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平叶水韭 SUN2 蛋白调控着微管组织中心与核膜的结合并促进纺锤体装配过程中的染色体排列。

Physcomitrium patens SUN2 Mediates MTOC Association with the Nuclear Envelope and Facilitates Chromosome Alignment during Spindle Assembly.

机构信息

Department of Biological Science, Graduate School of Science, Nagoya University, Furo-cho, Chikusa-ku, Nagoya, 464-8602 Japan.

Sugashima Marine Biological Laboratory, Graduate School of Science, Nagoya University, 429-63 Sugashima-cho, Toba, 517-0004 Japan.

出版信息

Plant Cell Physiol. 2023 Sep 15;64(9):1106-1117. doi: 10.1093/pcp/pcad074.

Abstract

Plant cells lack centrosomes and instead utilize acentrosomal microtubule organizing centers (MTOCs) to rapidly increase the number of microtubules at the onset of spindle assembly. Although several proteins required for MTOC formation have been identified, how the MTOC is positioned at the right place is not known. Here, we show that the inner nuclear membrane protein SUN2 is required for MTOC association with the nuclear envelope (NE) during mitotic prophase in the moss Physcomitrium patens. In actively dividing protonemal cells, microtubules accumulate around the NE during prophase. In particular, regional MTOC is formed at the apical surface of the nucleus. However, microtubule accumulation around the NE was impaired and apical MTOCs were mislocalized in sun2 knockout cells. Upon NE breakdown, the mitotic spindle was assembled with mislocalized MTOCs. However, completion of chromosome alignment in the spindle was delayed; in severe cases, the chromosome was transiently detached from the spindle body. SUN2 tended to localize to the apical surface of the nucleus during prophase in a microtubule-dependent manner. Based on these results, we propose that SUN2 facilitates the attachment of microtubules to chromosomes during spindle assembly by localizing microtubules to the NE. MTOC mispositioning was also observed during the first division of the gametophore tissue. Thus, this study suggests that microtubule-nucleus linking, a well-known function of SUN in animals and yeast, is conserved in plants.

摘要

植物细胞缺乏中心体,而是利用无中心体微管组织中心(MTOC)在纺锤体组装开始时快速增加微管的数量。尽管已经鉴定出几种形成 MTOC 所需的蛋白质,但 MTOC 如何定位在正确的位置尚不清楚。在这里,我们表明,内核膜蛋白 SUN2 在苔藓 Physcomitrium patens 的有丝分裂前期对于 MTOC 与核膜(NE)的关联是必需的。在活跃分裂的原丝体细胞中,微管在前期积累在 NE 周围。特别是,区域性 MTOC 在核的顶端表面形成。然而,SUN2 敲除细胞中微管在 NE 周围的积累受损,顶端 MTOC 定位错误。在 NE 破裂后,有丝分裂纺锤体与错位的 MTOC 组装在一起。然而,染色体在纺锤体中的排列完成被延迟;在严重的情况下,染色体暂时从纺锤体主体上脱离。SUN2 在前期倾向于以微管依赖性方式定位于核的顶端表面。基于这些结果,我们提出 SUN2 通过将微管定位到 NE 来促进纺锤体组装过程中微管与染色体的附着。在配子组织的第一次分裂过程中也观察到了 MTOC 错位。因此,这项研究表明,SUN 在动物和酵母中的微管-核连接这一众所周知的功能在植物中是保守的。

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