首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Error-prone translesion replication of damaged DNA suppresses skin carcinogenesis by controlling inflammatory hyperplasia
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Error-prone translesion replication of damaged DNA suppresses skin carcinogenesis by controlling inflammatory hyperplasia

机译:易受损的DNA易错转录复制通过控制炎症性增生抑制皮肤癌变

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摘要

The induction of skin cancer involves both mutagenic and prolif-erative responses of the epidermis to ultraviolet (UV) light. It is believed that tumor initiation requires the mutagenic replication of damaged DNA by translesion synthesis (TLS) pathways. The mechanistic basis for the induction of proliferation, providing tumor promotion, is poorly understood. Here, we have investigated the role of TLS in the initiation and promotion of skin carcinogenesis, using a sensitive nucleotide excision repair-deficient mouse model that carries a hypomorphic allele of the error-prone TLS gene Rev1. Despite a defect in UV-induced mutagenesis, skin carcinogenesis was accelerated in these mice. This paradoxical phenotype was caused by the induction of inflammatory hyperplasia of the mutant skin that provides strong tumor promotion. The induction of hyperplasia was associated with mild and transient replicational stress of the UV-damaged genome, triggering DNA damage signaling and senescence. The concomitant expression of Interleu-kin-6 (IL-6) is in agreement with an executive role for IL-6 and possibly other cytokines in the autocrine induction of senescence and the paracrine induction of inflammatory hyperplasia. In conclusion, error-prone TLS suppresses tumor-promoting activities of UV light, thereby controlling skin carcinogenesis.
机译:皮肤癌的诱导涉及表皮对紫外线(UV)的诱变和增殖反应。据信,肿瘤的发生需要通过跨病变合成(TLS)途径诱变复制受损的DNA。诱导增生,促进肿瘤的机制基础了解甚少。在这里,我们使用敏感的核苷酸切除修复缺陷型小鼠模型研究了TLS在皮肤癌变的起始和促进中的作用,该模型带有容易出错的TLS基因Rev1的亚等位基因。尽管在紫外线诱导的诱变中存在缺陷,但在这些小鼠中皮肤致癌作用仍在加速。这种矛盾的表型是由突变皮肤的炎症性增生的诱导引起的,该突变性皮肤提供了强烈的肿瘤促进作用。增生的诱导与紫外线损伤的基因组的轻度和短暂的复制压力有关,从而触发DNA损伤信号传导和衰老。 Interleu-kin-6(IL-6)的伴随表达与IL-6以及可能的其他细胞因子在自分泌诱导衰老和旁分泌诱导炎性增生中的执行作用相一致。总而言之,容易出错的TLS抑制了紫外线促进肿瘤的活性,从而控制了皮肤的致癌作用。

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