http://jcps.bjmu.edu.cn

中国药学(英文版) ›› 2017, Vol. 26 ›› Issue (1): 53-62.DOI: 10.5246/jcps.2017.01.005

• 【研究论文】 • 上一篇    下一篇

通过促进poly A 和PABP蛋白结合抑制mRNA降解: 小檗碱作用的新机制

袁梽漪1, 卢希2, 雷帆3, 胡珺2, 王玉刚2, 柴玉爽2, 姜敬非2, 李慧玉2, 邢东明2, 杜力军2*   

  1. 1. 重庆医科大学 药学院, 重庆 400016
    2. 清华大学 蛋白质科学教育部重点实验室; 生命科学学院 药物药理实验室, 高等中医药研究中心, 北京 100084
    3. 清华大学 药学院, 北京 100084
  • 收稿日期:2016-11-15 修回日期:2016-12-20 出版日期:2017-01-22 发布日期:2016-12-25
  • 通讯作者: Tel.: +86-010-62796270, E-mail: lijundu@mail.tsinghua.edu.cn
  • 基金资助:
    National Natural Science Foundation of China (Grant No. 81374006, 81073092 and 90713043).

Berberine inhibits mRNA degradation by promoting the interaction between the poly A tail and its binding protein PABP

Zhiyi Yuan1, Xi Lu2, Fan Lei3, Jun Hu2, Yugang Wang2, Yushuang Chai2, Jingfei Jiang2, Huiyu Li2, Dongming Xing2, Lijun Du2*   

  1. 1. College of Pharmacy, Chongqing Medical University, Chongqing 400016, China
    2. MOE Key Laboratory of Protein Sciences, Laboratory of Molecular Pharmacology and Pharmaceutical Sciences, Center for Advanced Chinese Medicine Research, School of Life Sciences, Tsinghua University, Beijing 100084, China
    3. School of Pharmacology and Pharmaceutical Sciences, Tsinghua University, Beijing 100084, China 
  • Received:2016-11-15 Revised:2016-12-20 Online:2017-01-22 Published:2016-12-25
  • Contact: Tel.: +86-010-62796270, E-mail: lijundu@mail.tsinghua.edu.cn
  • Supported by:
    National Natural Science Foundation of China (Grant No. 81374006, 81073092 and 90713043).

摘要:

小檗碱(BBR)是一种天然小分子药物, 具有多种药理活性, 作用于多个靶点。我们在之前的研究中发现, 小檗碱具有稳定mRNA、避免其降解的活性, 并初步证实这与它和mRNA 3′ 端polyA尾部的结合有关, 然而其具体机制尚不清楚。本文首次报道了相关的机制研究。研究结果表明, 小檗碱结合于poly A、避免mRNA降解的这一过程需要PABP(poly A结合蛋白)参与。利用RNA-EMSA(RNA凝胶电泳迁移)、RIP(RNA免疫共沉淀)和荧光光谱等多项技术证明了小檗碱能够促进PABP与poly A的结合, 从而增强mRNA的稳定性。此外利用二维核磁共振技术揭示BBR与AMP结合的特异性。本文结论是小檗碱促进蛋白表达的机制与其作用于poly A、稳定mRNA, 从而促进蛋白翻译、上调蛋白表达相关。

关键词: 小檗碱, Poly A, PABP, RNA降解, 药理

Abstract:

Berberine (BBR) is a natural small molecule with various pharmacological activities and biological targets. BBR has been shown to inhibit mRNA decay in our previous studies, which is associated with its high binding affinity to the poly-adenine (poly A) tail at the 3′ end of mRNA. However, the exact mechanism remains unknown. In this research, we discovered that deficiency of cytoplasmic poly A binding protein (PABP), which protects mRNA from nucleolytic attack as a poly A-PABP complex, led to the loss of BBR’s effect on mRNA decay inhibition. We also demonstrated using fluorescence spectroscopy, RNA-EMSA (RNA-electrophoretic mobility shift assay) in vitro, and RIP (RNA immunoprecipitation) that BBR could significantly promote PABP binding to poly A. We might conclude that BBR could stabilize mRNA by enhancing the interaction between poly A and PABP. In addition, the HMBC (1H detected heteronuclear multiple bond correlation) studies demonstrated that BBR could bind to AMP, a monomer of poly A, directly and specifically. Further evidence of molecular docking suggested that BBR might act as a linker to stabilize the poly A-PABP, and elongate the half-life of mRNAs. This demonstrates that BBR might affect protein translation initiation and up-regulate protein expression.

Key words: Berberine, Poly A, PABP, RNA degradation, Pharmacology

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