preferences of the Non-Canonical Amino Acids (2S,4S)-5-Fluoroleucine, (2S,4R)-5-Fluoroleucine, and 5,5’-Difluoroleucine in a Protein
Loading...
Date
Authors
Frkic, Rebecca L.
Tan, Yi Jiun
Abdelkader, Elwy H.
Maleckis, Ansis
Tarcoveanu, Eliza
Nitsche, Christoph
Otting, Gottfried
Jackson, Colin
Journal Title
Journal ISSN
Volume Title
Publisher
American Chemical Society
Access Statement
Open Access after embargo
Abstract
Proteins produced with leucine analogues, where CH2F groups substitute specific methyl groups, can readily be probed by 19F-NMR spectroscopy. As CF and CH groups are similar in hydrophicity and size, fluorinated leucines are expected to cause minimal structural perturbation, but the impact of fluorine on the rotational freedom of CH2F groups is unclear. We present high-resolution crystal structures of E. coli peptidyl–prolyl cis–trans isomerase B (PpiB) prepared with uniform high-level substitution of leucine by (2S,4S)-5-fluoroleucine, (2S,4R)-5-fluoroleucine, or 5,5’-difluoroleucine. Apart from the fluorinated leucine residues, the structures show complete structural conservation of the protein backbone and the amino acid side chains except for a single isoleucine side chain located next to a fluorine atom in the hydrophobic core of the protein. The carbon skeletons of the fluorinated leucine side chains are also mostly conserved. The CH2F groups show a strong
preference for staggered rotamers and often appear locked into single rotamers. Substitution of leucine CH3 groups for CH2F groups is thus readily tolerated in the 3D structure of a protein and the rotation of CH2F groups can be halted at cryogenic temperatures.
Description
Citation
Collections
Source
Biochemistry
Type
Book Title
Entity type
Publication
Access Statement
Open Access after embargo