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工程化转录激活因子样效应物二聚体蛋白赋予 DNA 环依赖性基因抑制作用,可与 Lac 阻遏物相媲美。

Engineered transcription activator-like effector dimer proteins confer DNA loop-dependent gene repression comparable to Lac repressor.

机构信息

Department of Biochemistry and Molecular Biology, Mayo Clinic College of Medicine and Science, Rochester, MN 55905, USA.

Department of Chemistry and Biochemistry, University of Northern Iowa, Cedar Falls, IA 50614, USA.

出版信息

Nucleic Acids Res. 2024 Sep 9;52(16):9996-10004. doi: 10.1093/nar/gkae656.

Abstract

Natural prokaryotic gene repression systems often exploit DNA looping to increase the local concentration of gene repressor proteins at a regulated promoter via contributions from repressor proteins bound at distant sites. Using principles from the Escherichia coli lac operon we design analogous repression systems based on target sequence-programmable Transcription Activator-Like Effector dimer (TALED) proteins. Such engineered switches may be valuable for synthetic biology and therapeutic applications. Previous TALEDs with inducible non-covalent dimerization showed detectable, but limited, DNA loop-based repression due to the repressor protein dimerization equilibrium. Here, we show robust DNA loop-dependent bacterial promoter repression by covalent TALEDs and verify that DNA looping dramatically enhances promoter repression in E. coli. We characterize repression using a thermodynamic model that quantitates this favorable contribution of DNA looping. This analysis unequivocally and quantitatively demonstrates that optimized TALED proteins can drive loop-dependent promoter repression in E. coli comparable to the natural LacI repressor system. This work elucidates key design principles that set the stage for wide application of TALED-dependent DNA loop-based repression of target genes.

摘要

天然原核基因抑制系统通常利用 DNA 环化作用,通过结合在远处的抑制蛋白来增加调控启动子处的局部基因抑制蛋白浓度。我们基于大肠杆菌 lac 操纵子的原理,设计了基于靶序列可编程转录激活子样效应物二聚体(TALED)的类似抑制系统。这种工程开关在合成生物学和治疗应用中可能很有价值。先前具有诱导型非共价二聚化的 TALED 显示出基于 DNA 环的可检测但有限的抑制作用,这是由于抑制蛋白二聚化平衡所致。在这里,我们展示了通过共价 TALED 实现的稳健的基于 DNA 环的细菌启动子抑制,并验证了 DNA 环显著增强了大肠杆菌中的启动子抑制。我们使用热力学模型来对该抑制作用进行特征描述,定量分析了 DNA 环的有利贡献。该分析明确且定量地表明,优化后的 TALED 蛋白可以在大肠杆菌中驱动依赖于环的靶基因启动子抑制,与天然 LacI 抑制系统相当。这项工作阐明了关键的设计原则,为 TALED 依赖的基于 DNA 环的靶基因抑制的广泛应用奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23a2/11381355/e1f5752617de/gkae656figgra1.jpg

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