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Published on: April 10, 2018
Knockout mouse models as a resource for the study of rare diseases
Patricia da Silva-Buttkus1, Nadine Spielmann1, Tanja Klein-Rodewald1
1Institute of Experimental Genetics, German Mouse Clinic, Helmholtz Zentrum München, German Research Center for Environmental Health, Ingolstaedter Landstrasse 1, Neuherberg, Germany.
Abstract:
Rare diseases (RDs) are a challenge for medicine due to their heterogeneous clinical manifestations and low prevalence. There is a lack of specific treatments and only a few hundred of the approximately 7,000 RDs have an approved regime. Rapid technological development in genome sequencing enables the mass identification of potential candidates that in their mutated form could trigger diseases but are often not confirmed to be causal. Knockout (KO) mouse models are essential to understand the causality of genes by allowing highly standardized research into the pathogenesis of diseases. The German Mouse Clinic (GMC) is one of the pioneers in mouse research and successfully uses (preclinical) data obtained from single-gene KO mutants for research into monogenic RDs. As part of the International Mouse Phenotyping Consortium (IMPC) and INFRAFRONTIER, the pan-European consortium for modeling human diseases, the GMC expands these preclinical data toward global collaborative approaches with researchers, clinicians, and patient groups.Here, we highlight proprietary genes that when deleted mimic clinical phenotypes associated with known RD targets (Nacc1, Bach2, Klotho alpha). We focus on recognized RD genes with no pre-existing KO mouse models (Kansl1l, Acsf3, Pcdhgb2, Rabgap1, Cox7a2) which highlight novel phenotypes capable of optimizing clinical diagnosis. In addition, we present genes with intriguing phenotypic data (Zdhhc5, Wsb2) that are not presently associated with known human RDs.This report provides comprehensive evidence for genes that when deleted cause differences in the KO mouse across multiple organs, providing a huge translational potential for further understanding monogenic RDs and their clinical spectrum. Genetic KO studies in mice are valuable to further explore the underlying physiological mechanisms and their overall therapeutic potential.
Insights
Mouse models with specific gene knockouts (KO) are crucial for rare disease (RD) research. This study identifies novel genes in KO mice that mimic human RD phenotypes, aiding in diagnosis and understanding disease mechanisms.
Area of Science:
- Genetics and Genomics
- Translational Medicine
- Rare Diseases Research
Background:
- Rare diseases (RDs) present diagnostic and therapeutic challenges due to their diversity and low prevalence.
- Genome sequencing identifies many potential disease-causing genes, but causality often requires experimental validation.
- Knockout (KO) mouse models are vital for standardizing research into disease pathogenesis and gene causality.
Purpose of the Study:
- To identify novel genes in KO mice that exhibit phenotypes relevant to human rare diseases.
- To validate the utility of KO mouse models for understanding monogenic RDs and their clinical spectrum.
- To expand preclinical data for global collaborative research in rare disease modeling.
Main Methods:
- Utilizing the German Mouse Clinic's expertise in generating and phenotyping single-gene KO mouse models.
- Focusing on genes with no pre-existing KO models and those mimicking known RD targets.
- Analyzing phenotypic data across multiple organs in KO mice to identify disease-relevant differences.
Main Results:
- Highlighted proprietary genes (Nacc1, Bach2, Klotho alpha) whose deletion mimics known RD phenotypes.
- Identified novel phenotypes in KO mice for RD genes lacking prior models (Kansl1l, Acsf3, Pcdhgb2, Rabgap1, Cox7a2).
- Presented intriguing phenotypic data for genes (Zdhhc5, Wsb2) not yet linked to human RDs.
Conclusions:
- KO mouse studies provide comprehensive evidence for gene causality in rare disease phenotypes.
- These findings have significant translational potential for improving RD diagnosis and understanding disease mechanisms.
- Genetic KO studies in mice are essential for exploring underlying physiology and therapeutic strategies for rare diseases.
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