Garcia-Molina Antoni, Xing Shuping, Huijser Peter
Department of Comparative Development and Genetics; Max Planck Institute for Plant Breeding Research; Cologne, Germany.
Plant Signal Behav. 2014;9(3):e28634. doi: 10.4161/psb.28634. Epub 2014 Apr 8.
Proteins harboring the kin17 domain (KIN17) constitute a family of well-conserved eukaryotic nuclear proteins involved in nucleic acid metabolism. In mammals, KIN17 orthologs contribute to DNA replication, RNA splicing, and DNA integrity maintenance. Recently, we reported a functional characterization of an Arabidopsis thaliana KIN17 homolog (AtKIN17) that uncovered a role for this protein in tuning physiological responses during copper (Cu) deficiency and oxidative stress. However, functions similar to those described in mammals may also be expected in plants given the conservation of functional domains in KIN17 orthologs. Here, we provide additional data consistent with the participation of AtKIN17 in controlling general plant growth and development, as well as in response to UV radiation. Furthermore, the Arabidopsis genome codes for a second homolog to KIN17, we referred to as KIN17-like-protein (KLP). KLP loss-of-function lines exhibited a reduced inhibition of root growth in response to copper excess and relatively elongated hypocotyls in etiolated seedlings. Altogether, our experimental data point to a general function of the kin17 domain proteins in plant growth and development.
含有kin17结构域(KIN17)的蛋白质构成了一类高度保守的真核细胞核蛋白家族,参与核酸代谢。在哺乳动物中,KIN17直系同源物参与DNA复制、RNA剪接和DNA完整性维持。最近,我们报道了拟南芥KIN17同源物(AtKIN17)的功能特性,揭示了该蛋白在调节铜(Cu)缺乏和氧化应激期间的生理反应中的作用。然而,鉴于KIN17直系同源物功能域的保守性,植物中可能也存在与哺乳动物中描述的功能类似的功能。在这里,我们提供了额外的数据,表明AtKIN17参与控制植物的一般生长和发育,以及对紫外线辐射的反应。此外,拟南芥基因组编码KIN17的第二个同源物,我们称之为KIN17样蛋白(KLP)。KLP功能缺失系在铜过量时对根生长的抑制作用减弱,在黄化幼苗中胚轴相对伸长。总之,我们的实验数据表明kin17结构域蛋白在植物生长和发育中具有一般功能。