The artificial 4-zinc-finger protein Bagly binds human utrophin promoter A at the endogenous chromosomal site and activates transcription

Author:

Onori Annalisa12345,Desantis Agata12345,Buontempo Serena12345,Di Certo Maria Grazia12345,Fanciulli Maurizio12345,Salvatori Luisa12345,Passananti Claudio12345,Corbi Nicoletta12345

Affiliation:

1. Istituto di Biologia e Patologia Molecolari, CNR, c/o Regina Elena Cancer Institute, Via delle Messi d’Oro 156, 00158 Rome, Italy.

2. Department of Experimental Medicine, University of L'Aquila, Via Vetoio, Coppito 2, 67100 L'Aquila, Italy.

3. Istituto di Neurobiologia e Medicina Molecolare, CNR, c/o EBRI, Via del Fosso di Fiorano 64, 00143 Rome, Italy.

4. Laboratory “B”, Regina Elena Cancer Institute, Via delle Messi d’Oro 156, 00158 Rome, Italy.

5. AIRC-Rome Oncogenomic Center (ROC), Via delle Messi d’Oro 156, 00158 Rome, Italy.

Abstract

Our aim is to upregulate the expression of the dystrophin-related gene utrophin in Duchenne muscular dystrophy, in this way complementing the lack of dystrophin function. To achieve utrophin upregulation, we designed and engineered synthetic zinc-inger based transcription factors. We have previously shown that the artificial 3-zinc-finger protein Jazz, fused with the appropriate effector domain, is able to drive the transcription of a test gene from utrophin promoter A. Here we report a novel artificial 4-zinc-finger protein, Bagly, which binds with optimized affinity–specificity to a 12 bp DNA target sequence that is internal to human utrophin promoter A. Bagly was generated adding to Jazz protein an extra-fourth zinc finger, derived from transcription factor YY1. Importantly, the Bagly DNA target sequence is statistically present in the human genome only 210 times, about 60 fewer times than the 9 bp Jazz DNA target sequence. Thanks to its additional zinc-finger domain, Bagly protein shows enhanced transcriptional activity. Moreover, we demonstrated Bagly's effective access and binding to active chromatin in the chromosomal context and its ability to upregulate endogenous utrophin.

Publisher

Canadian Science Publishing

Subject

Cell Biology,Molecular Biology,Biochemistry

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