Deans Tara L, Cantor Charles R, Collins James J
Department of Biomedical Engineering, Center for BioDynamics and Center for Advanced Biotechnology, Boston University, Boston, MA 02215, USA.
Cell. 2007 Jul 27;130(2):363-72. doi: 10.1016/j.cell.2007.05.045.
Here, we introduce an engineered, tunable genetic switch that couples repressor proteins and an RNAi target design to effectively turn any gene off. We used the switch to regulate the expression of EGFP in mouse and human cells and found that it offers >99% repression as well as the ability to tune gene expression. To demonstrate the system's modularity and level of gene silencing, we used the switch to tightly regulate the expression of diphtheria toxin and Cre recombinase, respectively. We also used the switch to tune the expression of a proapoptotic gene and show that a threshold expression level is required to induce apoptosis. This work establishes a system for tight, tunable control of mammalian gene expression that can be used to explore the functional role of various genes as well as to determine whether a phenotype is the result of a threshold response to changes in gene expression.
在此,我们介绍一种经过工程改造的、可调节的基因开关,它将阻遏蛋白与RNA干扰靶点设计相结合,以有效地关闭任何基因。我们使用该开关调节小鼠和人类细胞中EGFP的表达,发现它能实现>99%的抑制率,并且具备调节基因表达的能力。为了证明该系统的模块化和基因沉默水平,我们分别使用该开关严格调节白喉毒素和Cre重组酶的表达。我们还使用该开关调节促凋亡基因的表达,并表明诱导凋亡需要一个阈值表达水平。这项工作建立了一个用于严格、可调节地控制哺乳动物基因表达的系统,该系统可用于探索各种基因的功能作用,以及确定一种表型是否是基因表达变化的阈值反应的结果。