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A Protocol for Multiple Gene Knockout in Mouse Small Intestinal Organoids Using a CRISPR-concatemer
Published on: July 12, 2017
Onecut-2 knockout mice fail to thrive during early postnatal period and have altered patterns of gene expression in
Mary R Dusing1, Elizabeth A Maier, Bruce J Aronow
1Division of Developmental Biology, Department of Pediatrics, University of Cincinnati College of Medicine, Cincinnati, Ohio 45229-3039, USA.
Abstract:
Ablation of the mouse genes for Onecut-2 and Onecut-3 was reported previously, but characterization of the resulting knockout mice was focused on in utero development, principally embryonic development of liver and pancreas. Here we examined postnatal development of these Onecut knockout mice, especially the critical period before weaning. Onecut-3 knockout mice develop normally during this period. However, Onecut-2 knockout mice fail to thrive, lagging behind their littermates in size and weight. By postnatal day (d)19, they are consistently 25-30% smaller. Onecut-2 knockout mice also have a much higher level of mortality before weaning, with only approximately 70% survival. Interestingly, Onecut-2 knockout mice that are heterozygous for the Onecut-3 knockout allele are diminished even further in their ability to thrive. They are approximately 50-60% as large as their normal-sized littermates at d19, and less than half of these mice survive to weaning. As reported previously, the Onecut-2/Onecut-3 double knockout is a perinatal lethal. Microarray technology was used to determine the effect of Onecut-2 ablation on gene expression in duodenum, whose epithelium has among the highest levels of Onecut-2. A subset of intestinally expressed genes showed dramatically altered patterns of expression. Many of these genes encode proteins associated with the epithelial membrane, including many involved in transport and metabolism. Previously, we reported that Onecut-2 was critical to temporal regulation of the adenosine deaminase gene in duodenum. Many of the genes with altered patterns of expression in Onecut-2 knockout mouse duodenum displayed changes in the timing of gene expression.
Insights
Postnatal development is impaired in Onecut-2 knockout mice, showing reduced growth and survival. Combined deficiency with Onecut-3 exacerbates these Onecut-2 knockout phenotypes, impacting intestinal gene expression.
Area of Science:
- Developmental Biology
- Genetics
- Molecular Biology
Background:
- Previous studies focused on embryonic development of Onecut-2 and Onecut-3 knockout mice.
- Postnatal development, particularly before weaning, requires further characterization.
Purpose of the Study:
- To investigate the postnatal development of Onecut-2 and Onecut-3 knockout mice.
- To analyze the impact of Onecut-2 deficiency on gene expression in the duodenum.
Main Methods:
- Generation and observation of Onecut-2 and Onecut-3 single and compound knockout mice.
- Microarray analysis of gene expression in the duodenum of Onecut-2 knockout mice.
Main Results:
- Onecut-2 knockout mice exhibit failure to thrive, reduced size, and increased mortality before weaning.
- Compound heterozygosity for Onecut-3 exacerbates Onecut-2 knockout phenotypes.
- Gene expression analysis revealed altered patterns in duodenal genes, particularly those involved in epithelial membrane transport and metabolism.
Conclusions:
- Onecut-2 is crucial for normal postnatal development and survival in mice.
- Onecut-2 plays a significant role in regulating temporal gene expression in the intestinal epithelium.
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