Miret J J, Parker B O, Lahua R S
Department of Biochemistry and Molecular Biology, University of Massachusetts Medical Center, Worcester 01655, USA.
Nucleic Acids Res. 1996 Feb 15;24(4):721-9. doi: 10.1093/nar/24.4.721.
An activity in nuclear extracts of S.cerevisiae binds specifically to heteroduplexes containing four to nine extra bases in one strand. The specificity of this activity (IMR, for insertion mismatch recognition) in band shift assays was confirmed by competition experiments. IMR is biochemically and genetically distinct from the MSH2 dependent, single base mismatch binding activity. The two activities migrate differently during electrophoresis, they are differentially competable and their spectra of mispair binding are distinct. Furthermore, IMR activity is observed in extracts from an msh2- msh3- msh4- strain. IMR exhibits specificity for insertion mispairs in two different sequence contexts. Binding is influenced by the structure of the mismatch since an insertion with a hairpin configuration is not recognized by this activity. IMR does not result from single-strand binding because single-stranded probes to not yield IMR complex and single-stranded competitors are unable to displace insertion heteroduplexes from the complex. Similar results with intrinsically bent duplexes make it unlikely that recognition is conferred by a bend alone. Heteroduplexes bound by IMR do not contain any obvious damage. These findings are consistent with the idea that yeast contains a distinct recognition factor, IMR that is specific for insertion/deletion mismatches.
酿酒酵母核提取物中的一种活性物质能特异性结合在一条链上含有4至9个额外碱基的异源双链体。通过竞争实验证实了这种活性(IMR,即插入错配识别)在凝胶迁移实验中的特异性。IMR在生化和遗传上与依赖MSH2的单碱基错配结合活性不同。这两种活性在电泳过程中迁移方式不同,它们的竞争能力不同,错配结合谱也不同。此外,在msh2 - msh3 - msh4 - 菌株的提取物中也观察到了IMR活性。IMR在两种不同的序列背景下对插入错配表现出特异性。由于具有发夹结构的插入不被这种活性识别,因此结合受错配结构的影响。IMR不是由单链结合产生的,因为单链探针不会产生IMR复合物,单链竞争者也无法从复合物中取代插入异源双链体。对于内在弯曲的双链体也得到了类似结果,这使得不太可能仅由弯曲赋予识别能力。被IMR结合的异源双链体不包含任何明显的损伤。这些发现与酵母含有一种对插入/缺失错配具有特异性的独特识别因子IMR的观点一致。