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Photobiologic and Photoimmunologic Characteristics of XPA Gene-Deficient Mice

机译:XPA基因缺陷小鼠的光生物学和光免疫学特征

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Xeroderma pigmentosum group A (XPA) gene-deficient mice cannot repair UV-induced DNA damage and easily develop skin cancers by UV irradiation. Just like human XP patients, homozygous (–/–) mice developed stronger longer-lasting acute inflammation than did wild-type mice after a single irradiation with UVB. Moreover, the model mice showed more severe UV-induced damage of keratinocytes and Langerhans cells than did the control mice. UVB-induced local and systemic immunosuppression was greatly enhanced in the (–/–) mice. Treatment with indomethacin, an inhibitor of prostaglandin (PG) synthesis, inhibited UV-induced inflammation and abrogated immunosuppression. In XPA-deficient mice, the amount of PGE2 and the expression level of COX-2 mRNA greatly increased after UVB irradiation compared with wild-type mice. These results suggest that the excess DNA photoproducts remaining in XPA-deficient cells after UV radiation induce COX-2 expression and subsequently produce a high amount of PGE2, which causes the enhancement of inflammation and immunosuppression. In XPA-deficient mice, the natural killer cell activity significantly decreased after repeated exposures to UVB. Our experimental data indicate that cancer development in XP patients involves not only mutagenesis due to the defect in DNA repair, but also the enhanced UV-immunosuppression and intensified impairment of natural killer function.
机译:色素干性皮肤干燥症A组(XPA)基因缺陷的小鼠无法修复UV诱导的DNA损伤,并且通过UV辐射容易发展为皮肤癌。就像人类XP患者一样,纯合(– / –)小鼠在接受UVB单次照射后比野生型小鼠产生更强烈的持久性急性炎症。此外,与对照小鼠相比,模型小鼠表现出更严重的紫外线诱导的角质形成细胞和朗格汉斯细胞损伤。在(– / –)小鼠中,UVB诱导的局部和全身免疫抑制作用大大增强。用吲哚美辛(一种前列腺素(PG)合成抑制剂)治疗可抑制紫外线引起的炎症并废除免疫抑制作用。与野生型小鼠相比,在缺乏XPA的小鼠中,UVB照射后PGE2的量和COX-2 mRNA的表达水平大大增加。这些结果表明,紫外线辐射后,XPA缺陷型细胞中剩余的过量DNA光产物会诱导COX-2表达,并随后产生大量PGE2,从而引起炎症和免疫抑制的增强。在缺乏XPA的小鼠中,反复暴露于UVB后,自然杀伤细胞活性显着下降。我们的实验数据表明,XP患者的癌症发展不仅涉及由于DNA修复缺陷引起的诱变,而且还涉及增强的UV免疫抑制作用和对自然杀伤功能的增强损害。

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