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PMID: 8580311 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Interpreting photoactivated fluorescence microscopy measurements of steady-state actin dynamics.

Biophysical journal ·Vol. 69 ·No. 5 ·1995-11-00 ·Pages 1674-82

Tardy Y, McGrath JL, Hartwig JH, Dewey CF

Abstract

A continuum model describing the steady-state actin dynamics of the cytoskeleton of living cells has been developed to aid in the interpretation of photoactivated fluorescence experiments. In a simplified cell geometry, the model assumes uniform concentrations of cytosolic and cytoskeletal actin throughout the cell and no net growth of either pool. The spatiotemporal evolution of the fluorescent actin population is described by a system of two coupled linear partial-differential equations. An analytical solution is found using a Fourier-Laplace transform and important limiting cases relevant to the design of experiments are discussed. The results demonstrate that, despite being a complex function of the parameters, the fluorescence decay in photoactivated fluorescence experiments has a biphasic behavior featuring a short-term decay controlled by monomer diffusion and a long-term decay governed by the monomer exchange rate between the polymerized and unpolymerized actin pools. This biphasic behavior suggests a convenient mechanism for extracting the parameters governing the fluorescence decay from data records. These parameters include the actin monomer diffusion coefficient, filament turnover rate, and ratio of polymerized to unpolymerized actin.

MeSH Terms
Actins/chemistry,physiology Animals Biophysical Phenomena Biophysics Biopolymers/chemistry,physiology Cytoskeleton/chemistry,physiology Humans Mathematics Microscopy, Fluorescence/methods Models, Biological Photochemistry Protein Conformation
Chemicals
Actins Biopolymers
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Tardy Y
Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge 02139, USA.
McGrath J L
Hartwig J H
Dewey C F
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20 references, click to expand
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Article Info
Journal
Biophysical journal
Abbr.
Biophys J
ISSN
0006-3495
Published
1995-11-00
Pages
1674-82
Language
English
Region
United States
NLM ID
0370626
PMCID
PMC1236401
Subset
IM
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