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Published on: October 16, 2016
Keratin promoter based gene manipulation in the murine conducting airway
Stephen P Malkoski1, Timothy G Cleaver, Shi-Long Lu
1Division of Pulmonary Sciences and Critical Care Medicine, University of Colorado Denver Health Sciences Center, Aurora, CO, USA. Stephen.Malkoski@ucdenver.edu
Abstract:
Systems capable of targeting genetic manipulations to keratin-positive airway basal cells are more poorly developed than systems targeting other airway epithelial cell populations and this has likely hindered development of animal models of diseases such as lung squamous cell carcinoma. Although keratin promoter driven-Cre recombinase constructs are potentially useful for targeting these cells, these constructs have substantially higher activity in the skin and oral epithelium than in the airways. We developed a method for delivering RU486, the conditional activator of Cre recombinase progesterone receptor (CrePR) fusion proteins to the lung and then examined the activity of three keratin-driven CrePR constructs in the conducting airways. We also developed a technique for survival bronchioalveolar lavage on non-ventilated animals to examine the effects of the acetone/oil vehicle required to deliver RU486 to the lung. K5CrePR1 and K14CrePR1 constructs differ only in the keratin promoter used to target CrePR1 expression while K5Cre*PR contains a truncated progesterone receptor designed to reduce RU486-independent Cre activity. While all three constructs demonstrate RU486-inducible Cre activity in the conducting airways, both construct activity and tightness of regulation vary considerably. K5Cre*PR is the most tightly regulated Cre driver making it ideal for targeting somatic mutations to the airway epithelia while K5CrePR1 and K14CrePR1 may be better suited to studying diseases of the conducting airways where gene targeting of keratin expressing cells and their derivatives is desired.
Insights
Researchers developed new methods to target gene editing in airway basal cells for lung cancer models. The K5Cre*PR system offers the tightest regulation for precise genetic manipulation in the airway epithelium.
Area of Science:
- Pulmonary Medicine
- Genetics
- Molecular Biology
Background:
- Targeting genetic manipulations to airway basal cells is challenging, hindering lung disease model development.
- Keratin promoter-driven Cre recombinase constructs show higher activity in skin/oral epithelium than airways.
Purpose of the Study:
- To develop and evaluate keratin promoter-driven Cre recombinase progesterone receptor (CrePR) constructs for targeting airway basal cells.
- To establish methods for delivering CrePR activators and assessing construct activity in conducting airways.
Main Methods:
- Developed RU486 delivery to the lung for CrePR activation.
- Examined three keratin-driven CrePR constructs (K5CrePR1, K14CrePR1, K5Cre*PR) in conducting airways.
- Utilized survival bronchioalveolar lavage to assess vehicle effects.
Main Results:
- All three constructs showed RU486-inducible Cre activity in conducting airways.
- Significant variation in construct activity and regulation was observed.
- K5Cre*PR demonstrated the tightest regulation, ideal for somatic mutation targeting.
Conclusions:
- K5Cre*PR is optimal for precise airway epithelial gene targeting.
- K5CrePR1 and K14CrePR1 are suitable for studying diseases involving keratin-expressing airway cells and derivatives.

