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J Mol Biol. 2005 Feb 11;346(1):307-18. Epub 2004 Dec 24[DOI Link] Structural and energetic consequences of mutations in a solvated hydrophobic cavityAdamek DH, Guerrero L, Blaber M, Caspar DLInstitute of Molecular Biophysics, Florida State University, Tallahassee, Florida 32306-4380, USA.
The structural and energetic consequences of modifications to the hydrophobic cavity of interleukin 1-beta (IL-1beta) are described.
Previous reports demonstrated that the entirely hydrophobic cavity of IL-1beta contains positionally disordered water.
To gain a better understanding of the nature of this cavity and the water therein, a number of mutant proteins were constructed
by site-directed mutagenesis, designed to result in altered hydrophobicity of the cavity. These mutations involve the replacement of
specific phenylalanine residues, which circumscribe the cavity, with tyrosine, tryptophan, leucine and isoleucine.
Using differential scanning calorimetry to determine the relative stabilities of the wild-type and mutant proteins, we found all of the mutants to
be destabilizing. X-ray crystallography was used to identify the structural consequences of the mutations. No clear correlation between the
hydrophobicities of the specific side-chains introduced and the resulting stabilities was found.
PMID: 15663946 [PubMed - in process] This publication is one of the several that describes a structure solved either at the Kasha Laboratory, Institute of Molecular Biophysics or in collaboration with the Institute Faculty. The data used for this structure determination came in full or part from the Macromolecular X-Ray Crystallography Facility. |
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www.sb.fsu.edu/~xray/Pubs/05adamek.html
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