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首页> 外文期刊>Proteome science >New interaction partners for Nek4.1 and Nek4.2 isoforms: from the DNA damage response to RNA splicing
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New interaction partners for Nek4.1 and Nek4.2 isoforms: from the DNA damage response to RNA splicing

机译:Nek4.1和Nek4.2亚型的新相互作用伙伴:从DNA损伤反应到RNA剪接

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Background Neks are serine-threonine kinases that are similar to NIMA, a protein found in Aspergillus nidulans which is essential for cell division. In humans there are eleven Neks which are involved in different biological functions besides the cell cycle control. Nek4 is one of the largest members of the Nek family and has been related to the primary cilia formation and in DNA damage response. However, its substrates and interaction partners are still unknown. In an attempt to better understand the role of Nek4, we performed an interactomics study to find new biological processes in which Nek4 is involved. We also described a novel Nek4 isoform which lacks a region of 46 amino acids derived from an insertion of an Alu sequence and showed the interactomics profile of these two Nek4 proteins. Results and discussion Isoform 1 and isoform 2 of Nek4 were expressed in human cells and after an immunoprecipitation followed by mass spectrometry, 474 interacting proteins were identified for isoform 1 and 149 for isoform 2 of Nek4. About 68% of isoform 2 potential interactors (102 proteins) are common between the two Nek4 isoforms. Our results reinforce Nek4 involvement in the DNA damage response, cilia maintenance and microtubule stabilization, and raise the possibility of new functional contexts, including apoptosis signaling, stress response, translation, protein quality control and, most intriguingly, RNA splicing. We show for the first time an unexpected difference between both Nek4 isoforms in RNA splicing control. Among the interacting partners, we found important proteins such as ANT3, Whirlin, PCNA, 14-3-3ε, SRSF1, SRSF2, SRPK1 and hNRNPs proteins. Conclusions This study provides new insights into Nek4 functions, identifying new interaction partners and further suggests an interesting difference between isoform 1 and isoform 2 of this kinase. Nek4 isoform 1 may have similar roles compared to other Neks and these roles are not all preserved in isoform 2. Besides, in some processes, both isoforms showed opposite effects, indicating a possible fine controlled regulation.
机译:背景技术Neks是类似于NIMA的丝氨酸-苏氨酸激酶,NIMA是在构巢曲霉中发现的一种蛋白质,对细胞分裂至关重要。在人类中,除了细胞周期控制外,还有11个Neks参与了不同的生物学功能。 Nek4是Nek家族最大的成员之一,与初级纤毛形成和DNA损伤反应有关。但是,它的底物和相互作用伙伴仍然未知。为了更好地了解Nek4的作用,我们进行了一项相互作用组学研究,以发现涉及Nek4的新生物学过程。我们还描述了一种新颖的Nek4亚型,该亚型缺少Alu序列插入产生的46个氨基酸区域,并显示了这两个Nek4蛋白的相互作用组学谱。结果与讨论Nek4的同工型1和同工型2在人细胞中表达,经过免疫沉淀和质谱分析后,鉴定出474种相互作用的蛋白,其中Nek4的同工型1和149的Nek4的同工型2。两个Nek4同工型之间共有约68%的同工型2潜在相互作用物(102种蛋白质)。我们的结果加强了Nek4在DNA损伤应答,纤毛维持和微管稳定中的作用,并增加了新功能范围的可能性,包括细胞凋亡信号转导,应激反应,翻译,蛋白质质量控​​制以及最有趣的是RNA剪接。我们首次显示了RNA剪接控制中两个Nek4亚型之间的意外差异。在相互作用的伙伴中,我们发现了重要的蛋白质,例如ANT3,Whirlin,PCNA,14-3-3ε,SRSF1,SRSF2,SRPK1和hNRNPs蛋白。结论这项研究提供了对Nek4功能的新见解,确定了新的相互作用伙伴,并进一步表明了该激酶同工型1和同工型2之间的有趣差异。与其他Neks相比,Nek4同工型1可能具有相似的作用,并且这些作用并非都保留在同工型2中。此外,在某些过程中,两种同工型均显示相反的作用,表明可能存在良好的调控作用。

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