Department of Plant Biotechnology and Bioinformatics, Ghent University, 9052 Ghent, Belgium.
VIB-UGent Center for Plant Systems Biology, 9052 Ghent, Belgium.
Plant Physiol. 2019 Jul;180(3):1389-1405. doi: 10.1104/pp.18.01515. Epub 2019 May 16.
Aurora kinases are key regulators of mitosis. Multicellular eukaryotes generally possess two functionally diverged types of Aurora kinases. In plants, including Arabidopsis (), these are termed α- and β-Auroras. As the functional specification of Aurora kinases is determined by their specific interaction partners, we initiated interactomics analyses using both Arabidopsis α-Aurora kinases (AUR1 and AUR2). Proteomics results revealed that TPX2-LIKE PROTEINS2 and 3 (TPXL2/3) prominently associated with α-Auroras, as did the conserved TPX2 to a lower degree. Like TPX2, TPXL2 and TPXL3 strongly activated the AUR1 kinase but exhibited cell-cycle-dependent localization differences on microtubule arrays. The separate functions of TPX2 and TPXL2/3 were also suggested by their different influences on AUR1 localization upon ectopic expressions. Furthermore, genetic analyses showed that TPXL3, but not TPX2 and TPXL2, acts nonredundantly to enable proper embryo development. In contrast to vertebrates, plants have an expanded TPX2 family and these family members have both redundant and unique functions. Moreover, as neither TPXL2 nor TPXL3 contains the C-terminal Kinesin-5 binding domain present in the canonical TPX2, the targeting and activity of this kinesin must be organized differently in plants.
极光激酶是有丝分裂的关键调节因子。多细胞真核生物通常具有两种功能上不同的极光激酶类型。在植物中,包括拟南芥(Arabidopsis),这些被称为α-和β-极光激酶。由于极光激酶的功能特性取决于其特定的相互作用伙伴,我们使用拟南芥α-极光激酶(AUR1 和 AUR2)启动了相互作用组学分析。蛋白质组学结果表明,TPX2 样蛋白 2 和 3(TPXL2/3)与 α-极光激酶明显相关,保守的 TPX2 则相关性较低。与 TPX2 一样,TPXL2 和 TPXL3 强烈激活 AUR1 激酶,但在微管阵列上的细胞周期依赖性定位存在差异。TPX2 和 TPXL2/3 的分离功能也通过它们在外源表达时对 AUR1 定位的不同影响得到了提示。此外,遗传分析表明,TPXL3 而非 TPX2 和 TPXL2 非冗余地发挥作用,以确保胚胎的正常发育。与脊椎动物不同,植物具有扩展的 TPX2 家族,这些家族成员具有冗余和独特的功能。此外,由于既没有 TPXL2 也没有 TPXL3 包含存在于典型 TPX2 中的 C 末端驱动蛋白 5 结合域,该驱动蛋白的靶向和活性在植物中必须以不同的方式进行组织。