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Quantification of the Respiratory Burst Response as an Indicator of Innate Immune Health in Zebrafish
Published on: September 12, 2013
Baseline and innate immune response characterization of a Zfp30 knockout mouse strain
Lucas T Laudermilk1,2, Adelaide Tovar1,2, Alison K Homstad1,2
1Department of Genetics, University of North Carolina, 120 Mason Farm Road, Chapel Hill, NC, 27599, USA.
Abstract:
Airway neutrophilia is correlated with disease severity in a number of chronic and acute pulmonary diseases, and dysregulation of neutrophil chemotaxis can lead to host tissue damage. The gene Zfp30 was previously identified as a candidate regulator of neutrophil recruitment to the lungs and secretion of CXCL1, a potent neutrophil chemokine, in a genome-wide mapping study using the Collaborative Cross. ZFP30 is a putative transcriptional repressor with a KRAB domain capable of inducing heterochromatin formation. Using a CRISPR-mediated knockout mouse model, we investigated the role that Zfp30 plays in recruitment of neutrophils to the lung using models of allergic airway disease and acute lung injury. We found that the Zfp30 null allele did not affect CXCL1 secretion or neutrophil recruitment to the lungs in response to various innate immune stimuli. Intriguingly, despite the lack of neutrophil phenotype, we found there was a significant reduction in the proportion of live Zfp30 homozygous female mutant mice produced from heterozygous matings. This deviation from the expected Mendelian ratios implicates Zfp30 in fertility or embryonic development. Overall, our results indicate that Zfp30 is an essential gene but does not influence neutrophilic inflammation in this particular knockout model.
Insights
The gene Zfp30 does not regulate neutrophil recruitment to the lungs in mouse models. However, Zfp30 is essential, as homozygous females show reduced viability, suggesting a role in fertility or embryonic development.
Area of Science:
- Immunology
- Genetics
- Developmental Biology
Background:
- Airway neutrophilia is linked to pulmonary disease severity.
- Neutrophil chemotaxis dysregulation can cause tissue damage.
- Zfp30 was a candidate regulator of lung neutrophil recruitment and CXCL1 secretion.
Purpose of the Study:
- To investigate Zfp30's role in lung neutrophil recruitment using mouse models.
- To determine if Zfp30 influences neutrophilic inflammation in allergic airway disease and acute lung injury.
Main Methods:
- CRISPR-mediated knockout mouse model for Zfp30.
- Assessment of neutrophil recruitment to the lungs.
- Analysis of CXCL1 chemokine secretion.
- Evaluation of Mendelian ratios in offspring from heterozygous matings.
Main Results:
- Zfp30 knockout did not affect CXCL1 secretion or neutrophil recruitment.
- No significant difference in lung neutrophilia was observed in Zfp30 null mice.
- A significant reduction in live Zfp30 homozygous female mice was observed.
- This suggests Zfp30 is essential for fertility or embryonic development.
Conclusions:
- Zfp30 is not essential for regulating neutrophilic inflammation in the lung in this model.
- Zfp30 plays a critical role in mouse fertility or embryonic development.
- Further research is needed to elucidate Zfp30's function in reproduction and development.

