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首页> 外文期刊>International Journal of Molecular Sciences >Nucleotide Excision Repair and Vitamin D—Relevance for Skin Cancer Therapy
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Nucleotide Excision Repair and Vitamin D—Relevance for Skin Cancer Therapy

机译:核苷酸切除修复和维生素D-与皮肤癌治疗的相关性

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Ultraviolet (UV) radiation is involved in almost all skin cancer cases, but on the other hand, it stimulates the production of pre-vitamin D3, whose active metabolite, 1,25-dihydroxyvitamin D3 (1,25VD3), plays important physiological functions on binding with its receptor (vitamin D receptor, VDR). UV-induced DNA damages in the form of cyclobutane pyrimidine dimers or (6-4)-pyrimidine-pyrimidone photoproducts are frequently found in skin cancer and its precursors. Therefore, removing these lesions is essential for the prevention of skin cancer. As UV-induced DNA damages are repaired by nucleotide excision repair (NER), the interaction of 1,25VD3 with NER components can be important for skin cancer transformation. Several studies show that 1,25VD3 protects DNA against damage induced by UV, but the exact mechanism of this protection is not completely clear. 1,25VD3 was also shown to affect cell cycle regulation and apoptosis in several signaling pathways, so it can be considered as a potential modulator of the cellular DNA damage response, which is crucial for mutagenesis and cancer transformation. 1,25VD3 was shown to affect DNA repair and potentially NER through decreasing nitrosylation of DNA repair enzymes by NO overproduction by UV, but other mechanisms of the interaction between 1,25VD3 and NER machinery also are suggested. Therefore, the array of NER gene functioning could be analyzed and an appropriate amount of 1.25VD3 could be recommended to decrease UV-induced DNA damage important for skin cancer transformation.
机译:紫外线(UV)几乎涉及所有皮肤癌病例,但另一方面,它会刺激维生素D3的产生,维生素D3的活性代谢物1,25-二羟基维生素D3(1,25VD3)具有重要的生理功能与其受体(维生素D受体,VDR)结合。在皮肤癌及其前体中经常发现以环丁烷嘧啶二聚体或(6-4)-嘧啶-嘧啶酮光产物形式发生的紫外线诱导的DNA损伤。因此,去除这些病变对于预防皮肤癌至关重要。由于紫外线诱导的DNA损伤可通过核苷酸切除修复(NER)进行修复,因此1,25VD3与NER成分的相互作用对于皮肤癌转化可能非常重要。几项研究表明1,25VD3可以保护DNA免受紫外线引起的损害,但是这种保护的确切机制尚不完全清楚。 1,25VD3还显示在几个信号通路中影响细胞周期调控和凋亡,因此可以将其视为细胞DNA损伤反应的潜在调节剂,这对于诱变和癌症转化至关重要。 1,25VD3被证明可通过减少UV过量生成NO而减少DNA修复酶的亚硝化作用而影响DNA修复,并可能影响NER,但是还建议了1,25VD3与NER机械之间相互作用的其他机制。因此,可以分析NER基因的功能阵列,并建议适当量的1.25VD3以减少紫外线引起的DNA损伤,这对于皮肤癌转化很重要。

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