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Cellular and clinical impact of haploinsufficiency for genes involved in ATR signaling

机译:单倍剂量不足对参与ATR信号传导的基因的细胞和临床影响

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摘要

Ataxia telangiectasia and Rad3-related (ATR) protein, a kinase that regulates a DNA damage-response pathway, is mutated in ATR-Seckel syndrome (ATR-SS), a disorder characterized by severe microcephaly and growth delay. Impaired ATR signaling is also observed in cell lines from additional disorders characterized by microcephaly and growth delay, including non-ATR-SS, Nijmegen breakage syndrome, and MCPH1 (microcephaly, primary autosomal recessive, 1)-dependent primary microcephaly. Here, we examined ATR-pathway function in cell lines from three haploinsufficient contiguous gene-deletion disorders-a subset of blepharophimosis-ptosis-epicanthus inversus syndrome, Miller-Dieker lissencephaly syndrome, and Williams-Beuren syndrome-in which the deleted region encompasses ATR, RPA1, and RFC2, respectively. These three genes function in ATR signaling. Cell lines from these disorders displayed an impaired ATR-dependent DNA damage response. Thus, we describe ATR signaling as a pathway unusually sensitive to haploinsufficiency and identify three further human disorders displaying a defective ATR-dependent DNA damage response. The striking correlation of ATR-pathway dysfunction with the presence of microcephaly and growth delay strongly suggests a causal relationship.
机译:共济失调毛细血管扩张症和Rad3相关(ATR)蛋白,一种调节DNA损伤反应途径的激酶,在ATR-Seckel综合征(ATR-SS)中发生突变,该疾病以严重的小头畸形和生长延迟为特征。在其他以小头畸形和生长延迟为特征的疾病中,也可在细胞系中观察到ATR信号受损,包括非ATR-SS,奈梅亨断裂综合征和MCPH1(小头畸形,原发性常染色体隐性,1)依赖性原发性小头畸形。在这里,我们检查了来自三个单倍不足的连续基因缺失疾病(一种眼睑下垂-上睑下垂-picpichus inversus综合征,Miller-Dieker lissencephaly综合征和Williams-Beuren综合征的子集)的细胞系中的ATR途径功能,其中缺失区域包括ATR ,RPA1和RFC2。这三个基因在ATR信号传导中起作用。这些疾病的细胞系显示出受损的ATR依赖性DNA损伤反应。因此,我们将ATR信号描述为对单倍剂量不足异常敏感的途径,并鉴定出三个进一步的人类疾病,它们显示出有缺陷的ATR依赖性DNA损伤反应。 ATR通路功能障碍与小头畸形和生长延迟的惊人相关性强烈暗示了因果关系。

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