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The FHA domain determines Drosophila Chk2/Mnk localization to key mitotic structures and is essential for early embryonic DNA damage responses

机译:FHA结构域决定果蝇Chk2 / Mnk在关键有丝分裂结构中的定位,对于早期胚胎DNA损伤反应至关重要

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摘要

DNA damage responses, including mitotic centrosome inactivation, cell-cycle delay in mitosis, and nuclear dropping from embryo cortex, maintain genome integrity in syncytial Drosophila embryos. A conserved signaling kinase, Chk2, known as Mnk/Loki, is essential for the responses. Here we demonstrate that functional EGFP-Mnk expressed from a transgene localizes to the nucleus, centrosomes, interkinetochore/centromere region, midbody, and pseudocleavage furrows without DNA damage and in addition forms numerous foci/aggregates on mitotic chromosomes upon DNA damage. We expressed EGFP-tagged Mnk deletion or point mutation variants and investigated domain functions of Mnk in vivo. A triple mutation in the phosphopeptide-binding site of the forkhead-associated (FHA) domain disrupted normal Mnk localization except to the nucleus. The mutation also disrupted Mnk foci formation on chromosomes upon DNA damage. FHA mutations and deletion of the SQ/TQ-cluster domain (SCD) abolished Mnk transphosphorylations and autophosphorylations, indicative of kinase activation after DNA damage. A potent NLS was found at the C-terminus, which is required for normal Mnk function. We propose that the FHA domain in Mnk plays essential dual functions in mediating embryonic DNA damage responses by means of its phosphopeptide-binding ability: activating Mnk in the nucleus upon DNA damage and recruiting Mnk to multiple subcellular structures independently of DNA damage.
机译:DNA损伤反应(包括有丝分裂中心体失活,有丝分裂中的细胞周期延迟以及胚胎皮质的核脱落)保持了合胞体果蝇胚胎的基因组完整性。保守的信号激酶Chk2(称为Mnk / Loki)对于反应至关重要。在这里,我们证明了从转基因表达的功能性EGFP-Mnk定位于细胞核,中心体,线粒体/着丝粒区域,中体和假卵裂沟,而没有DNA损伤,此外在DNA损伤时在有丝分裂染色体上形成了许多病灶/聚集体。我们表达了EGFP标签的Mnk缺失或点突变变体,并研究了Mnk在体内的域功能。叉头相关(FHA)域的磷酸肽结合位点的三重突变破坏了正常的Mnk定位,除了细胞核。突变还破坏了DNA损伤后染色体上Mnk灶的形成。 FHA突变和SQ / TQ簇结构域(SCD)的缺失消除了Mnk转磷酸化和自磷酸化,表明DNA损伤后激酶活化。在C端发现了有效的NLS,这是正常Mnk功能所必需的。我们提出,Mnk中的FHA结构域通过其磷酸肽结合能力在介导胚胎DNA损伤应答中起着至关重要的双重作用:DNA损伤时激活细胞核中的Mnk,并独立于DNA损伤而将Mnk募集到多个亚细胞结构中。

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