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Mlp1 Acts as a Mitotic Scaffold to Spatially Regulate Spindle Assembly Checkpoint Proteins in Aspergillus nidulans

机译:Mlp1充当有丝分裂支架,以空间调节构巢曲霉中的纺锤体装配检查点蛋白。

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摘要

During open mitosis several nuclear pore complex (NPC) proteins have mitotic specific localizations and functions. We find that the Aspergillus nidulans Mlp1 NPC protein has previously unrealized mitotic roles involving spatial regulation of spindle assembly checkpoint (SAC) proteins. In interphase, An-Mlp1 tethers the An-Mad1 and An-Mad2 SAC proteins to NPCs. During a normal mitosis, An-Mlp1, An-Mad1, and An-Mad2 localize similarly on, and around, kinetochores until telophase when they transiently localize near the spindle but not at kinetochores. During SAC activation, An-Mlp1 remains associated with kinetochores in a manner similar to An-Mad1 and An-Mad2. Although An-Mlp1 is not required for An-Mad1 kinetochore localization during early mitosis, it is essential to maintain An-Mad1 in the extended region around kinetochores in early mitosis and near the spindle in telophase. Our data are consistent with An-Mlp1 being part of a mitotic spindle matrix similar to its Drosophila orthologue and demonstrate that this matrix localizes SAC proteins. By maintaining SAC proteins near the mitotic apparatus, An-Mlp1 may help monitor mitotic progression and coordinate efficient mitotic exit. Consistent with this possibility, An-Mad1 and An-Mlp1 redistribute from the telophase matrix and associate with segregated kinetochores when mitotic exit is prevented by expression of nondegradable cyclin B.
机译:在开放有丝分裂过程中,一些核孔复合体(NPC)蛋白具有有丝分裂特异性定位和功能。我们发现构巢曲霉Mlp1 NPC蛋白以前未实现的有丝分裂作用,涉及纺锤体装配检查点(SAC)蛋白的空间调节。在相间,An-Mlp1将An-Mad1和An-Mad2 SAC蛋白束缚在NPC上。在正常的有丝分裂过程中,An-Mlp1,An-Mad1和An-Mad2类似地定位在动粒体上和周围,直到末期,当它们短暂地定位在纺锤体附近而不是动粒体上时。在SAC激活过程中,An-Mlp1仍以类似于An-Mad1和An-Mad2的方式与动植物相关联。尽管在早期有丝分裂期间An-Mad1线粒体定位不需要An-Mlp1,但必须在早期有丝分裂的动植物体周围的延伸区域和末期的纺锤体附近维持An-Mad1。我们的数据与An-Mlp1是类似于其果蝇直向同源物的有丝分裂纺锤体基质的一部分一致,并证明该基质定位SAC蛋白。通过使SAC蛋白保持在有丝分裂器附近,An-Mlp1可以帮助监测有丝分裂的进程并协调有效的有丝分裂退出。与这种可能性一致,当通过不可降解的细胞周期蛋白B的表达阻止有丝分裂退出时,An-Mad1和An-Mlp1从末期基质重新分布,并与分离的动植物结合。

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