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PMID: 1650946 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Hydrophobic clustering in nonnative states of a protein: interpretation of chemical shifts in NMR spectra of denatured states of lysozyme.

Proteins ·Vol. 9 ·No. 4 ·1991-00-00 ·Pages 248-66

Evans PA, Topping KD, Woolfson DN, Dobson CM

Abstract

Chemical shifts of resonances of specific protons in the 1H NMR spectrum of thermally denatured hen lysozyme have been determined by exchange correlation with assigned native state resonances in 2D NOESY spectra obtained under conditions where the two states are interconverting. There are subtle but widespread deviations of the measured shifts from the values which would be anticipated for a random coil; in the case of side chain protons these are virtually all net upfield shifts and it is shown that this may be the averaged effect of interactions with aromatic rings in a partially collapsed denatured state. In a very few cases, notably that of two sequential tryptophan residues, it is possible to interpret these effects in terms of specific, local interresidue interactions. Generally, however, there is no correlation with either native state shift perturbations or with sequence proximity to aromatic groups. Diminution of most of the residual shift perturbations on reduction of the disulfide cross-links confirms that they are not simply effects of residues adjacent in the sequence. Similar effects of chemical denaturants, with the disulfides intact, demonstrate that the shift perturbations reflect an enhanced tendency to side chain clustering in the thermally denatured state. The temperature dependences of the shift perturbations suggest that this clustering is noncooperative and is driven by small, favorable enthalpy changes. While the extent of conformational averaging is clearly much greater than that observed for a homologous protein, alpha-lactalbumin, in its partially folded "molten globule" state, the results clearly show that thermally denatured lysozyme differs substantially from a random coil, principally in that it is partially hydrophobically collapsed.

MeSH Terms
Cluster Analysis Disulfides/chemistry Lactalbumin/chemistry Magnetic Resonance Spectroscopy Muramidase/chemistry,metabolism Protein Conformation Protein Denaturation Protons Solubility Thermodynamics X-Ray Diffraction
Chemicals
Disulfides Protons Lactalbumin Muramidase
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Evans P A
Department of Biochemistry, Cambridge University, England.
Topping K D
Woolfson D N
Dobson C M
Article Info
Journal
Proteins
Abbr.
Proteins
ISSN
0887-3585
Published
1991-00-00
Pages
248-66
Language
English
Region
United States
NLM ID
8700181
Subset
IM
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