Department of Molecular Genetics, Weizmann Institute of Science, Rehovot 76100, Israel.
Nat Cell Biol. 2016 Feb;18(2):181-90. doi: 10.1038/ncb3288. Epub 2015 Dec 7.
Releasing content from large vesicles measuring several micrometres in diameter poses exceptional challenges to the secretory system. An actomyosin network commonly coats these vesicles, and is thought to provide the necessary force mediating efficient cargo release. Here we describe the spatial and temporal dynamics of the formation of this actomyosin coat around large vesicles and the resulting vesicle collapse, in live Drosophila melanogaster salivary glands. We identify the Formin family protein Diaphanous (Dia) as the main actin nucleator involved in generating this structure, and uncover Rho as an integrator of actin assembly and contractile machinery activation comprising this actomyosin network. High-resolution imaging reveals a unique cage-like organization of myosin II on the actin coat. This myosin arrangement requires branched-actin polymerization, and is critical for exerting a non-isotropic force, mediating efficient vesicle contraction.
从直径达数微米的大型囊泡中释放内容物对分泌系统提出了特殊的挑战。肌动球蛋白网络通常覆盖这些囊泡,被认为提供了介导有效货物释放所需的力。在这里,我们描述了在活体果蝇唾液腺中,大型囊泡周围肌动球蛋白涂层的形成以及由此产生的囊泡塌陷的时空动力学。我们确定了formin 家族蛋白 Diaphanous (Dia) 作为主要的肌动蛋白成核因子,参与生成这种结构,并揭示了 Rho 作为肌动蛋白组装和收缩机制激活的整合因子,包括这种肌动球蛋白网络。高分辨率成像揭示了肌球蛋白 II 在肌动蛋白涂层上的独特笼状组织。这种肌球蛋白排列需要分支肌动蛋白聚合,对于施加各向异性力、介导有效的囊泡收缩至关重要。