Department of Biological Sciences, Dartmouth College, Hanover, NH.
J Cell Biol. 2022 Jun 6;221(6). doi: 10.1083/jcb.202103069. Epub 2022 Apr 9.
During tissue morphogenesis, the changes in cell shape, resulting from cell-generated forces, often require active regulation of intracellular trafficking. How mechanical stimuli influence intracellular trafficking and how such regulation impacts tissue mechanics are not fully understood. In this study, we identify an actomyosin-dependent mechanism involving Rab11-mediated trafficking in regulating apical constriction in the Drosophila embryo. During Drosophila mesoderm invagination, apical actin and Myosin II (actomyosin) contractility induces apical accumulation of Rab11-marked vesicle-like structures ("Rab11 vesicles") by promoting a directional bias in dynein-mediated vesicle transport. At the apical domain, Rab11 vesicles are enriched near the adherens junctions (AJs). The apical accumulation of Rab11 vesicles is essential to prevent fragmented apical AJs, breaks in the supracellular actomyosin network, and a reduction in the apical constriction rate. This Rab11 function is separate from its role in promoting apical Myosin II accumulation. These findings suggest a feedback mechanism between actomyosin activity and Rab11-mediated intracellular trafficking that regulates the force generation machinery during tissue folding.
在组织形态发生过程中,细胞产生的力导致的细胞形状变化,往往需要细胞内运输的主动调节。机械刺激如何影响细胞内运输,以及这种调节如何影响组织力学,这些问题尚未得到充分理解。在这项研究中,我们确定了一种肌动球蛋白依赖性机制,该机制涉及 Rab11 介导的运输,以调节果蝇胚胎中的顶端收缩。在果蝇中胚层内陷过程中,顶端肌动蛋白和肌球蛋白 II(肌动球蛋白)收缩性通过促进动力蛋白介导的囊泡运输的定向偏差,诱导 Rab11 标记的囊泡样结构(“Rab11 囊泡”)在顶端的积累。在顶端区域,Rab11 囊泡在黏着连接(AJs)附近富集。Rab11 囊泡在顶端的积累对于防止顶端 AJs 碎片化、细胞外肌动球蛋白网络中断以及顶端收缩率降低是必不可少的。Rab11 的这种功能与其促进顶端肌球蛋白 II 积累的作用是分开的。这些发现表明,肌动球蛋白活性和 Rab11 介导的细胞内运输之间存在反馈机制,该机制调节组织折叠过程中的力产生机制。