Faculty of Arts and Sciences (FAS) Center for Systems Biology, Harvard University, 52 Oxford Street, Cambridge, MA 02138, USA.
Science. 2011 Sep 2;333(6047):1307-11. doi: 10.1126/science.1205527.
Engineered biological systems that integrate multi-input sensing, sophisticated information processing, and precisely regulated actuation in living cells could be useful in a variety of applications. For example, anticancer therapies could be engineered to detect and respond to complex cellular conditions in individual cells with high specificity. Here, we show a scalable transcriptional/posttranscriptional synthetic regulatory circuit--a cell-type "classifier"--that senses expression levels of a customizable set of endogenous microRNAs and triggers a cellular response only if the expression levels match a predetermined profile of interest. We demonstrate that a HeLa cancer cell classifier selectively identifies HeLa cells and triggers apoptosis without affecting non-HeLa cell types. This approach also provides a general platform for programmed responses to other complex cell states.
工程化的生物系统可以将多输入传感、复杂的信息处理和精确调节的执行器集成到活细胞中,这在各种应用中可能非常有用。例如,抗癌疗法可以被设计为检测和响应单个细胞中复杂的细胞状态,具有很高的特异性。在这里,我们展示了一种可扩展的转录/转录后合成调控回路——一种细胞类型“分类器”——它可以检测一组可定制的内源性 microRNA 的表达水平,如果表达水平与预定的感兴趣的特征谱匹配,则触发细胞反应。我们证明,HeLa 癌细胞分类器可以选择性地识别 HeLa 细胞并触发细胞凋亡,而不影响非 HeLa 细胞类型。这种方法还为对其他复杂细胞状态的编程响应提供了一个通用平台。