Saffhill R, Ockey C H
Chromosoma. 1985;92(3):218-24. doi: 10.1007/BF00348697.
5-Bromodeoxyuridine (BrdU)-induced sister chromatid exchanges (SCEs) are mainly determined during replication on a BrdU-substituted template. The BrdU, once incorporated, is rapidly excised as uracil (U), and the gap is repaired with the incorporation of BrdU from the medium, which leads to further repair. During the second S period in BrdU medium, this process continues as the strand acts as template. Experiments suggest that 3-aminobenzamide (3AB) delays the ligation of the gaps formed after U excision, resulting in enhanced SCE levels during the second cycle of BrdU incorporation. When normal templates of G1 cells are treated before BrdU introduction with methyl methanesulphonate (MMS), 3AB in the first cycle doubles the MMS-induced SCEs but has no effect on them during the second cycle. When the BrdU-substituted template is treated with MMS in G1 of the second cycle, 3AB again doubles the SCEs due to MMS and also enhances the SCEs resulting from delays in ligation of the gaps following U excision in the BrdU-substituted template. The repair processes of MMS lesions that are sensitive to 3AB and lead to SCEs take place rapidly, while the repair process of late repairing lesions that lead to SCEs appear to be insensitive to 3AB. A model for SCE induction is proposed involving a single-strand break or gap as the initial requirement for SCE initiation at the replicating fork. Subsequent events represent natural stages in the repair process of a lesion, ensuring replication without loss of genetic information.(ABSTRACT TRUNCATED AT 250 WORDS)
5-溴脱氧尿苷(BrdU)诱导的姐妹染色单体交换(SCE)主要在BrdU取代模板的复制过程中确定。BrdU一旦掺入,会迅速被切除为尿嘧啶(U),然后通过掺入培养基中的BrdU来修复缺口,这会导致进一步的修复。在BrdU培养基中的第二个S期,随着该链作为模板,这个过程会持续进行。实验表明,3-氨基苯甲酰胺(3AB)会延迟U切除后形成的缺口的连接,导致在BrdU掺入的第二个周期中SCE水平升高。当在引入BrdU之前用甲磺酸甲酯(MMS)处理G1期细胞的正常模板时,第一个周期中的3AB会使MMS诱导的SCE增加一倍,但在第二个周期中对其没有影响。当在第二个周期的G1期用MMS处理BrdU取代的模板时,3AB再次使MMS导致的SCE增加一倍,并且还增强了由于BrdU取代模板中U切除后缺口连接延迟而产生的SCE。对3AB敏感并导致SCE的MMS损伤的修复过程迅速发生,而导致SCE的晚期修复损伤的修复过程似乎对3AB不敏感。提出了一个SCE诱导模型,涉及单链断裂或缺口作为复制叉处SCE起始的初始要求。随后的事件代表损伤修复过程中的自然阶段,确保复制而不丢失遗传信息。(摘要截断于250字)