Zolotarev Nikolay, Fedotova Anna, Kyrchanova Olga, Bonchuk Artem, Penin Aleksey A, Lando Andrey S, Eliseeva Irina A, Kulakovskiy Ivan V, Maksimenko Oksana, Georgiev Pavel
Institute of Gene Biology, Russian Academy of Sciences, Vavilova str. 34/5, Moscow 119334, Russia.
Belozersky Institute of Physico-Chemical Biology, Moscow State University, Moscow 119991, Russia; Institute for Information Transmission Problems, Russian Academy of Sciences, Moscow 127051 Russia; Department of Genetics, Faculty of Biology, Moscow State University, Moscow 119991, Russia.
Nucleic Acids Res. 2016 Sep 6;44(15):7228-41. doi: 10.1093/nar/gkw371. Epub 2016 May 2.
According to recent models, as yet poorly studied architectural proteins appear to be required for local regulation of enhancer-promoter interactions, as well as for global chromosome organization. Transcription factors ZIPIC, Pita and Zw5 belong to the class of chromatin insulator proteins and preferentially bind to promoters near the TSS and extensively colocalize with cohesin and condensin complexes. ZIPIC, Pita and Zw5 are structurally similar in containing the N-terminal zinc finger-associated domain (ZAD) and different numbers of C2H2-type zinc fingers at the C-terminus. Here we have shown that the ZAD domains of ZIPIC, Pita and Zw5 form homodimers. In Drosophila transgenic lines, these proteins are able to support long-distance interaction between GAL4 activator and the reporter gene promoter. However, no functional interaction between binding sites for different proteins has been revealed, suggesting that such interactions are highly specific. ZIPIC facilitates long-distance stimulation of the reporter gene by GAL4 activator in yeast model system. Many of the genomic binding sites of ZIPIC, Pita and Zw5 are located at the boundaries of topologically associated domains (TADs). Thus, ZAD-containing zinc-finger proteins can be attributed to the class of architectural proteins.
根据最近的模型,目前研究较少的结构蛋白似乎是增强子-启动子相互作用的局部调控以及全局染色体组织所必需的。转录因子ZIPIC、Pita和Zw5属于染色质绝缘子蛋白类别,优先结合转录起始位点(TSS)附近的启动子,并与黏连蛋白和凝缩蛋白复合物广泛共定位。ZIPIC、Pita和Zw5在结构上相似,都含有N端锌指相关结构域(ZAD),且在C端含有不同数量的C2H2型锌指。在这里,我们已经证明ZIPIC、Pita和Zw5的ZAD结构域形成同源二聚体。在果蝇转基因系中,这些蛋白能够支持GAL4激活因子与报告基因启动子之间的长距离相互作用。然而,尚未揭示不同蛋白结合位点之间的功能相互作用,这表明这种相互作用具有高度特异性。在酵母模型系统中,ZIPIC促进GAL4激活因子对报告基因的长距离刺激。ZIPIC、Pita和Zw5的许多基因组结合位点位于拓扑相关结构域(TAD)的边界。因此,含ZAD的锌指蛋白可归为结构蛋白类别。