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Gene Editing of the Endogenous Cryptic 3¢ Splice Site Corrects the RNA Splicing Defect in the b654-Thalassemia Mouse Model

  • Dan Lu
  • , Xiuli Gong
  • , Xinbing Guo
  • , Qin Cai
  • , Yanwen Chen
  • , Yiwen Zhu
  • , Xiao Sang
  • , Hua Yang
  • , Miao Xu
  • , Yitao Zeng*
  • , Dali Li*
  • , Fanyi Zeng*
  • *此作品的通讯作者
  • Shanghai Jiao Tong University
  • Shanghai Key Laboratory of Embryo and Reproduction Engineering
  • Macau University of Science and Technology

科研成果: 期刊稿件文章同行评审

摘要

b654-thalassemia is caused by a point mutation in the second intron (IVS-II) of the b-globin gene that activates a cryptic 3¢ splice site, leading to incorrect RNA splicing. Our previous study demonstrated that when direct deletion of the b654 mutation sequence or the cryptic 3¢ splice site in the IVS-II occurs, correct splicing of b-globin mRNA can be restored. Herein, we conducted an in-depth analysis to explore a more precise gene-editing method for treating b654-thalassemia. A single-base substitution of the cryptic 3¢ acceptor splice site was introduced in the genome of a b654-thalassemia mouse model using clustered regularly interspaced short palindromic repeats (CRISPR)–CRISPR-associated protein 9(Cas9)-mediated homology-directed repair (HDR). All of the HDR-edited mice allow the detection of correctly spliced b-globin mRNA. Pathological changes were improved compared with the nonedited b654 mice. This resulted in a more than twofold increase in the survival rate beyond the weaning age of the mice carrying the b654 allele. The therapeutic effects of this gene-editing strategy showed that the typical b-thalassemia phenotype can be improved in a dose-dependent manner when the frequency of HDR is over 20%. Our research provides a unique and effective method for correcting the splicing defect by gene editing the reactive splicing acceptor site in a b654 mouse model.

源语言英语
页(从-至)825-837
页数13
期刊Human Gene Therapy
35
19-20
DOI
出版状态已出版 - 1 10月 2024

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