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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Dysfunctional homologous recombination mediates genomic instability and progression in myeloma.
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Dysfunctional homologous recombination mediates genomic instability and progression in myeloma.

机译:功能异常的同源重组介导了骨髓瘤的基因组不稳定和进展。

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摘要

A prominent feature of most if not all cancers is a striking genetic instability, leading to ongoing accrual of mutational changes, some of which underlie tumor progression, including acquisition of invasiveness, drug resistance, and metastasis. Thus, the molecular basis for the generation of this genetic diversity in cancer cells has important implications in understanding cancer progression. Here we report that homologous recombination (HR) activity is elevated in multiple myeloma (MM) cells and leads to an increased rate of mutation and progressive accumulation of genetic variation over time. We demonstrate that the inhibition of HR activity in MM cells by small inhibitory RNA (siRNAs) targeting recombinase leads to significant reduction in the acquisition of new genetic changes in the genome and, conversely, the induction of HR activity leads to significant elevation in the number of new mutations over time and development of drug resistance in MM cells. These data identify dysregulated HR activityas a key mediator of DNA instability and progression of MM, with potential as a therapeutic target.
机译:大多数(如果不是全部)癌症的显着特征是惊人的遗传不稳定性,导致突变累积的不断累积,其中一些是肿瘤进展的基础,包括侵袭性,耐药性和转移的获得。因此,在癌细胞中产生这种遗传多样性的分子基础对理解癌症进展具有重要意义。在这里,我们报告说,多发性骨髓瘤(MM)细胞中的同源重组(HR)活性升高,并且随着时间的推移导致突变率的增加和遗传变异的逐步积累。我们证明靶向重组酶的小抑制性RNA(siRNA)对MM细胞的HR活性的抑制导致基因组新遗传变化的获得显着减少,相反,HR活性的诱导导致数量显着增加随时间变化的新突变以及MM细胞耐药性的发展。这些数据确定失调的HR活动是DNA不稳定和MM进展的关键介质,具有作为治疗靶点的潜力。

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