Gao Yuanli, Mardian Rizki, Ma Jiaxin, Li Yang, French Christopher E, Wang Baojun
College of Chemical and Biological Engineering, Zhejiang University, Hangzhou, China.
ZJU-Hangzhou Global Scientific and Technological Innovation Centre, Zhejiang University, Hangzhou, China.
Nat Chem Biol. 2025 May;21(5):758-766. doi: 10.1038/s41589-024-01781-4. Epub 2025 Jan 2.
Synthetic genetic circuits program the cellular input-output relationships to execute customized functions. However, efforts to scale up these circuits have been hampered by the limited number of reliable regulatory mechanisms with high programmability, performance, predictability and orthogonality. Here we report a class of split-intron-enabled trans-splicing riboregulators (SENTRs) based on de novo designed external guide sequences. SENTR libraries provide low leakage expression, wide dynamic range, high predictability with machine learning and low crosstalk at multiple component levels. SENTRs can sense RNA targets, process signals by logic computation and transduce them into various outputs, either mRNAs or noncoding RNAs. We subsequently demonstrate that digital logic operation with up to six inputs can be implemented using multiple orthogonal SENTRs to regulate a single gene simultaneously and coupling SENTRs with split intein-mediated protein trans-splicing. SENTR represents a powerful and versatile regulatory tool at the post-transcriptional level in Escherichia coli, suggesting broad biotechnological applications.
合成基因电路对细胞的输入-输出关系进行编程,以执行定制功能。然而,扩大这些电路规模的努力受到了具有高可编程性、性能、可预测性和正交性的可靠调控机制数量有限的阻碍。在此,我们报告了一类基于从头设计的外部引导序列的启用分裂内含子的反式剪接核糖调节因子(SENTRs)。SENTR文库在多个组件水平上提供低泄漏表达、宽动态范围、通过机器学习实现的高可预测性以及低串扰。SENTRs可以感知RNA靶标,通过逻辑计算处理信号并将其转化为各种输出,即mRNA或非编码RNA。我们随后证明,使用多个正交SENTRs同时调节单个基因并将SENTRs与分裂内含肽介导的蛋白质反式剪接相结合,可以实现多达六个输入的数字逻辑运算。SENTR代表了大肠杆菌转录后水平上一种强大且通用的调控工具,表明其具有广泛的生物技术应用。