Literature DB >> 22930450

Comparison of the structures and stabilities of coiled-coil proteins containing hexafluoroleucine and t-butylalanine provides insight into the stabilizing effects of highly fluorinated amino acid side-chains.

Benjamin C Buer1, Jennifer L Meagher, Jeanne A Stuckey, E Neil G Marsh.   

Abstract

Highly fluorinated analogs of hydrophobic amino acids are well known to increase the stability of proteins toward thermal unfolding and chemical denaturation, but there is very little data on the structural consequences of fluorination. We have determined the structures and folding energies of three variants of a de novo designed 4-helix bundle protein whose hydrophobic cores contain either hexafluoroleucine (hFLeu) or t-butylalanine (tBAla). Although the buried hydrophobic surface area is the same for all three proteins, the incorporation of tBAla causes a rearrangement of the core packing, resulting in the formation of a destabilizing hydrophobic cavity at the center of the protein. In contrast, incorporation of hFLeu, causes no changes in core packing with respect to the structure of the nonfluorinated parent protein which contains only leucine in the core. These results support the idea that fluorinated residues are especially effective at stabilizing proteins because they closely mimic the shape of the natural residues they replace while increasing buried hydrophobic surface area.
Copyright © 2012 The Protein Society.

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Year:  2012        PMID: 22930450      PMCID: PMC3527707          DOI: 10.1002/pro.2150

Source DB:  PubMed          Journal:  Protein Sci        ISSN: 0961-8368            Impact factor:   6.725


  46 in total

1.  Fluorinated Coiled-Coil Proteins Prepared In Vivo Display Enhanced Thermal and Chemical Stability This work was supported by a grant from the U.S. Army Research Office. Y. Tang is supported by a Whitaker Graduate Research Fellowship. We thank Dr. Gary Hathaway for performing matrix-assisted laser desorption/ionization analyses.

Authors:  Yi Tang; Giovanna Ghirlanda; Wendy A. Petka; Tadashi Nakajima; William F. DeGrado; David A. Tirrell
Journal:  Angew Chem Int Ed Engl       Date:  2001-04-17       Impact factor: 15.336

Review 2.  Fluorinated amino acids in protein design and engineering.

Authors:  Nicholas C Yoder; Krishna Kumar
Journal:  Chem Soc Rev       Date:  2002-11       Impact factor: 54.564

3.  PRODRG: a tool for high-throughput crystallography of protein-ligand complexes.

Authors:  Alexander W Schüttelkopf; Daan M F van Aalten
Journal:  Acta Crystallogr D Biol Crystallogr       Date:  2004-07-21

Review 4.  Designing materials for biology and medicine.

Authors:  Robert Langer; David A Tirrell
Journal:  Nature       Date:  2004-04-01       Impact factor: 49.962

5.  Structural basis for the enhanced stability of highly fluorinated proteins.

Authors:  Benjamin C Buer; Jennifer L Meagher; Jeanne A Stuckey; E Neil G Marsh
Journal:  Proc Natl Acad Sci U S A       Date:  2012-03-12       Impact factor: 11.205

6.  Validation of crystallographic models containing TLS or other descriptions of anisotropy.

Authors:  Frank Zucker; P Christoph Champ; Ethan A Merritt
Journal:  Acta Crystallogr D Biol Crystallogr       Date:  2010-07-09

Review 7.  Bioorthogonal noncovalent chemistry: Fluorous phases in chemical biology.

Authors:  Nicholas C Yoder; Deniz Yüksel; Laila Dafik; Krishna Kumar
Journal:  Curr Opin Chem Biol       Date:  2006-10-19       Impact factor: 8.822

8.  Solution structure of a small protein containing a fluorinated side chain in the core.

Authors:  Gabriel Cornilescu; Erik B Hadley; Matthew G Woll; John L Markley; Samuel H Gellman; Claudia C Cornilescu
Journal:  Protein Sci       Date:  2006-11-22       Impact factor: 6.725

9.  Expressed protein ligation: a general method for protein engineering.

Authors:  T W Muir; D Sondhi; P A Cole
Journal:  Proc Natl Acad Sci U S A       Date:  1998-06-09       Impact factor: 11.205

10.  Phaser crystallographic software.

Authors:  Airlie J McCoy; Ralf W Grosse-Kunstleve; Paul D Adams; Martyn D Winn; Laurent C Storoni; Randy J Read
Journal:  J Appl Crystallogr       Date:  2007-07-13       Impact factor: 3.304

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  4 in total

1.  Synthetic Control of Tertiary Helical Structures in Short Peptides.

Authors:  Michael G Wuo; Seong Ho Hong; Arunima Singh; Paramjit S Arora
Journal:  J Am Chem Soc       Date:  2018-11-14       Impact factor: 15.419

2.  Position-dependent impact of hexafluoroleucine and trifluoroisoleucine on protease digestion.

Authors:  Susanne Huhmann; Anne-Katrin Stegemann; Kristin Folmert; Damian Klemczak; Johann Moschner; Michelle Kube; Beate Koksch
Journal:  Beilstein J Org Chem       Date:  2017-12-22       Impact factor: 2.883

3.  (2S,4R)- and (2S,4S)-perfluoro-tert-butyl 4-hydroxyproline: two conformationally distinct proline amino acids for sensitive application in 19F NMR.

Authors:  Caitlin M Tressler; Neal J Zondlo
Journal:  J Org Chem       Date:  2014-06-06       Impact factor: 4.354

4.  What does fluorine do to a protein? Thermodynamic, and highly-resolved structural insights into fluorine-labelled variants of the cold shock protein.

Authors:  Hannah Welte; Tiankun Zhou; Xenia Mihajlenko; Olga Mayans; Michael Kovermann
Journal:  Sci Rep       Date:  2020-02-14       Impact factor: 4.379

  4 in total

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