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PMID: 9628485 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Design, structure and stability of a hyperthermophilic protein variant.

Nature structural biology ·Vol. 5 ·No. 6 ·1998-06-00 ·Pages 470-5

Malakauskas SM, Mayo SL

Abstract

Here we report the use of an objective computer algorithm in the design of a hyperstable variant of the Streptococcal protein Gbeta1 domain (Gbeta1). The designed seven-fold mutant, Gbeta1-c3b4, has a melting temperature in excess of 100 degrees C and an enhancement in thermodynamic stability of 4.3 kcal mol(-1) at 50 degrees C over the wild-type protein. Gbeta1-c3b4 maintains the Gbeta1 fold, as determined by nuclear magnetic resonance spectroscopy, and also retains a significant level of binding to human IgG in qualitative comparisons with wild type. The basis of the stability enhancement appears to have multiple components including optimized core packing, increased burial of hydrophobic surface area, more favorable helix dipole interactions, and improvement of secondary structure propensity. The design algorithm is able to model such complex contributions simultaneously using empirical physical/chemical potential functions and a combinatorial optimization algorithm based on the dead-end elimination theorem. Because the design methodology is based on general principles, there is the potential of applying the methodology to the stabilization of other unrelated protein folds.

MeSH Terms
Algorithms Bacterial Proteins/chemical synthesis,chemistry,genetics Circular Dichroism Computer Simulation Hot Temperature Models, Molecular Mutagenesis, Site-Directed Nuclear Magnetic Resonance, Biomolecular Protein Engineering/methods Protein Structure, Tertiary Streptococcus Structure-Activity Relationship Thermodynamics
Chemicals
Bacterial Proteins IgG Fc-binding protein, Streptococcus
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Malakauskas S M
Division of Biology, California Institute of Technology, Pasadena 91125, USA.
Mayo S L
Article Info
Journal
Nature structural biology
Abbr.
Nat Struct Biol
ISSN
1072-8368
Published
1998-06-00
Pages
470-5
Language
English
Region
United States
NLM ID
9421566
Subset
IM
Databases
PDB
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