冯婧娴, 王佳稳, 林俊生, 刁勇. 核酶核糖开关在基因治疗中的应用及挑战J. 药学学报, 2014,49(11): 1504-1511.
引用本文: 冯婧娴, 王佳稳, 林俊生, 刁勇. 核酶核糖开关在基因治疗中的应用及挑战J. 药学学报, 2014,49(11): 1504-1511.
FENG Jing-xian, WANG Jia-wen, LIN Jun-sheng, DIAO Yong. Ribozyme riboswitch based gene expression regulation systems for gene therapy applications:progress and challengesJ. Acta Pharmaceutica Sinica, 2014,49(11): 1504-1511.
Citation: FENG Jing-xian, WANG Jia-wen, LIN Jun-sheng, DIAO Yong. Ribozyme riboswitch based gene expression regulation systems for gene therapy applications:progress and challengesJ. Acta Pharmaceutica Sinica, 2014,49(11): 1504-1511.

核酶核糖开关在基因治疗中的应用及挑战

Ribozyme riboswitch based gene expression regulation systems for gene therapy applications:progress and challenges

  • 摘要: 在临床应用中如何根据病情按时、按需地调控基因表达, 是基因治疗亟需解决的关键问题。核酶核糖开关具有基因表达水平的可调节性、结构的可组装性和靶基因的特异性等特点, 是一种非常有应用前景的配体控制型基因调控系统。最新研究显示, 核酶核糖开关不仅能调控哺乳动物细胞的转基因表达, 还能调控细胞功能与命运。已建立的高通量筛选平台, 不仅可以在微生物宿主中快速优化核酶核糖开关, 还可将选定的活性序列元件直接应用于哺乳动物细胞。另外, 可定量评价核酶核糖开关性能的数学模型的成功建立, 为其前瞻性合理设计奠定了基础。但是, 核酶核糖开关在基因治疗的成功应用, 仍有赖于调节元件的优化设计和调控配体的生物相容性等关键问题的解决。

     

    Abstract: Robust and efficient control of therapeutic gene expression is needed for timing and dosing of gene therapy drugs in clinical applications. Ribozyme riboswitch provides a promising building block for ligand-controlled gene-regulatory system, based on its property that exhibits tunable gene regulation, design modularity, and target specificity. Ribozyme riboswitch can be used in various gene delivery vectors. In recent years, there have been breakthroughs in extending ribozyme riboswitch's application from gene-expression control to cellular function and fate control. High throughput screening platforms were established, that allow not only rapid optimization of ribozyme riboswitch in a microbial host, but also straightforward transfer of selected devices exhibiting desired activities to mammalian cell lines in a predictable manner. Mathematical models were employed successfully to explore the performance of ribozyme riboswitch quantitively and its rational design predictably. However, to progress toward gene therapy relevant applications, both precision rational design of regulatory circuits and the biocompatibility of regulatory ligand are still of crucial importance.

     

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