Umea Plant Science Centre, Department of Forest Genetics and Plant Physiology, Swedish University of Agricultural Sciences, 90183 Umea, Sweden.
Umea Plant Science Centre, Department of Forest Genetics and Plant Physiology, Swedish University of Agricultural Sciences, 90183 Umea, Sweden
Plant Cell. 2019 Jul;31(7):1446-1465. doi: 10.1105/tpc.19.00033. Epub 2019 Apr 25.
Currently one-third of the proteins encoded by the Arabidopsis () genome are of unknown function. Some of these unknown proteins are likely to be involved in uncharacterized vital biological processes. Evolutionarily conserved single copy genes in flowering plants have been shown to be enriched in essential housekeeping functions. This together with publicly available gene expression data allows for a focused search for uncharacterized essential genes. Here we identify an essential single copy gene called () in Arabidopsis. We show that is predominantly expressed in actively dividing cells and performs essential functions in seed development and root meristem maintenance. Cell cycle tracking using 5-ethynyl-2'-deoxyuridine staining and fluorescent cell cycle markers together with the increased size of nucleolus and nucleus in mutants indicate that is required for cell cycle progression through the S or G2 phases. Intriguingly, OPNR localizes to the nuclear envelope and mitochondria. Furthermore, the nuclear envelope localization of OPNR is dependent on its interaction with nuclear inner membrane Sad1/UNC-84 (SUN) domain proteins SUN1 and SUN2. Taken together our results open a line of investigation into an evolutionarily conserved essential cellular process occurring in both the nuclear envelopes and mitochondria of dividing cells.
目前,拟南芥基因组编码的蛋白质中有三分之一的功能未知。这些未知蛋白中的一些可能参与了尚未阐明的重要生物过程。已证实,在开花植物中进化上保守的单拷贝基因富集了重要的管家功能。这与可公开获得的基因表达数据一起,可用于对未阐明的必需基因进行有针对性的搜索。在这里,我们在拟南芥中鉴定出一个必需的单拷贝基因,称为 。我们表明, 主要在活跃分裂的细胞中表达,并在种子发育和根分生组织维持中发挥必需功能。使用 5-乙炔基-2'-脱氧尿苷染色和荧光细胞周期标记进行细胞周期追踪,以及 突变体中核仁与细胞核增大,表明 是细胞周期通过 S 或 G2 期所必需的。有趣的是,OPNR 定位于核膜和线粒体。此外,OPNR 的核膜定位依赖于其与核内膜 Sad1/UNC-84(SUN)结构域蛋白 SUN1 和 SUN2 的相互作用。总之,我们的结果为在有丝分裂细胞的核膜和线粒体中发生的一个进化上保守的必需细胞过程的研究开辟了一条途径。