作者
Alvaro H Crevenna, Marcelino Arciniega, Aurelie Dupont, Naoko Mizuno, Kaja Kowalska, Oliver F Lange, Roland Wedlich-Söldner, Don C Lamb
发表日期
2015/2/23
期刊
elife
卷号
4
页码范围
e04599
出版商
eLife Sciences Publications, Ltd
简介
Actin filament dynamics govern many key physiological processes from cell motility to tissue morphogenesis. A central feature of actin dynamics is the capacity of filaments to polymerize and depolymerize at their ends in response to cellular conditions. It is currently thought that filament kinetics can be described by a single rate constant for each end. In this study, using direct visualization of single actin filament elongation, we show that actin polymerization kinetics at both filament ends are strongly influenced by the binding of proteins to the lateral filament surface. We also show that the pointed-end has a non-elongating state that dominates the observed filament kinetic asymmetry. Estimates of flexibility as well as effects on fragmentation and growth suggest that the observed kinetic diversity arises from structural alteration. Tuning elongation kinetics by exploiting the malleability of the filament structure may be a ubiquitous mechanism to generate a rich variety of cellular actin dynamics.
DOI: http://dx.doi.org/10.7554/eLife.04599.001
引用总数
2014201520162017201820192020202120222023202412435712512
学术搜索中的文章