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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Circulating human B lymphocytes are deficient in nucleotide excision repair and accumulate mutations upon proliferation.
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Circulating human B lymphocytes are deficient in nucleotide excision repair and accumulate mutations upon proliferation.

机译:循环中的人B淋巴细胞缺乏核苷酸切除修复,并且在增殖时会积累突变。

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摘要

Faithful repair of DNA lesions is a crucial task that dividing cells must actively perform to maintain genome integrity. Strikingly, nucleotide excision repair (NER), the most versatile DNA repair system, is specifically down-regulated in terminally differentiated cells. This prompted us to examine whether NER attenuation might be a common feature of all G-arrested cells, and in particular of those that retain the capacity to reenter cell cycle and might thus convert unrepaired DNA lesions into mutations, a prerequisite for malignant transformation. Here we report that quiescent primary human B lymphocytes down-regulate NER at the global genome level while maintaining proficient repair of constitutively expressed genes. Quiescent B cells exposed to an environment that causes both DNA damage and proliferation accumulate point mutations in silent and inducible genes crucial for cell replication and differentiation, such as BCL6 and Cyclin D2. Similar to differentiated cells, NER attenuation in quiescent cells is associated with incomplete phosphorylation of the ubiquitin activating enzyme Ube1, which is required for proficient NER. Our data establish a mechanistic link between NER attenuation during quiescence and cell mutagenesis and also support the concept that oncogenic events targeting cell cycle- or activation-induced genes might initiate genomic instability and lymphomagenesis.
机译:忠实地修复DNA损伤是至关重要的任务,分裂细胞必须积极发挥作用以维持基因组完整性。引人注目的是,核苷酸切除修复(NER)是最通用的DNA修复系统,在终分化细胞中被特异性下调。这促使我们检查NER衰减是否可能是所有G阻滞细胞的共同特征,尤其是那些保留重新进入细胞周期能力并因此可能将未修复的DNA损伤转化为突变的突变的特征,这是恶性转化的前提。在这里,我们报告说,静止的原代人B淋巴细胞在全球基因组水平上下调NER,同时保持对组成型表达基因的熟练修复。暴露于引起DNA损伤和增殖的环境中的静态B细胞会在沉默和可诱导的基因(例如BCL6和Cyclin D2)中积累点突变,这些突变对于细胞的复制和分化至关重要。与分化细胞相似,静止细胞中的NER衰减与泛素激活酶Ube1的磷酸化不完全有关,这是熟练NER所必需的。我们的数据在静止期间NER衰减与细胞诱变之间建立了机械联系,也支持了以细胞周期或激活诱导基因为目标的致癌事件可能引发基因组不稳定性和淋巴瘤发生的概念。

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