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Drosophila melanogaster MNK/Chk2 and p53 Regulate Multiple DNA Repair and Apoptotic Pathways following DNA Damage

机译:果蝇MNK / Chk2和p53调节DNA损伤后的多种DNA修复和凋亡途径。

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We have used genetic and microarray analysis to determine how ionizing radiation (IR) induces p53-dependent transcription and apoptosis in Drosophila melanogaster. IR induces MNK/Chk2-dependent phosphorylation of p53 without changing p53 protein levels, indicating that p53 activity can be regulated without an Mdm2-like activity. In a genome-wide analysis of IR-induced transcription in wild-type and mutant embryos, all IR-induced increases in transcript levels required both p53 and the Drosophila Chk2 homolog MNK. Proapoptotic targets of p53 include hid, reaper, sickle, and the tumor necrosis factor family member Eiger. Overexpression of Eiger is sufficient to induce apoptosis, but mutations in Eiger do not block IR-induced apoptosis. Animals heterozygous for deletions that span the reaper, sickle, and hid genes exhibited reduced IR-dependent apoptosis, indicating that this gene complex is haploinsufficient for induction of apoptosis. Among the genes in this region, hid plays a central, dosage-sensitive role in IR-induced apoptosis. p53 and MNK/Chk2 also regulate DNA repair genes, including two components of the nonhomologous end-joining repair pathway, Ku70 and Ku80. Our results indicate that MNK/Chk2-dependent modification of Drosophila p53 activates a global transcriptional response to DNA damage that induces error-prone DNA repair as well as intrinsic and extrinsic apoptosis pathways.
机译:我们已经使用遗传和微阵列分析来确定电离辐射(IR)如何诱导果蝇(Drosophila melanogaster)中p53依赖性转录和细胞凋亡。 IR诱导p53的MNK / Chk2依赖性磷酸化而不改变p53蛋白的水平,表明p53的活性可以调节而没有Mdm2样的活性。在全基因组中IR诱导的野生型和突变型胚胎转录的全基因组分析中,所有IR诱导的转录水平增加都需要p53和 Drosophila Chk2同源MNK。 p53的凋亡靶标包括 hid reaper 镰刀和肿瘤坏死因子家族成员 Eiger Eiger 的过表达足以诱导细胞凋亡,但是 Eiger 的突变并不能阻止IR诱导的细胞凋亡。杂合子的跨收割者镰刀 hid 基因缺失的动物表现出减少的IR依赖性细胞凋亡,表明该基因复合物不能单倍诱导细胞凋亡。在该区域的基因中, hid 在IR诱导的细胞凋亡中起着重要的剂量敏感性作用。 p53和MNK / Chk2还调节DNA修复基因,包括非同源末端连接修复途径的两个成分,即 Ku70 Ku80 。我们的结果表明,果蝇p53的MNK / Chk2依赖性修饰激活了对DNA损伤的全局转录反应,从而诱导了容易出错的DNA修复以及内在和外在的细胞凋亡途径。

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