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Generation of Brown Fat-Specific Knockout Mice Using a Combined Cre-LoxP, CRISPR-Cas9, and Adeno-Associated Virus Single-Guide RNA System
Published on: March 24, 2023
[Construction of a striatum-specific Slc20a2 gene knockout mice model by CRISPR/Cas9 AAV system]
Min Ting Lin1,2, Lu Lu Lai1, Miao Zhao1
1Department of Neurology, the First Affiliated Hospital of Fujian Medical University, Fuzhou 350005, China.
Abstract:
Primary familial brain calcification (PFBC) is a chronic progressive neurogenetic disorder. Its clinical symptoms mainly include dyskinesia, cognitive disorder and mental impairment; and the pathogenesis remains unclear. Studies have shown that SLC20A2 is the most common pathogenic gene of the disease. Since the Slc20a2 gene knockout mouse model could result in fetal growth restriction, in order to better understand the pathogenesis of PFBC, the present study used the CRISPR/Cas9 technology to construct a conditional knockout model of Slc20a2 gene in the striatum of mice. First, three sgRNAs (single guide RNAs) were designed to target the exon3 of Slc20a2 gene. The activity of the respective sgRNA was verified by constructing expression plasmids, transfecting cells and Surveyor assay. Second, the SgRNA with the highest activity was selected to generate the recombinant AAV-Cre virus, which was injected into the striatum of mice by stereotactic method. In vitro experiments showed that the three sgRNAs could effectively mediate Cas9 cleavage of the respective target DNA. The activity of Cre recombinase of the AAV-Cre was confirmed by immunofluorescence assay. Immunohistochemistry, TA clone, high-throughput sequencing and Western blot were used to detect and evaluate the efficiency of Slc20a2 gene knockout. The results showed that the Slc20a2 expression in the striatum of mice in the experimental group decreased significantly. In this study, three sgRNAs capable of knockout of Slc20a2 were successfully designed, and the conditional knockout of the Slc20a2 gene in the striatum of mouse was successfully established by the CRISPR/Cas9 technology, thereby providing an effective animal model for studying the pathogenesis of PFBC.
Insights
Researchers created a new mouse model for Primary Familial Brain Calcification (PFBC) by conditionally knocking out the Slc20a2 gene in the striatum using CRISPR/Cas9 technology.
Area of Science:
- Neurogenetics
- Molecular Biology
- Animal Modeling
Background:
- Primary Familial Brain Calcification (PFBC) is a progressive neurogenetic disorder with unclear pathogenesis.
- The SLC20A2 gene is frequently implicated in PFBC.
- Previous Slc20a2 knockout models presented limitations, such as fetal growth restriction.
Purpose of the Study:
- To develop a conditional knockout mouse model of the Slc20a2 gene in the striatum.
- To investigate the pathogenesis of PFBC.
- To provide a suitable animal model for PFBC research.
Main Methods:
- CRISPR/Cas9 technology was employed to target the Slc20a2 gene.
- Three single guide RNAs (sgRNAs) were designed and validated for efficacy.
- A recombinant AAV-Cre virus was used to induce conditional knockout in the mouse striatum.
- Gene knockout efficiency was assessed using immunohistochemistry, TA cloning, high-throughput sequencing, and Western blot.
Main Results:
- Validated sgRNAs demonstrated effective Cas9-mediated DNA cleavage in vitro.
- Cre recombinase activity was confirmed via immunofluorescence.
- Significant reduction in Slc20a2 expression was observed in the striatum of the experimental group.
- A conditional knockout mouse model for Slc20a2 in the striatum was successfully established.
Conclusions:
- Successfully designed and validated sgRNAs for Slc20a2 gene knockout.
- Established a conditional knockout mouse model of Slc20a2 in the striatum using CRISPR/Cas9.
- This model offers a valuable tool for studying the pathogenesis of Primary Familial Brain Calcification.

