Laboratory of Genetics, University of Wisconsin-Madison, Madison, WI 53706, USA.
Department of Biosciences and Bioengineering, Indian Institute of Technology Bombay, Mumbai 400076, Maharashtra, India.
Development. 2023 Feb 15;150(4). doi: 10.1242/dev.200564.
We show that the zebrafish maternal-effect mutation too much information (tmi) corresponds to zebrafish prc1-like (prc1l), which encodes a member of the MAP65/Ase1/PRC1 family of microtubule-associated proteins. Embryos from tmi homozygous mutant mothers display cytokinesis defects in meiotic and mitotic divisions in the early embryo, indicating that Prc1l has a role in midbody formation during cell division at the egg-to-embryo transition. Unexpectedly, maternal Prc1l function is also essential for the reorganization of vegetal pole microtubules required for the segregation of dorsal determinants. Whereas Prc1 is widely regarded to crosslink microtubules in an antiparallel conformation, our studies provide evidence for an additional function of Prc1l in the bundling of parallel microtubules in the vegetal cortex of the early embryo during cortical rotation and prior to mitotic cycling. These findings highlight common yet distinct aspects of microtubule reorganization that occur during the egg-to-embryo transition, driven by maternal product for the midbody component Prc1l and required for embryonic cell division and pattern formation.
我们发现,斑马鱼母体效应突变过多信息(tmi)对应于斑马鱼 PRC1 样(prc1l),它编码微管相关蛋白 MAP65/Ase1/PRC1 家族的成员。来自 tmi 纯合突变母体的胚胎在早期胚胎的减数分裂和有丝分裂中表现出胞质分裂缺陷,表明 Prc1l 在卵到胚胎过渡期间的细胞分裂中在中体形成中起作用。出乎意料的是,母体 Prc1l 功能对于植物极微管的重排也是必需的,植物极微管的重排对于背侧决定因素的分离是必需的。尽管 Prc1 被广泛认为以反平行构象交联微管,但我们的研究提供了证据表明 Prc1l 在皮质旋转期间和有丝分裂循环之前在早期胚胎的植物皮质中平行微管的捆绑中具有附加功能。这些发现强调了在卵到胚胎过渡期间发生的微管重排的共同但又独特的方面,这些重排由中体成分 Prc1l 的母体产物驱动,对于胚胎细胞分裂和模式形成是必需的。