Use of adenine base editing and homology-independent targeted integration strategies to correct the cystic fibrosis causing variant, W1282X

Author:

Mention Karen12,Cavusoglu-Doran Kader1,Joynt Anya T3,Santos Lúcia145,Sanz David1,Eastman Alice C3ORCID,Merlo Christian67,Langfelder-Schwind Elinor8,Scallan Martina F2,Farinha Carlos M45,Cutting Garry R3,Sharma Neeraj3,Harrison Patrick T1ORCID

Affiliation:

1. Department of Physiology, University College Cork , College Road, Cork, T12 K8AF , Ireland

2. School of Microbiology, University College Cork , College Road, Cork, T12 K8AF , Ireland

3. McKusick-Nathans Department of Genetic Medicine, Johns Hopkins University , 3400 N. Charles Street, Baltimore, MD 21218 , United States

4. Faculty of Sciences , BioISI - Biosystems & Integrative Sciences Institute, , Campo Grande, C8 bdg, Lisboa 1749-016 , Portugal

5. University of Lisboa , BioISI - Biosystems & Integrative Sciences Institute, , Campo Grande, C8 bdg, Lisboa 1749-016 , Portugal

6. Division of Pulmonary and Critical Care Medicine , Department of Medicine, , 1800 Orleans St, Baltimore, MD 21287 , United States

7. Johns Hopkins Hospital , Department of Medicine, , 1800 Orleans St, Baltimore, MD 21287 , United States

8. The Cystic Fibrosis Center, Lenox Hill Hospital , 100 E. 77th Street, 4E, New York, NY 10075 , United States

Abstract

Abstract Small molecule drugs known as modulators can treat ~90% of people with cystic fibrosis (CF), but do not work for premature termination codon variants such as W1282X (c.3846G>A). Here we evaluated two gene editing strategies, Adenine Base Editing (ABE) to correct W1282X, and Homology-Independent Targeted Integration (HITI) of a CFTR superexon comprising exons 23–27 (SE23–27) to enable expression of a CFTR mRNA without W1282X. In Flp-In-293 cells stably expressing a CFTR expression minigene bearing W1282X, ABE corrected 24% of W1282X alleles, rescued CFTR mRNA from nonsense mediated decay and restored protein expression. However, bystander editing at the adjacent adenine (c.3847A>G), caused an amino acid change (R1283G) that affects CFTR maturation and ablates ion channel activity. In primary human nasal epithelial cells homozygous for W1282X, ABE corrected 27% of alleles, but with a notably lower level of bystander editing, and CFTR channel function was restored to 16% of wild-type levels. Using the HITI approach, correct integration of a SE23–27 in intron 22 of the CFTR locus in 16HBEge W1282X cells was detected in 5.8% of alleles, resulting in 7.8% of CFTR transcripts containing the SE23–27 sequence. Analysis of a clonal line homozygous for the HITI-SE23–27 produced full-length mature protein and restored CFTR anion channel activity to 10% of wild-type levels, which could be increased three-fold upon treatment with the triple combination of CF modulators. Overall, these data demonstrate two different editing strategies can successfully correct W1282X, the second most common class I variant, with a concomitant restoration of CFTR function.

Funder

Cystic Fibrosis Foundation

Cystic Fibrosis Trust

Research Innovation award from Vertex Pharmaceuticals

Centre grants from Fundação para a Ciência e a Tecnologia, Portugal

Fundação para a Ciência e a Tecnologia

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,General Medicine

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