首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Phage T4 endonuclease V stimulates DNA repair replication in isolated nuclei from ultraviolet-irradiated human cells including xeroderma pigmentosum fibroblasts
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Phage T4 endonuclease V stimulates DNA repair replication in isolated nuclei from ultraviolet-irradiated human cells including xeroderma pigmentosum fibroblasts

机译:噬菌体T4内切核酸酶V刺激来自紫外线辐射的人类细胞(包括干皮色素成纤维细胞)的分离核中的DNA修复复制。

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摘要

The repair mode of DNA replication has been demonstrated in isolated nuclei from UV-irradiated human cells. Nuclei are incubated in a mixture containing [3H]thymidine triphosphate and bromodeoxyuridine triphosphate in a 1:5 ratio. The 3H at the density of parental DNA in alkaline CsCl density gradients is then a measure of repair. In nuclei prepared from WI38 cells 30 min after irradiation, repair replication is UV dependent and proceeds at approximately the in vivo rate for 5 min. Repair replication is reduced in irradiated nuclei or in nuclei prepared immediately after irradiation. It is Mg2+-dependent and stimulated by added ATP and deoxyribonucleoside triphosphates. No repair replication is observed in nuclei from xeroderma pigmentosum (complementation group A) cells. However, upon addition of coliphage T4 endonuclease V, which specifically nicks DNA containing pyrimidine dimers, repair replication is observed in nuclei from irradiated xeroderma pigmentosum cells and is stimulated in WI38 nuclei. The reaction then persists for an hour and is dependent upon added ATP and deoxyribonucleoside triphosphates. The repair label is in stretches of roughly 35 nucleotides, as it is in intact cells. Added pancreatic DNase does not promote UV-dependent repair synthesis. Our results support the view that xeroderma pigmentosum (group A) cells are defective in the incision step of the DNA excision repair pathway, and demonstrate the utility of this system for probing DNA repair mechanisms.
机译:DNA复制的修复模式已在紫外线辐射的人类细胞的分离核中得到证实。在含有[ 3 H]胸苷三磷酸和溴脱氧尿苷三磷酸的比例为1:5的混合物中孵育细胞核。然后,在碱性CsCl浓度梯度中,亲本DNA浓度下的 3 H是修复的量度。辐照后30分钟,从WI38细胞制备的细胞核中,修复复制是紫外线依赖性的,并且大约以体内速率进行5分钟。修复的复制在受辐照的核中或辐照后立即制备的核中减少。它是Mg 2 + 依赖性的,并被添加的ATP和脱氧核糖核苷三磷酸刺激。没有观察到色素干皮(互补组A)细胞的细胞核中有修复复制。但是,添加了大肠杆菌噬菌体T4核酸内切酶V后,该酶特异性地切开了含嘧啶二聚体的DNA,在辐照的干性色素干细胞的细胞核中观察到修复复制,并在WI38细胞核中受到刺激。然后反应持续一个小时,并取决于所添加的ATP和脱氧核糖核苷三磷酸。就像在完整细胞中一样,修复标签大约延伸35个核苷酸。添加的胰腺DNase不会促进紫外线依赖性修复合成。我们的结果支持这样的观点,即干性色素干皮(A组)细胞在DNA切除修复途径的切割步骤中存在缺陷,并证明了该系统可用于探测DNA修复机制。

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