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剑尾鱼(Xiphophorus signum)中紫外线光损伤的诱导、分布及修复

Induction, distribution and repair of UV photodamage in the platyfish, Xiphophorus signum.

作者信息

Meador J A, Walter R B, Mitchell D L

机构信息

University of Texas M.D. Anderson Cancer Center, Department of Carcinogenesis, Smithville, TX, USA.

出版信息

Photochem Photobiol. 2000 Aug;72(2):260-6. doi: 10.1562/0031-8655(2000)072<0260:idarou>2.0.co;2.

Abstract

The genus Xiphophorus is an important model for investigating the etiology and genetics of sunlight-induced melanoma as well as other cancers. We used immunological techniques to determine the induction, distribution and repair of cyclobutane pyrimidine dimers (CPD) and pyrimidine(6-4)pyrimidone dimers ([6-4]PD) in different tissues of Xiphophorus signum exposed to ultraviolet-B light. We found that the (6-4)PD was induced at 5 to 10-fold lower frequency than the CPD and that scalation provided considerable photoprotection against both photoproducts. Photoenzymatic repair (PER) was very efficient in X. signum with most of the lesions removed within 20 min; PER of CPD occurred at about twice the rate of (6-4)PD. Nucleotide excision repair (NER) was much less efficient than PER and the rates of CPD and (6-4)PD removal were comparable. PER was more efficient in the caudal fin compared to the lateral epidermis; the opposite was true for NER. Although the initial rate of CPD excision was five-fold faster in the lateral epidermis compared to the caudal fin a considerable amount of residual damage remained in both tissues. The diverse photochemical and photobiological responses observed in X. signum suggest that heritable traits governing deoxyribonucleic acid damage induction and repair may be involved in the susceptibility of other Xiphophorus species to melanomagenesis.

摘要

剑尾鱼属是研究阳光诱发黑色素瘤及其他癌症的病因和遗传学的重要模型。我们运用免疫技术来测定暴露于紫外线B的剑尾鱼不同组织中环丁烷嘧啶二聚体(CPD)和嘧啶(6-4)嘧啶酮二聚体([6-4]PD)的诱导、分布及修复情况。我们发现,(6-4)PD的诱导频率比CPD低5至10倍,并且鳞片对这两种光产物都提供了相当程度的光保护。光酶修复(PER)在剑尾鱼中非常高效,大多数损伤在20分钟内被清除;CPD的光酶修复速率约为(6-4)PD的两倍。核苷酸切除修复(NER)比PER效率低得多,CPD和(6-4)PD的去除速率相当。与侧表皮相比,尾鳍中的PER更高效;NER则相反。尽管侧表皮中CPD切除的初始速率比尾鳍快五倍,但两个组织中都仍有相当数量的残留损伤。在剑尾鱼中观察到的多种光化学和光生物学反应表明,控制脱氧核糖核酸损伤诱导和修复的遗传性状可能与其他剑尾鱼物种对黑色素瘤发生的易感性有关。

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