Sokac Anna Marie, Wieschaus Eric
Department of Molecular Biology, Princeton University, Washington Road, Princeton, NJ 08544, USA.
Dev Cell. 2008 May;14(5):775-86. doi: 10.1016/j.devcel.2008.02.014.
In early Drosophila embryos, several mitotic cycles proceed with aborted cytokinesis before a modified cytokinesis, called cellularization, finally divides the syncytium into individual cells. Here, we find that scission of endocytic vesicles from the plasma membrane (PM) provides a control point to regulate the furrowing events that accompany this development. At early mitotic cycles, local furrow-associated endocytosis is controlled by cell cycle progression, whereas at cellularization, which occurs in a prolonged interphase, it is controlled by expression of the zygotic gene nullo. nullo mutations impair cortical F-actin accumulation and scission of endocytic vesicles, such that membrane tubules remain tethered to the PM and deplete structural components from the furrows, precipitating furrow regression. Thus, Nullo regulates scission to restrain endocytosis of proteins essential for furrow stabilization at the onset of cellularization. We propose that developmentally regulated endocytosis can coordinate actin/PM remodeling to directly drive furrow dynamics during morphogenesis.
在早期果蝇胚胎中,几个有丝分裂周期在细胞分裂失败的情况下进行,然后一种称为细胞化的改良胞质分裂最终将合胞体分成单个细胞。在这里,我们发现从质膜(PM)上脱离内吞小泡提供了一个控制点,以调节伴随这一发育过程的沟形成事件。在早期有丝分裂周期中,局部沟相关内吞作用受细胞周期进程控制,而在细胞化过程中(发生在延长的间期),它受合子基因nullo的表达控制。nullo突变会损害皮质F-肌动蛋白的积累和内吞小泡的脱离,使得膜小管仍与质膜相连,并从沟中耗尽结构成分,从而导致沟退缩。因此,Nullo调节脱离作用,以抑制细胞化开始时沟稳定所必需的蛋白质的内吞作用。我们提出,发育调控的内吞作用可以协调肌动蛋白/质膜重塑,以在形态发生过程中直接驱动沟的动态变化。