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Genetic and regulatory mechanism of susceptibility to high-hyperdiploid acute lymphoblastic leukaemia at 10q21.2

机译:高二倍体急性淋巴细胞白血病在10q21.2的遗传和调控机制

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摘要

Despite high-hyperdiploid acute lymphoblastic leukaemia (HD-ALL) being the most common subgroup of paediatric ALL, its aetiology remains unknown. Genome-wide association studies have demonstrated association at 10q21.2. Here, we sought to determine how this region influences HD-ALL risk. We impute genotypes across the locus, finding the single nucleotide polymorphism rs7090445 highly associated with HD-ALL (P=1.54 × 10−38), and residing in a predicted enhancer element. We show this region physically interacts with the transcription start site of ARID5B, that alleles of rs7090445 have differential enhancer activity and influence RUNX3 binding. RUNX3 knock-down reduces ARID5B expression and rs7090445 enhancer activity. Individuals carrying the rs7090445-C risk allele also have reduced ARID5B expression. Finally, the rs7090445-C risk allele is preferentially retained in HD-ALL blasts consistent with inherited genetic variation contributing to arrest of normal lymphocyte development, facilitating leukaemic clonal expansion. These data provide evidence for a biological mechanism underlying hereditary risk of HD-ALL at 10q21.2.
机译:尽管高二倍体急性淋巴细胞白血病(HD-ALL)是小儿ALL的最常见亚组,但其病因仍然未知。全基因组关联研究已证明在10q21.2具有关联。在这里,我们试图确定该区域如何影响HD-ALL风险。我们在基因座上进行基因分型,发现与HD-ALL(P = 1.54×10 -38 )高度相关的单核苷酸多态性rs7090445,并位于预测的增强子元件中。我们显示该区域在物理上与ARID5B的转录起始位点相互作用,即rs7090445的等位基因具有不同的增强子活性并影响RUNX3结合。 RUNX3组合物减少ARID5B表达和rs7090445增强子活性。携带rs7090445-C风险等位基因的个体的ARID5B表达也降低。最后,rs7090445-C风险等位基因优先保留在HD-ALL原始细胞中,与遗传遗传变异相一致,有助于阻止正常淋巴细胞的发育,促进白血病的克隆扩增。这些数据为10q21.2发生HD-ALL遗传风险的生物学机制提供了证据。

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