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工程化锌指转录因子可激活OCT4(POU5F1)、SOX2、KLF4、c-MYC(MYC)和miR302/367。

Engineered zinc-finger transcription factors activate OCT4 (POU5F1), SOX2, KLF4, c-MYC (MYC) and miR302/367.

作者信息

Ji Qingzhou, Fischer Ashley L, Brown Clyde R, Eastlund Erik R, Dvash Tamar, Zhong Bonan, Gerber Mark A, Lyons Ian, Knight Scott W, Kreader Carol A

机构信息

Sigma-Aldrich Corporation, Saint Louis, MO 63103, USA.

Sigma-Aldrich Corporation, Saint Louis, MO 63103, USA

出版信息

Nucleic Acids Res. 2014 Jun;42(10):6158-67. doi: 10.1093/nar/gku243. Epub 2014 May 3.

Abstract

Artificial transcription factors are powerful tools for regulating gene expression. Here we report results with engineered zinc-finger transcription factors (ZF-TFs) targeting four protein-coding genes, OCT4, SOX2, KLF4 and c-MYC, and one noncoding ribonucleic acid (RNA) gene, the microRNA (miRNA) miR302/367 cluster. We designed over 300 ZF-TFs whose targets lie within 1 kb of the transcriptional start sites (TSSs), screened them for increased messenger RNA or miRNA levels in transfected cells, and identified potent ZF-TF activators for each gene. Furthermore, we demonstrate that selected ZF-TFs function with alternative activation domains and in multiple cell lines. For OCT4, we expanded the target range to -2.5 kb and +500 bp relative to the TSS and identified additional active ZF-TFs, including three highly active ZF-TFs targeting distal enhancer, proximal enhancer and downstream from the proximal promoter. Chromatin immunoprecipitation (FLAG-ChIP) results indicate that several inactive ZF-TFs targeting within the same regulatory region bind as well as the most active ZF-TFs, suggesting that efficient binding within one of these regulatory regions may be necessary but not sufficient for activation. These results further our understanding of ZF-TF design principles and corroborate the use of ZF-TFs targeting enhancers and downstream from the TSS for transcriptional activation.

摘要

人工转录因子是调控基因表达的强大工具。在此,我们报告了针对四个蛋白质编码基因(OCT4、SOX2、KLF4和c-MYC)以及一个非编码核糖核酸(RNA)基因——微小RNA(miRNA)miR302/367簇设计的工程化锌指转录因子(ZF-TF)的研究结果。我们设计了300多种ZF-TF,其靶点位于转录起始位点(TSS)的1 kb范围内,筛选这些因子以提高转染细胞中信使RNA或miRNA的水平,并确定了每个基因的有效ZF-TF激活剂。此外,我们证明了所选的ZF-TF与替代激活域一起在多种细胞系中发挥作用。对于OCT4,我们将相对于TSS的靶点范围扩大到-2.5 kb和+500 bp,并确定了其他活性ZF-TF,包括三个靶向远端增强子、近端增强子和近端启动子下游的高活性ZF-TF。染色质免疫沉淀(FLAG-ChIP)结果表明,几个靶向同一调控区域的无活性ZF-TF与最活跃的ZF-TF结合能力相同,这表明在这些调控区域之一内的有效结合可能是激活所必需的,但并不充分。这些结果加深了我们对ZF-TF设计原则的理解,并证实了使用靶向增强子和TSS下游的ZF-TF进行转录激活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ede/4041418/6cd9bb897c24/gku243fig1.jpg

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