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Arabidopsis thaliana MLK3, a Plant-Specific Casein Kinase 1, Negatively Regulates Flowering and Phosphorylates Histone H3 In Vitro

机译:Arabidopsis Thaliana MLK3,一种植物特异性酪蛋白激酶1,负调节开花和磷酸化合物组蛋白H3体外

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摘要

Arabidopsis thaliana MUT9-LIKE KINASES (MLKs), a family of the plant-specific casein kinase 1 (CK1), have been implicated collectively in multiple biological processes including flowering. Three of the four MLKs (MLK1/2/4) have been characterized, however, little is known about MLK3, the most divergent member of MLKs. Here, we demonstrated that disruption of MLK3 transcript in mlk3 caused early flowering with retarded leaf growth under long-day conditions. In vitro kinase assay showed the nuclear protein MLK3 phosphorylated histone 3 at threonine 3 (H3T3) and mutation of a conserved residue (K146R) abolished the catalytic activity. Ectopic expression of MLK3 but not MLK3(K146R) rescued the morphological defects of mlk3, indicating that an intact MLK3 is critical for maintaining proper flowering time. Transcriptomic analysis revealed that the floral repressor FLOWERING LOCUS C (FLC) was down-regulated significantly in mlk3, suggesting that MLK3 negatively regulates flowering. Hence, MLK3 plays a role in repressing the transition from vegetative to reproductive phase in A. thaliana. This study sheds light on the delicate control of flowering time by A. thaliana CK1 specific to the plant kingdom.
机译:拟南芥Mut9样激酶(MLKs),植物特异性酪蛋白激酶1(CK1),在包括开花的多种生物学过程中,共同涉及。然而,已经表征了四种MLK(MLK1 / 2/4)中的三个关于MLK3,MLK的最分散成员几乎是知之甚少。在这里,我们证明了MLK3中的MLK3转录物中断引起的早期开花,在漫长的环境条件下具有迟钝的叶片生长。体外激酶测定显示苏氨酸3(H3T3)的核蛋白MLK3磷酸化组蛋白3,并且保守残余物(K146R)的突变废除了催化活性。 MLK3但不是MLK3(K146R)的异位表达拯救了MLK3的形态缺陷,表明完整的MLK3对于保持适当的开花时间至关重要。转录组分析表明,在MLK3中,花卉阻遏物开花基因座C(FLC)显着下调,表明MLK3负调节开花。因此,MLK3在镇上抑制从植物生殖期的转变中起作用。这项研究阐明了由特定于植物王国特定于植物CK1的开花时间的微妙控制。

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