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Mutational spectrum at GATA1 provides insights into mutagenesis and leukemogenesis in Down syndrome

机译:GATA1的突变谱提供了唐氏综合征诱变和白血病发生的见解

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摘要

Down syndrome (DS) children have a unique genetic susceptibility to develop leukemia, in particular, acute megakaryo-cytic leukemia (AMkL) associated with somatic GATA1 mutations. The study of this genetic susceptibility with the use of DS as a model of leukemogenesis has broad applicability to the understanding of leukemia in children overall. On the basis of the role of GATA1 mutations in DS AMkL, we analyzed the mutational spectrum of GATA1 mutations to begin elucidating possible mechanisms by which these sequence alterations arise. Mutational analysis revealed a predominance of small insertion/deletion, duplication, and base substitution mutations, including G:OT:A, G:OA:T, and A:T>G:C. This mutational spectrum points to potential oxidative stress and aberrant folate metabolism secondary to genes on chromosome 21 (eg, cystathionine-fi-synthase, superoxide dismutase) as potential causes of GATA1 mutations. Furthermore, DNA repair capacity evaluated in DS and non-DS patient samples provided evidence that the base excision repair pathway is compromised in DS tissues, suggesting that inability to repair DNA damage also may play a critical role in the unique susceptibility of DS children to develop leukemia. A model of leukemogenesis in DS is proposed in which mutagenesis is driven by cystathionine-beta-synthase overexpression and altered folate homeostasis that becomes fixed as the ability to repair DNA damage is compromised.
机译:唐氏综合症(DS)儿童具有独特的遗传易感性,易患白血病,尤其是与体细胞GATA1突变相关的急性巨核细胞白血病(AMkL)。使用DS作为白血病发生的模型来研究这种遗传易感性,对了解儿童整体白血病具有广泛的适用性。基于DS AMkL中GATA1突变的作用,我们分析了GATA1突变的突变谱,以阐明这些序列改变的可能机制。突变分析显示,小插入/缺失,重复和碱基取代突变占优势,包括G:OT:A,G:OA:T和A:T> G:C。该突变谱表明潜在的氧化应激和叶酸代谢异常,是继21号染色体上的基因(例如胱硫醚-fi-合酶,超氧化物歧化酶)之后继发的GATA1突变的潜在原因。此外,在DS和非DS患者样本中评估的DNA修复能力提供了证据,表明DS组织中基础切除修复途径受到损害,这表明无法修复DNA损伤也可能在DS儿童发育的独特易感性中起关键作用。白血病。提出了DS中的白血病发生模型,其中诱变作用由胱硫醚-β-合酶的过表达和改变的叶酸稳态引起,该缺陷随着修复DNA损伤的能力受损而变得固定。

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