生物医学
计算生物学
合成生物学
基因表达
基因
抄写(语言学)
生物
细胞生物学
核糖核酸
基因表达调控
转录因子
化学
蛋白质表达
计算机科学
表达式(计算机科学)
信使核糖核酸
小发夹RNA
核糖开关
HEK 293细胞
药物发现
细胞培养
RNA干扰
系统生物学
构造(python库)
蛋白质生物合成
细胞
生物系统
基因敲除
荧光素酶
纳米技术
转录调控
作者
Doaa Ali‐Naffaa,Roee Samuel,Orr Bar Natan,Yosi Shamay,Ramez Daniel
标识
DOI:10.1021/acssynbio.5c00019
摘要
Synthetic and native switchable genetic expression systems are extensively used in basic research and a wide range of applications in biomedicine and biotechnology. Leakiness, which represents promoter activity prior to the presence of an appropriate instigator, could have negative consequences ranging from ineffective biological sensor systems to toxic side effects in medical applications. Here, we construct an auxiliary RNA-based augmentation system rooted in mutual inhibition that can be added to existing systems without modifying the involved transcription factors, promoters, or output genes. This system utilizes a constitutively expressed small hairpin RNA to reduce the expression level of a target gene, which is governed by a responsive promoter. Additionally, a second promoter, identical to the output promoter, drives the expression of a binding-site sponge specifically designed to sequester the shRNA, thereby mitigating its inhibitory effect. Following mathematical modeling, we examine the experimental effectiveness of the system in reducing the leakiness and enhancing the fold change of the doxycycline-inducible Tet-On system tested in a two- and three-dimensional spheroid setting, a GAL4-inducible system, and a native cancer-specific promoter-pH2A1.
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