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Attenuation of constitutive DNA damage signaling by 125-dihydroxyvitamin D3

机译:125-二羟基维生素D3对组成型DNA损伤信号的减弱

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摘要

In addition to its traditional role in the regulation of calcium homeostasis and bone metabolism, vitamin D also exhibits immunomodulatory, anti-proliferative and cancer preventive activities. Molecular mechanisms that confer the chemo-preventive properties to vitamin D are poorly understood. We previously reported that constitutive phosphorylation of histone H2AX on Ser139 (γH2AX) and activation of ATM (Ser1981 phosphorylation), seen in untreated normal or tumor cells predominantly in S phase of the cell cycle, is to a large extent indicative of DNA replication stress occurring as a result of persistent DNA damage caused by endogenous oxidants, by-products of oxidative metabolism. In the present study we observed that exposure of mitogenically stimulated human lymphocytes, pulmonary carcinoma A549 and lymphoblastoid TK6 cells to 1,25-dihydroxyvitamin D3 (1,25-VD) reduced the level of constitutive expression of γH2AX and ATM-S1981P. We also observed that the H2O2-induced rise in the level of γH2AX in lymphocytes was attenuated by 1,25-VD. Whereas in lymphocytes 1,25-VD reduced by 50-70% the level of endogenous oxidants as determined by their ability to oxidize 2,7-dichlorodihydrofluorescein (DCFH) in A549 and TK6 cells the attenuation of DNA damage signaling by 1,25-VD was seen in the absence of detectable reduction in DCFH oxidation. These findings suggest that while the anti-oxidant activity of 1,25-VD may contribute to a reduction in the intensity of DNA replication stress in lymphocytes, other factors play a role in the 1,25-VD effects seen in A549 and TK6 cells. The data are consistent with the recent report on the interaction between DNA damage signaling (ATM activation) and 1,25D receptor (VDR) phosphorylation that lead to enhancement of DNA repair efficiency, and provide further support for the chemo-preventive and anti-aging properties of this vitamin/hormone.
机译:除了在调节钙稳态和骨骼代谢方面的传统作用外,维生素D还具有免疫调节,抗增殖和预防癌症的作用。赋予维生素D化学预防性质的分子机制了解甚少。我们先前曾报道过,在未经处理的正常或肿瘤细胞中(主要是在细胞周期的S期出现),Ser139上的组蛋白H2AX的组成型磷酸化(γH2AX)和ATM的激活(Ser1981磷酸化)在很大程度上表明发生了DNA复制应激由于内源性氧化剂(氧化代谢的副产物)对DNA造成的持续性破坏所致。在本研究中,我们观察到有丝分裂刺激的人类淋巴细胞,肺癌A549和成淋巴细胞样TK6细胞暴露于1,25-二羟基维生素D3(1,25-VD)会降低γH2AX和ATM-S1981的组成型表达水平。 P 。我们还观察到,H2O2诱导的淋巴细胞中γH2AX水平的升高被1,25-VD减弱。淋巴细胞中的1,25-VD降低了50-70%的内源性氧化剂水平,这取决于它们氧化A549和TK6细胞中的2,7-二氯二氢荧光素(DCFH)的能力,DNA损伤信号传导的衰减为1,25-在DCFH氧化没有可检测到的减少的情况下看到了VD。这些发现表明,虽然1,25-VD的抗氧化活性可能有助于降低淋巴细胞中DNA复制压​​力的强度,但其他因素在A549和TK6细胞中的1,25-VD效应中也起作用。数据与有关DNA损伤信号转导(ATM激活)和1,25D受体(VDR)磷酸化之间相互作用的最新报告相一致,从而导致DNA修复效率的提高,并为化学预防和抗衰老提供进一步支持这种维生素/激素的特性。

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