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The novel functions of kinesin motor proteins in plants

机译:驱动蛋白运动蛋白在植物中的新功能

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Kinesin superfamily proteins are important microtubule-based motor proteins with a kinesin motor domain that is conserved among all eukaryotic organisms. They are responsible for unidirectionally transporting various cargos, including membranous organelles, protein complexes, and mRNAs. They also play critical roles in mitosis, morphogenesis, and signal transduction. Most kinesins in plants are evolutionarily divergent from their counterparts in animals and fungi. The mitotic kinesins in the plant kinesin-5 and kinesin-14 subfamilies appear to be similar to those in fungi and animals. However, others with nonmotor sequences are unique to plants. The kinesins affect microtubule organization, organelle distribution, vesicle transport, and cellulose microfibril order. Ultimately, plant kinesins contribute directly or indirectly to cell division and cell growth in various tissues. Here, we review a novel function of kinesins with transcription activation activity in regulating gibberellin biosynthesis and cell growth. These findings will open exciting new areas of kinesin research.
机译:驱动蛋白超家族蛋白是重要的基于微管的运动蛋白,具有在所有真核生物中都保守的驱动蛋白运动域。它们负责单向运输各种货物,包括膜细胞器,蛋白质复合物和mRNA。它们在有丝分裂,形态发生和信号转导中也起着关键作用。植物中大多数驱动蛋白与动物和真菌中的驱动蛋白在进化上是不同的。植物kinesin-5和kinesin-14亚家族中的有丝分裂驱动蛋白似乎与真菌和动物中的类似。但是,其他具有非运动序列的植物是植物特有的。驱动蛋白影响微管的组织,细胞器分布,囊泡运输和纤维素微纤维秩序。最终,植物驱动蛋白直接或间接地促进各种组织中的细胞分裂和细胞生长。在这里,我们综述了具有转录激活活性的驱动蛋白在调节赤霉素生物合成和细胞生长中的新功能。这些发现将开辟激动人心的驱动蛋白研究新领域。

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