Takemiya Atsushi, Ariyoshi Chie, Shimazaki Ken-Ichiro
Department of Biology, Faculty of Science, Kyushu University, Hakozaki, Fukuoka 812-8581, Japan.
Plant Physiol. 2009 May;150(1):144-56. doi: 10.1104/pp.109.135335. Epub 2009 Mar 27.
Protein phosphatase 1 (PP1) is a eukaryotic serine/threonine protein phosphatase, and mediates diverse cellular processes in animal systems via the association of a catalytic subunit (PP1c) with multiple regulatory subunits that determine the catalytic activity, the subcellular localization, and the substrate specificity. However, no regulatory subunit of PP1 has been identified in plants so far. In this study, we identified inhibitor-3 (Inh3) as a regulatory subunit of PP1 and characterized a functional role of Inh3 in Vicia faba and Arabidopsis (Arabidopsis thaliana). We found Inh3 as one of the proteins interacting with PP1c using a yeast two-hybrid system. Biochemical analyses demonstrated that Arabidopsis Inh3 (AtInh3) bound to PP1c via the RVxF motif of AtInh3, a consensus PP1c-binding sequence both in vitro and in vivo. AtInh3 inhibited the PP1c phosphatase activity in the nanomolar range in vitro. AtInh3 was localized in both the nucleus and cytoplasm, and it colocalized with Arabidopsis PP1c in these compartments. Disruption mutants of AtINH3 delayed the progression of early embryogenesis, arrested embryo development at the globular stage, and eventually caused embryo lethality. Furthermore, reduction of AtINH3 expression by RNA interference led to a decrease in fertility. Transformation of the lethal mutant of inh3 with wild-type AtINH3 restored the phenotype, whereas that with the AtINH3 gene having a mutation in the RVxF motif did not. These results define Inh3 as a regulatory subunit of PP1 in plants and suggest that Inh3 plays a crucial role in early embryogenesis in Arabidopsis.
蛋白磷酸酶1(PP1)是一种真核丝氨酸/苏氨酸蛋白磷酸酶,在动物系统中,它通过催化亚基(PP1c)与多个调节亚基的结合来介导多种细胞过程,这些调节亚基决定了催化活性、亚细胞定位和底物特异性。然而,到目前为止,尚未在植物中鉴定出PP1的调节亚基。在本研究中,我们鉴定出抑制剂-3(Inh3)作为PP1的调节亚基,并对Inh3在蚕豆和拟南芥中的功能作用进行了表征。我们使用酵母双杂交系统发现Inh3是与PP1c相互作用的蛋白之一。生化分析表明,拟南芥Inh3(AtInh3)通过AtInh3的RVxF基序与PP1c结合,该基序是体外和体内共有的PP1c结合序列。AtInh3在体外以纳摩尔范围抑制PP1c磷酸酶活性。AtInh3定位于细胞核和细胞质中,并与拟南芥PP1c在这些区室中共定位。AtINH3的破坏突变体延迟了早期胚胎发生的进程,使胚胎发育在球形期停滞,并最终导致胚胎致死。此外,通过RNA干扰降低AtINH3的表达导致育性下降。用野生型AtINH3转化inh3的致死突变体可恢复表型,而用RVxF基序发生突变的AtINH3基因转化则不能。这些结果将Inh3定义为植物中PP1的调节亚基,并表明Inh3在拟南芥早期胚胎发生中起关键作用。