| HOME | HELP | FEEDBACK | SUBSCRIPTIONS | ARCHIVE | SEARCH | TABLE OF CONTENTS |
Biophysical Journal 56: 415-420 (1989)
© 1989 the Biophysical Society
Department of Chemistry, University of Denver, Colorado 80208.
ABSTRACT
It is demonstrated that fluorescence resonance energy transfer may be used to determine the fractal dimension of aggregates of membrane-bound proteins. Theoretical and experimental results are presented for two different experimental designs: energy transfer between proteins and energy transfer from lipids to proteins. For energy transfer between proteins the lattice spacing must be known independently for a fractal dimension to be uniquely determined, and this represents a disadvantage to this experimental design. Results are presented for the calcium ATPase and a fractal dimension of 1.9 is estimated for ATPase aggregates by assuming a lattice spacing of 50 A. Energy transfer from lipids to protein provides a means of estimating the length of the "coast-line" of the aggregate. In this case the fractal dimension is uniquely determined from a log-log plot. An analysis of data for bacteriohodopsin reconstituted in phospholipid vesicles gives a fractal dimension of 1.6. The structural basis of the value for the fractal dimension is discussed for these two systems. These techniques provide a means of assessing the nature of protein-protein interactions in membranous systems.
This article has been cited by other articles:
![]() |
D. A. Zacharias Sticky Caveats in an Otherwise Glowing Report: Oligomerizing Fluorescent Proteins and Their Use in Cell Biology Sci. Signal., May 7, 2002; 2002(131): pe23 - pe23. [Abstract] [Full Text] [PDF] |
||||
![]() |
A.K. Kenworthy and M. Edidin Distribution of a Glycosylphosphatidylinositol-anchored Protein at the Apical Surface of MDCK Cells Examined at a Resolution of <100 A Using Imaging Fluorescence Resonance Energy Transfer J. Cell Biol., July 13, 1998; 142(1): 69 - 84. [Abstract] [Full Text] [PDF] |
||||
| HOME | HELP | FEEDBACK | SUBSCRIPTIONS | ARCHIVE | SEARCH | TABLE OF CONTENTS |