PROXIMITY RELATIONSHIPS AND STRUCTURAL DYNAMICS OF THE PHALLOIDIN BINDING-SITE OF ACTIN-FILAMENTS IN SOLUTION AND ON SINGLE ACTIN-FILAMENTS ON HEAVY-MEROMYOSIN

被引:30
作者
HEIDECKER, M [1 ]
YANMARRIOTT, Y [1 ]
MARRIOTT, G [1 ]
机构
[1] MAX PLANCK INST BIOCHEM, BIOMOLEC & CELLULAR DYNAM RES GRP, D-82152 MARTINSRIED, GERMANY
关键词
D O I
10.1021/bi00035a007
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Distance relationships between phalloidin binding sites on F-actin have been investigated using fluorescence resonance energy transfer (FRET) techniques in solution and on single F-actin filaments bound to heavy meromyosin (HMM). Filaments saturated with an equimolar concentration of fluoresceinisothiocyanatophalloidin (FITC-ph) as the donor and tetramethylrhodamineisothiocyanatophalloidin (TRITC-ph) as the acceptor and control filaments saturated with either FITC-ph or TRITC-ph were characterized by absorption and fluorescence spectroscopy and the in vitro motility assay. Fluorescence excitation polarization spectroscopy showed hetero-FRET occurred within colabeled filaments, whereas home-FRET was observed in control filaments. The distance measured between adjacent phalloidin binding sites using randomly labeled FITC-ph and TRITC-ph was 37.2 Angstrom using steady-state spectral analysis and 36.9 Angstrom using time-resolved spectroscopy with a radial coordinate of 14.5 Angstrom. Measurements of the distance between fluorescent phalloidin groups using the atomic model of F-actin [Lorenz, M., Popp, D., & Holmes, K. C. (1993) J. Mob. Blob. 234, 826-836] suggest transfer occurs between adjacent phalloidin molecules on opposite actin helices (39 Angstrom), rather than between adjacent phalloidins along the same actin helix (55.4 Angstrom). A quantitative fluorescence microscope technique was described that measures the proximity of adjacent FITC-ph and TRITC-ph on single filaments immobilized on HMM. Here a distance of 36.2 Angstrom was calculated which was unchanged during ATP-dependent sliding of F-actin on HMM. Spatially resolved FRET measurements are being used to observe the effects of actin binding proteins on the structural properties along the length of single actin filaments.
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页码:11017 / 11025
页数:9
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