IBDML, UMR6216 CNRS-Université de la Méditerranée, Campus de Luminy, Case 907, 13288 Marseille Cedex 09, France.
Development. 2011 Aug;138(16):3377-86. doi: 10.1242/dev.065706. Epub 2011 Jul 13.
Nuclear shape is different in stem cells and differentiated cells and reflects important changes in the mechanics of the nuclear envelope (NE). The current framework emphasizes the key role of the nuclear lamina in nuclear mechanics and its alterations in disease. Whether active stress controls nuclear deformations and how this stress interplays with properties of the NE to control NE dynamics is unclear. We address this in the early Drosophila embryo, in which profound changes in NE shape parallel the transcriptional activation of the zygotic genome. We show that microtubule (MT) polymerization events produce the elementary forces necessary for NE dynamics. Moreover, large-scale NE deformations associated with groove formation require concentration of MT polymerization in bundles organized by Dynein. However, MT bundles cannot produce grooves when the farnesylated inner nuclear membrane protein Kugelkern (Kuk) is absent. Although it increases stiffness of the NE, Kuk also stabilizes NE deformations emerging from the collective effect of MT polymerization forces concentrated in bundles. Finally, we report that MT-induced NE deformations control the dynamics of chromatin and its organization at steady state. Thus, the NE is a dynamic organelle, fluctuations of which increase chromatin dynamics. We propose that such mechanical regulation of chromatin dynamics by MTs might be important for gene regulation.
核的形状在干细胞和分化细胞中是不同的,反映了核膜(NE)力学的重要变化。目前的框架强调核层粘连蛋白在核力学及其在疾病中的改变中的关键作用。主动应力是否控制核变形,以及这种应力如何与 NE 的特性相互作用以控制 NE 动力学尚不清楚。我们在早期果蝇胚胎中解决了这个问题,在胚胎中,NE 形状的深刻变化与合子基因组的转录激活平行。我们表明,微管(MT)聚合事件产生了 NE 动力学所需的基本力。此外,与槽形成相关的大规模 NE 变形需要由 Dynein 组织的束中的 MT 聚合集中。然而,当法呢基化的核内膜蛋白 Kugelkern(Kuk)缺失时,MT 束不能产生槽。尽管 Kuk 增加了 NE 的刚度,但它也稳定了从集中在束中的 MT 聚合力的集体效应中出现的 NE 变形。最后,我们报告说,MT 诱导的 NE 变形控制了染色质的动力学及其在稳定状态下的组织。因此,NE 是一个动态的细胞器,其波动会增加染色质的动力学。我们提出,MT 对染色质动力学的这种机械调节可能对基因调控很重要。