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Autoregulation of actin synthesis responds to monomeric actin levels

โœ Scribed by Anna Lyubimova; Alexander D. Bershadsky; Avri Ben-Ze'ev


Book ID
101261146
Publisher
John Wiley and Sons
Year
1997
Tongue
English
Weight
174 KB
Volume
65
Category
Article
ISSN
0730-2312

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โœฆ Synopsis


Regulation of the assembly and expression of actin is of major importance in diverse cellular functions such as motility and adhesion and in defining cellular and tissue architecture. These biological processes are controlled by changing the balance between polymerized (F) and soluble (G) actin. Previous studies have indicated the existence of an autoregulatory pathway that links the state of assembly and expression of actin, resulting in the reduction of actin synthesis after actin filaments are depolymerized. We have employed the marine toxins swinholide A and latrunculin A, both disrupting the organization of the actin-cytoskeleton, to determine whether this autoregulatory response is activated by a decrease in the level of polymerized actin or by an increase in monomeric actin concentrations in the cell. We showed that in cells treated with swinholide A the level of filamentous actin is decreased, and using a reversible cross-linking reagent, we found that actin dimers are formed. Latrunculin A also disassembled actin filaments, but produced monomeric actin, followed by a reduction in actin and vinculin expression, while swinholide A treatment elevated the synthesis of these proteins. In cells treated with both latrunculin A and swinholide A, dimeric actin was formed, and actin and vinculin synthesis were higher than in control cells. These results suggest that the substrate that confers an autoregulated reduction in actin expression is monomeric actin, and when its level is decreased by dimeric actin formation, actin synthesis is increased.


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Autoregulation of actin synthesis requir
โœ Anna Lyubimova; Alexander D. Bershadsky; Avri Ben-Ze'ev ๐Ÿ“‚ Article ๐Ÿ“… 2000 ๐Ÿ› John Wiley and Sons ๐ŸŒ English โš– 164 KB

## Monomeric (G) actin was shown to be involved in inhibiting its own synthesis by an autoregulatory mechanism that includes enhanced degradation of the actin mRNA [Bershadsky et al., 1995;Lyubimova et al., 1997]. We show that the 3ะˆ-untranslated region (3ะˆ-UTR) of โค-actin mRNA, but not its 5ะˆ-unt