UMR 1355, Institut Sophia Agrobiotech, INRA, 400 route des Chappes, F-06903, Sophia-Antipolis, France; UMR 7254, CNRS, 400 route des Chappes, F-06903, Sophia-Antipolis, France; UMR 1355, Université de Nice Sophia-Antipolis, 400 route des Chappes, F-06903, Sophia-Antipolis, France.
New Phytol. 2015 Jan;205(1):202-15. doi: 10.1111/nph.13073. Epub 2014 Sep 29.
The spindle assembly checkpoint (SAC) is a refined surveillance mechanism which ensures that chromosomes undergoing mitosis do not segregate until they are properly attached to the spindle microtubules (MT). The SAC has been extensively studied in metazoans and yeast, but little is known about its role in plants. We identified proteins interacting with a MT-associated protein MAP65-3, which plays a critical role in organising mitotic MT arrays, and carried out a functional analysis of previously and newly identified SAC components. We show that Arabidopsis SAC proteins BUB3.1, MAD2, BUBR1/MAD3s and BRK1 interact with each other and with MAP65-3. We found that two BUBR1/MAD3s interacted specifically at centromeres. When stably expressed in Arabidopsis, BRK1 localised to the kinetochores during all stages of the mitotic cell cycle. Early in mitosis, BUB3.1 and BUBR1/MAD3.1 localise to the mitotic spindle, where MAP65-3 organises spindle MTs. A double-knockout mad3.1 mad3.2 mutant presented spindle MT abnormalities, chromosome misalignments on the metaphase plate and the production of lagging chromosomes and micronuclei during mitosis. We conclude that BRK1 and BUBR1/MAD3-related proteins play a key role in ensuring faithful chromosome segregation during mitosis and that their interaction with MAP65-3 may be important for the regulation of MT-chromosome attachment.
纺锤体装配检查点(SAC)是一种精细的监控机制,可确保有丝分裂的染色体在正确连接到纺锤体微管(MT)之前不会分离。SAC 在后生动物和酵母中得到了广泛的研究,但对其在植物中的作用知之甚少。我们鉴定了与 MT 相关蛋白 MAP65-3 相互作用的蛋白质,MAP65-3 在构建有丝分裂 MT 阵列中起着关键作用,并对先前和新鉴定的 SAC 成分进行了功能分析。我们表明,拟南芥 SAC 蛋白 BUB3.1、MAD2、BUBR1/MAD3 和 BRK1 相互作用,并且与 MAP65-3 相互作用。我们发现两个 BUBR1/MAD3 特异性地在着丝粒处相互作用。当在拟南芥中稳定表达时,BRK1 在有丝分裂细胞周期的所有阶段都定位于动粒。在有丝分裂早期,BUB3.1 和 BUBR1/MAD3.1 定位于有丝分裂纺锤体,MAP65-3 在此处组织纺锤体 MT。mad3.1 mad3.2 双敲除突变体表现出纺锤体 MT 异常、中期板上染色体错位以及有丝分裂过程中滞后染色体和微核的产生。我们得出结论,BRK1 和 BUBR1/MAD3 相关蛋白在确保有丝分裂中染色体的正确分离方面起着关键作用,并且它们与 MAP65-3 的相互作用可能对 MT-染色体连接的调节很重要。