Yu Lina, He Wenxiu, Xie Jie, Guo Rui, Ni Juan, Zhang Xia, Xu Quishi, Wang Caifeng, Yue Qiuling, Li Fangfang, Luo Mengcheng, Sun Bo, Ye Lan, Zheng Ke
State Key Laboratory of Reproductive Medicine, Nanjing Medical University.
The Affiliated Hospital of Hangzhou Normal University.
J Vis Exp. 2019 Jul 17(149). doi: 10.3791/59830.
Protein-nucleic acid interactions play important roles in biological processes such as transcription, recombination, and RNA metabolism. Experimental methods to study protein-nucleic acid interactions require the use of fluorescent tags, radioactive isotopes, or other labels to detect and analyze specific target molecules. Biotin, a non-radioactive nucleic acid label, is commonly used in electrophoretic mobility shift assays (EMSA) but has not been regularly employed to monitor protein activity during nucleic acid processes. This protocol illustrates the utility of biotin labeling during in vitro enzymatic reactions, demonstrating that this label works well with a range of different biochemical assays. Specifically, in alignment with previous findings using radioisotope P-labeled substrates, it is confirmed via biotin-labeled EMSA that MEIOB (a protein specifically involved in the meiotic recombination) is a DNA-binding protein, that MOV10 (an RNA helicase) resolves biotin-labeled RNA duplex structures, and that MEIOB cleaves biotin-labeled single-stranded DNA. This study demonstrates that biotin is capable of substituting P in various nucleic acid-related biochemical assays in vitro.
蛋白质-核酸相互作用在转录、重组和RNA代谢等生物过程中发挥着重要作用。研究蛋白质-核酸相互作用的实验方法需要使用荧光标签、放射性同位素或其他标记物来检测和分析特定的靶分子。生物素是一种非放射性核酸标记物,常用于电泳迁移率变动分析(EMSA),但尚未常规用于监测核酸过程中的蛋白质活性。本方案阐述了生物素标记在体外酶促反应中的实用性,证明该标记物在一系列不同的生化分析中均能良好发挥作用。具体而言,与先前使用放射性同位素P标记底物的研究结果一致,通过生物素标记的EMSA证实,MEIOB(一种专门参与减数分裂重组的蛋白质)是一种DNA结合蛋白,MOV10(一种RNA解旋酶)可解开生物素标记的RNA双链结构,且MEIOB可切割生物素标记的单链DNA。本研究表明,在体外各种与核酸相关的生化分析中,生物素能够替代P。