Fang Zongxi Center, MoE Key Laboratory of Marine Genetics and Breeding, College of Marine Life Sciences, Ocean University of China, Qingdao 266003, China.
Laoshan Laboratory, Qingdao 266237, China.
Biomolecules. 2023 Feb 2;13(2):283. doi: 10.3390/biom13020283.
Dual-specificity tyrosine-(Y)-phosphorylation-regulated kinase 1 (DYRK1) encodes a conserved protein kinase that is indispensable to neuron development. However, whether DYRK1 possesses additional functions apart from kinase function remains poorly understood. In this study, we firstly demonstrated that the C-terminal of ascidian DYRK1 (CrDYRK1) showed transcriptional activation activity independent of its kinase function. The transcriptional activation activity of CrDYRK1 could be autoinhibited by a repression domain in the N-terminal. More excitingly, both activation and repression domains were retained in HsDYRK1A in humans. The genes, activated by the activation domain of HsDYRK1A, are mainly involved in ion transport and neuroactive ligand-receptor interaction. We further found that numerous mutation sites relevant to the -related intellectual disability syndrome locate in the C-terminal of HsDYRK1A. Then, we identified several specific DNA motifs in the transcriptional regulation region of those activated genes. Taken together, we identified a conserved transcription activation domain in DYRK1 in urochordates and vertebrates. The activation is independent of the kinase activity of DYRK1 and can be repressed by its own N-terminal. Transcriptome and mutation data indicate that the transcriptional activation ability of HsDYRK1A is potentially involved in synaptic transmission and neuronal function related to the intellectual disability syndrome.
双特异性酪氨酸-(Y)-磷酸化调节激酶 1(DYRK1)编码一种保守的蛋白激酶,对神经元发育是不可或缺的。然而,除了激酶功能之外,DYRK1 是否具有其他功能仍知之甚少。在这项研究中,我们首先证明了海鞘 DYRK1(CrDYRK1)的 C 端具有独立于其激酶功能的转录激活活性。CrDYRK1 的转录激活活性可以被 N 端的抑制域自动抑制。更令人兴奋的是,人类的 HsDYRK1A 保留了激活和抑制结构域。被 HsDYRK1A 激活结构域激活的基因主要参与离子转运和神经活性配体-受体相互作用。我们进一步发现,与相关智力残疾综合征相关的许多突变位点位于 HsDYRK1A 的 C 端。然后,我们在这些被激活基因的转录调控区域中鉴定了几个特定的 DNA 基序。总之,我们在尾索动物和脊椎动物中鉴定了 DYRK1 中的一个保守转录激活结构域。这种激活不依赖于 DYRK1 的激酶活性,并且可以被其自身的 N 端抑制。转录组和突变数据表明,HsDYRK1A 的转录激活能力可能与智力残疾综合征相关的突触传递和神经元功能有关。