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Efficient suppression of endogenous CFTR nonsense mutations using anticodon-engineered transfer RNAs

Mol Ther Nucleic Acids. 2022-05; 
Wooree Ko, Joseph J Porter, Matthew T Sipple, Katherine M Edwards, John D Lueck
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PCR Cloning and Subcloning … , pBR322 origin; short ubiquitin C promoter (UbC)-puromycin N-acetyltransferase-SV40 pA; and EcoRV, PmlI, PmeI, and SmaI multiple cloning site in pUC57 was synthesized (Genscript Get A Quote

摘要

Nonsense mutations or premature termination codons (PTCs) comprise ∼11% of all genetic lesions, which result in over 7,000 distinct genetic diseases. Due to their outsized impact on human health, considerable effort has been made to find therapies for nonsense-associated diseases. Suppressor tRNAs have long been identified as a possible therapeutic for nonsense-associated diseases; however, their ability to inhibit nonsense-mediated mRNA decay (NMD) and support significant protein translation from endogenous transcripts has not been determined in mammalian cells. Here, we investigated the ability of anticodon edited (ACE)-tRNAs to suppress cystic fibrosis (CF) causing PTCs in the cystic fibrosis transmembrane... More

关键词

CFTR, MT: Oligonucleotides: Therapies and Applications, cystic fibrosis, nonsense mutation, nonsense suppressor tRNA, nonsense therapy, nonsense-mediated decay, premature termination codon