4.4 Article

Increased CFTR expression and function from an optimized lentiviral vector for cystic fibrosis gene therapy

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出版社

CELL PRESS
DOI: 10.1016/j.omtm.2021.02.020

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资金

  1. NIH [F31 HL152500, UG3 HL147366, P01 HL51670, P01 HL091842, P01 HL152960, R01DK107489, T32 GM007337]
  2. Cystic Fibrosis Foundation
  3. University of Iowa Center for Gene Therapy [DK54759]
  4. Roy J. Carver Chair in Pulmonary Research

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This study investigated promoter choice and CFTR codon optimization as strategies to regulate CFTR expression. The results showed that EF1 alpha produced greater currents than PGK, and identified a coCFTR sequence that conferred significantly increased functional CFTR expression. Optimal promoter and CFTR sequences advance lentiviral vectors towards CF gene therapy clinical trials.
Despite significant advances in cystic fibrosis (CF) treatments, a one-time treatment for this life-shortening disease remains elusive. Stable complementation of the disease-causing mutation with a normal copy of the CF transmembrane conductance regulator (CFTR) gene fulfills that goal. Integrating lentiviral vectors are well suited for this purpose, but widespread airway transduction in humans is limited by achievable titers and delivery barriers. Since airway epithelial cells are interconnected through gap junctions, small numbers of cells expressing supraphysiologic levels of CFTR could support sufficient channel function to rescue CF phenotypes. Here, we investigated promoter choice and CFTR codon optimization (coCFTR) as strategies to regulate CFTR expression. We evaluated two promoters-phosphoglycerate kinase (PGK) and elongation factor 1-alpha (EF1 alpha)-that have been safely used in clinical trials. We also compared the wild-type human CFTR sequence to three alternative coCFTR sequences generated by different algorithms. With the use of the CFTR-mediated anion current in primary human CF airway epithelia to quantify channel expression and function, we determined that EF1 alpha produced greater currents than PGK and identified a coCFTR sequence that conferred significantly increased functional CFTR expression. Optimized promoter and CFTR sequences advance lentiviral vectors toward CF gene therapy clinical trials.

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