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Gene-environment interaction research in psychiatric epidemiology: a framework and implications for study design.

机译:精神病流行病学中的基因-环境相互作用研究:研究设计的框架和意义。

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摘要

Telomerase, consisting of telomerase RNA and telomerase reverse transcriptase (TERT), is responsible for the maintenance of the end of linear chromosomes. TERT, as the catalytic subunit of telomerase, plays a critical role in telomerase activity. Researches indicate TERT-associated proteins participate in the regulation of telomerase assembly, posttranslational modification, localization, and enzymatic function. Here, the telomerase RNA-binding domain of Eimeria tenella TERT (EtTRBD) was cloned into pGBKT7 and performed as the bait. α-Galactosidase assay showed that the bait plasmid did not activate Gal4 reporter gene. Further, we isolated an EtTRBD-associated protein, 14-3-3, by yeast two-hybrid screening using the constructed bait plasmid. To confirm the interaction, EtTRBD and 14-3-3 were expressed by prokaryotic and eukaryotic expression systems. Pull-down assays by purified proteins demonstrated a direct bind between EtTRBD and 14-3-3. Co-immunoprecipitation techniques successfully validated that 14-3-3 interacted with EtTRBD in 293T cells. The protein-protein interaction provides a starting point for more in-depth studies on telomerase and telomere regulation in E. tenella.
机译:端粒酶由端粒酶RNA和端粒酶逆转录酶(TERT)组成,负责维持线性染色体的末端。作为端粒酶的催化亚基,TERT在端粒酶活性中起关键作用。研究表明,与TERT相关的蛋白质参与端粒酶装配,翻译后修饰,定位和酶功能的调节。在此,将艾美耳球菌TERT(EtTRBD)的端粒酶RNA结合结构域克隆到pGBKT7中并作为诱饵进行。 α-半乳糖苷酶测定表明诱饵质粒未激活Gal4报道基因。此外,我们使用构建的诱饵质粒通过酵母双杂交筛选分离了EtTRBD相关蛋白14-3-3。为了证实相互作用,通过原核和真核表达系统表达了EtTRBD和14-3-3。纯化蛋白的下拉分析表明EtTRBD和14-3-3之间存在直接结合。免疫共沉淀技术成功验证了14-3-3与293T细胞中的EtTRBD相互作用。蛋白质间相互作用为进一步深入研究大肠杆菌中端粒酶和端粒调控提供了起点。

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