학술논문

IntAct: A nondisruptive internal tagging strategy to study the organization and function of actin isoforms.
Document Type
Article
Source
PLoS Biology. 3/11/2024, Vol. 22 Issue 3, p1-30. 30p.
Subject
*ACTIN
*MICROFILAMENT proteins
*MOLECULAR interactions
*MOLECULAR dynamics
*CELL lines
*CO-cultures
*ANIMAL species
Language
ISSN
1544-9173
Abstract
Mammals have 6 highly conserved actin isoforms with nonredundant biological functions. The molecular basis of isoform specificity, however, remains elusive due to a lack of tools. Here, we describe the development of IntAct, an internal tagging strategy to study actin isoforms in fixed and living cells. We identified a residue pair in β-actin that permits tag integration and used knock-in cell lines to demonstrate that IntAct β-actin expression and filament incorporation is indistinguishable from wild type. Furthermore, IntAct β-actin remains associated with common actin-binding proteins (ABPs) and can be targeted in living cells. We demonstrate the usability of IntAct for actin isoform investigations by showing that actin isoform-specific distribution is maintained in human cells. Lastly, we observed a variant-dependent incorporation of tagged actin variants into yeast actin patches, cables, and cytokinetic rings demonstrating cross species applicability. Together, our data indicate that IntAct is a versatile tool to study actin isoform localization, dynamics, and molecular interactions. Mammals have six highly-conserved actin isoforms with nonredundant functions, but their molecular properties remain unknown. These authors develop IntAct, a versatile tool to study actin isoform localization, dynamics and molecular interactions across species in both fixed an living cells. [ABSTRACT FROM AUTHOR]