Issue August 2006

category image Volume 24
No. 1 (p 1-90)
August 2006
ISSN 0739-110

Structural Differences Between Wild-type and Fish Eye Disease Mutant of Lecithin:cholesterol Acyltransferase (p. 75-82)

Fluorescence spectroscopy has been used to investigate the conformational changes that occur upon binding of wild type (WT) and mutant (Thr123Ile) lecithin:cholesterol acyltransferase (LCAT) to the potential substrates (dioleoyl?phosphatidyl choline [DOPC] and high density lipoprotein [HDL]). For a detailed analysis of structural differences between WT and mutant LCAT, we performed decompositional analysis of a set of tryptophan fluorescence spectra, measured at increasing concentrations of external quenchers (acrylamide and KI). The data obtained show that Thr123Ile mutation in LCAT leads to a conformation that is likely to be more rigid (less mobile/flexible) than that of the WT protein with a redistribution of charged residues around exposed tryptophan fluorophores. We propose that the redistribution of charged residues in mutant LCAT may be a major factor responsible for the dramatically reduced activity of the enzyme with HDL and reconstituted high density lipoprotein (rHDL).

Yana Reshetnyak2,*
Kissaou T. Tchedre1
Maya P. Nair1
P. Haydn Pritchard3
Andras G. Lacko1,*

1Department of Molecular Biology and Immunology
University of North Texas Health Science Center
3500 Camp Bowie Blvd.
Fort Worth, Texas 76107, USA
2Department of Physics
University of Rhode Island
2 Lippitt Rd.
Kingston, Rhode Island 02881, USA
3Atherosclerosis Specialty Laboratory
Department of Pathology and Laboratory Medicine
St. Paul?s Hospital and University of British Columbia
Vancouver, British Columbia
V6Z 1Y6, Canada
*A. G. Lacko: alacko@hsc.unt.edu Y. K. Reshetnyak: reshetnyak@mail.uri.edu

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