Novel transgenic mice with Cre-dependent co-expression of GFP and human ACE2: a safe tool for study of COVID-19 pathogenesis
Autor: | Alexandra V. Bruter, Leonid A. Ilchuk, Eugenii N. Korshunov, Diana S. Korshunova, Alexey V. Deykin, Y.Y. Silaeva, A A Kalinina, Vladislav O. Soldatov, Petr V. Sergiev, Marina V. Kubekina |
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Jazyk: | angličtina |
Rok vydání: | 2021 |
Předmět: |
0106 biological sciences
0301 basic medicine Genetically modified mouse Transgene Cre recombinase ACE2 Biology medicine.disease_cause 01 natural sciences Cre-recombinase Green fluorescent protein Pathogenesis 03 medical and health sciences Genetics medicine Transgenes Receptor Coronavirus Original Paper SARS-CoV-2 fungi COVID-19 Molecular medicine Cell biology Tamoxifen 030104 developmental biology Animal Science and Zoology Agronomy and Crop Science 010606 plant biology & botany Biotechnology |
Zdroj: | Transgenic Research |
ISSN: | 1573-9368 0962-8819 |
Popis: | Graphic abstract The current coronavirus disease (COVID-19) pandemic remains one of the most serious public health problems. Increasing evidence shows that infection by severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2) causes a very complex and multifaceted disease that requires detailed study. Nevertheless, experimental research on COVID-19 remains challenging due to the lack of appropriate animal models. Herein, we report novel humanized mice with Cre-dependent expression of hACE2, the main entry receptor of SARS-CoV-2. These mice carry hACE2 and GFP transgenes floxed by the STOP cassette, allowing them to be used as breeders for the creation of animals with tissue-specific coexpression of hACE2 and GFP. Moreover, inducible expression of hACE2 makes this line biosafe, whereas coexpression with GFP simplifies the detection of transgene-expressing cells. In our study, we tested our line by crossing with Ubi-Cre mice, characterized by tamoxifen-dependent ubiquitous activation of Cre recombinase. After tamoxifen administration, the copy number of the STOP cassette was decreased, and the offspring expressed hACE2 and GFP, confirming the efficiency of our system. We believe that our model can be a useful tool for studying COVID-19 pathogenesis because the selective expression of hACE2 can shed light on the roles of different tissues in SARS-CoV-2-associated complications. Obviously, it can also be used for preclinical trials of antiviral drugs and new vaccines. |
Databáze: | OpenAIRE |
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