Abstract
Incubation of cultured cells under specific conditions induces a dramatic change in the actin organization: induction of intranuclear and/or cytoplasmic actin rods (actin paracrystal-like intracellular structures). We have found that cofilin, a 21-kDa actin-binding protein, is a component of these rods. Antibodies directed against cofilin labeled intranuclear actin rods induced in cells treated with dimethyl sulfoxide or exposed to heat shock and also labeled cytoplasmic actin rods induced in cells incubated in specific salt buffers. Moreover, we found that these actin rods are not stained with fluorescent phalloidin derivatives at all and appear to be right-handed helices, different from straight bundles of F-actin such as stress fibers. In vitro experiments revealed that cofilin and phalloidin compete with each other for binding to F-actin. Since cofilin and phalloidin have the ability to stoichiometrically bind actin molecule in the filament in vitro, the above results seem to suggest that cofilin directly binds to actin molecule in nearly an equimolar ratio in these rods. We call these rods "actin/cofilin rods."
MeSH Terms
Actin Depolymerizing Factors
Actins/analysis,metabolism
Animals
Binding, Competitive
Carrier Proteins/analysis
Cells, Cultured
Cytoplasm/ultrastructure
Dimethyl Sulfoxide/pharmacology
Fibroblasts/ultrastructure
Gelsolin
Hot Temperature
Mice
Microfilament Proteins
Molecular Weight
Nerve Tissue Proteins/analysis,metabolism
Phalloidine/metabolism
Chemicals
Actin Depolymerizing Factors
Actins
Carrier Proteins
Gelsolin
Microfilament Proteins
Nerve Tissue Proteins
brevin
Phalloidine
Dimethyl Sulfoxide
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Nishida E
Iida K
Yonezawa N
Koyasu S
Yahara I
Sakai H
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26 references, click to expand
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