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PMID: 10684603 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Contribution of surface salt bridges to protein stability.

Biochemistry ·Vol. 39 ·No. 6 ·2000-02-15 ·Pages 1251-5

Strop P, Mayo SL

Abstract

The role of surface salt bridges in protein stabilization has been a source of controversy. Here we present the NMR structure of a hyperthermophilic rubredoxin variant (PFRD-XC4) and the thermodynamic analysis of two surface salt bridges by double mutant cycles. This analysis shows that the surface side chain to side chain salt bridge between Lys 6 and Glu 49 does not stabilize PFRD-XC4. The main chain to side chain salt bridge between the N-terminus and Glu 14 was, however, found to stabilize PFRD-XC4 by 1. 5 kcal mol(-)(1). The entropic cost of making a surface salt bridge involving the protein's backbone is reduced, since the backbone has already been immobilized upon protein folding.

MeSH Terms
Bacterial Proteins/chemistry,genetics Crystallography, X-Ray Guanidine Hydrogen Bonding Mutagenesis, Site-Directed Nuclear Magnetic Resonance, Biomolecular Protein Denaturation Pyrococcus furiosus/chemistry,genetics Rubredoxins/chemistry,genetics Salts/chemistry Solutions Solvents/chemistry Thermodynamics
Chemicals
Bacterial Proteins Rubredoxins Salts Solutions Solvents Guanidine
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Strop P
Biochemistry Option, California Institute of Technology, Pasadena, California 91125, USA.
Mayo S L
Article Info
Journal
Biochemistry
Abbr.
Biochemistry
ISSN
0006-2960
Published
2000-02-15
Pages
1251-5
Language
English
Region
United States
NLM ID
0370623
Subset
IM
Databases
PDB
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