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苯并芘对褐菖鲉肝细胞DNA交联的影响 被引量:4
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作者 张景智 陈荣 李东晓 《台湾海峡》 CAS CSCD 北大核心 2010年第4期446-451,共6页
以褐菖鲉(Sebastiscus marmoratus)为实验材料,设定苯并芘[B(a)P]的注射剂量梯度分别为0.00、0.05、0.50、5.00 mg/kg,分别于实验的第0、3、6天对每一条鱼进行腹腔注射,于第1、4、7天取样,测定胆汁中的B(a)P及其代谢物含量.采用荧光检... 以褐菖鲉(Sebastiscus marmoratus)为实验材料,设定苯并芘[B(a)P]的注射剂量梯度分别为0.00、0.05、0.50、5.00 mg/kg,分别于实验的第0、3、6天对每一条鱼进行腹腔注射,于第1、4、7天取样,测定胆汁中的B(a)P及其代谢物含量.采用荧光检测法检测B(a)P染毒后褐菖鲉肝细胞DNA-DNA交联(DDC)交联系数的变化,并用KC l-SDS沉淀法检测DNA蛋-白质交联(DPC)交联系数的变化.结果表明:(1)经注射染毒后鱼体胆汁中的B(a)P及其代谢物含量蓄积程度存在着明显的剂量效应和时间效应;(2)B(a)P的注射剂量分别为0.05、0.50 mg/kg时各时间点褐菖鲉肝细胞DDC交联系数均无显著增大(p>0.05),在5.00 mg/kg剂量组,随着时间延长DDC交联系数逐渐增大,第4天即有显著差异(p<0.05),第7天差异极显著(p<0.01);(3)B(a)P诱导DPC的趋势与DDC类似,但0.5 mg/kg剂量组在第7天DPC交联系数即出现显著增大(p<0.05).这表明B(a)P对DPC的诱导高于DDC.这为进一步研究B(a)P的遗传毒性提供了依据,并为探讨B(a)P致癌的作用机理提供了新的信息. 展开更多
关键词 海洋生物学 生物毒理 dna-dna交联 dna蛋-白质交联 苯并芘 褐菖鲉
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Formation and repair of DNA-protein crosslink damage 被引量:6
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作者 Naeh L.Klages-Mundt Lei Li 《Science China(Life Sciences)》 SCIE CAS CSCD 2017年第10期1065-1076,共12页
DNA is constantly exposed to a wide array of genotoxic agents, generating a variety of forms of DNA damage. DNA-protein crosslinks(DPCs)—the covalent linkage of proteins with a DNA strand—are one of the most deleter... DNA is constantly exposed to a wide array of genotoxic agents, generating a variety of forms of DNA damage. DNA-protein crosslinks(DPCs)—the covalent linkage of proteins with a DNA strand—are one of the most deleterious and understudied forms of DNA damage, posing as steric blockades to transcription and replication. If not properly repaired, these lesions can lead to mutations, genomic instability, and cell death. DPCs can be induced endogenously or through environmental carcinogens and chemotherapeutic agents. Endogenously, DPCs are commonly derived through reactions with aldehydes, as well as through trapping of various enzymatic intermediates onto the DNA. Proteolytic cleavage of the protein moiety of a DPC is a general strategy for removing the lesion. This can be accomplished through a DPC-specific protease and and/or proteasome-mediated degradation.Nucleotide excision repair and homologous recombination are each involved in repairing DPCs, with their respective roles likely dependent on the nature and size of the adduct. The Fanconi anemia pathway may also have a role in processing DPC repair intermediates. In this review, we discuss how these lesions are formed, strategies and mechanisms for their removal, and diseases associated with defective DPC repair. 展开更多
关键词 dna-protein crosslinks nucleotide excision repair SPRTN Fanconi anemia
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