Related Experiment Video
Updated: Jun 10, 2026

Mouse Genome Engineering Using Designer Nucleases
Published on: April 2, 2014
Transgenic mice expressing an artificial zinc finger regulator targeting an endogenous gene
Claudio Passananti1, Nicoletta Corbi, Annalisa Onori
1IBPM-CNR, Regina Elena Cancer Institute, Rome, Italy.
Abstract:
Zinc finger (ZF) proteins belonging to the Cys2-His2 class provide a simple and versatile framework to design novel artificial transcription factors (ATFs) targeted to the desired genes. Our work is based on ZF ATFs engineered to up-regulate the expression level of the dystrophin-related gene utrophin in Duchenne muscular dystrophy (DMD). In particular, on the basis of the "recognition code" that defines specific rules between zinc finger primary structure and potential DNA-binding sites we engineered and selected a new family of artificial transcription factors, whose DNA-binding domain consists in a three zinc finger peptide called "Jazz." Jazz protein binds specifically the 9 bp DNA sequence (5(')-GCT-GCT-GCG-3(')) present in the promoter region of both the human and mouse utrophin gene. We generated a transgenic mouse expressing Jazz protein fused to the strong transcriptional activation domain VP16 and under the control of the muscle specific promoter of the myosin light chain gene. Vp16-Jazz mice display a strong up-regulation of the utrophin at both mRNA and protein levels. To our knowledge, this represents the first example of a transgenic mouse expressing an artificial gene coding for a zinc finger-based transcription factor.
Related Concept Videos
In-vitro Mutagenesis
Reporter Genes
Commonly used reporter...
Transgenic Organisms

