光遗传学
形态发生
细胞生物学
生物
发育生物学
原肠化
转基因
内生
转基因小鼠
收缩性
胚胎
神经科学
胚胎发生
遗传学
内分泌学
基因
作者
Andrew D. Countryman,Caroline A. Doherty,R. Marisol Herrera-Perez,Karen E. Kasza
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2024-05-12
被引量:1
标识
DOI:10.1101/2024.05.12.593711
摘要
Abstract During development, epithelia function as malleable substrates that undergo extensive remodeling to shape developing embryos. Optogenetic control of Rho signaling provides an avenue to investigate the mechanisms of epithelial morphogenesis, but transgenic optogenetic tools can be limited by variability in tool expression levels and deleterious effects of transgenic overexpression on development. Here, we use CRISPR/Cas9 to tag Drosophila RhoGEF2 and Cysts/Dp114RhoGEF with components of the iLID/SspB optogenetic heterodimer, permitting light-dependent control over endogenous protein activities. Using quantitative optogenetic perturbations, we uncover a dose-dependence of tissue furrow depth and bending behavior on RhoGEF recruitment, revealing mechanisms by which developing embryos can shape tissues into particular morphologies. We show that at the onset of gastrulation, furrows formed by cell lateral contraction are oriented and size-constrained by a stiff basal actomyosin layer. Our findings demonstrate the use of quantitative, 3D-patterned perturbations of cell contractility to precisely shape tissue structures and interrogate developmental mechanics.
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