In this paper we describe the development of a Dictyostelium discoideum strain deficient in frataxin protein (FXN). We investigated the conservation of function between humans and D. discoideum and showed that DdFXN can substitute the human version in the interaction and activation of the Fe-S assembly supercomplex. We edited the D. discoideum fxn locus and isolated a defective mutant, clone 8, which presents landmarks of frataxin deficiency, such as a decrease in Fe-S cluster-dependent enzymatic functions, growth rate reduction, and increased sensitivity to oxidative stress. In addition, the multicellular development is affected as well as growing on bacterial lawn.  We also assessed the rescuing capacity of DdFXN-G122V, a version that mimics a human variant present in some FA patients. While the expression of DdFXN-G122V rescues growth and enzymatic activity defects, as DdFXN does, multicellular development defects were only partially rescued. The results of the study suggest that this new D. discoideum strain offers a wide range of possibilities to easily explore diverse FA FXN variants. This can facilitate the development of straightforward drug screenings to look for new therapeutic strategies.
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Research Article|
September 18 2023
CRISPR/Cas9-Based Edition of Frataxin Gene in Dictyostelium discoideum
Hernan Gustavo Gentili;
Hernan Gustavo Gentili
Universidad de Buenos Aires Departamento de Fisiologia Biologia Molecular y Celular, Ciudad Autonoma de Buenos Aires, Argentina
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María Florencia Pignataro;
María Florencia Pignataro
Universidad de Buenos Aires Departamento de Fisiologia Biologia Molecular y Celular, Ciudad Autonoma de Buenos Aires, Argentina
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Justo Facundo Olmos;
Justo Facundo Olmos
Universidad de Buenos Aires Departamento de Fisiologia Biologia Molecular y Celular, Ciudad Autonoma de Buenos Aires, Argentina
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María Florencia Paván;
María Florencia Paván
Universidad de Buenos Aires, Ciudad Autonoma de Buenos Aires, Argentina
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Lorena Itatí Ibáñez;
Lorena Itatí Ibáñez
Universidad de Buenos Aires, Ciudad Autonoma de Buenos Aires, Argentina
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Javier Santos;
Javier Santos
Universidad de Buenos Aires, Buenos Aires, Argentina
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Francisco Velazquez Duarte
Universidad de Buenos Aires Departamento de Fisiologia Biologia Molecular y Celular, Ciudad Autonoma de Buenos Aires, Argentina
* Corresponding Author; email: fvelazquez@fbmc.fcen.uba.ar
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Biochem J (2023) BCJ20230244.
Article history
Received:
June 11 2023
Revision Received:
August 17 2023
Accepted:
September 15 2023
Citation
Hernan Gustavo Gentili, María Florencia Pignataro, Justo Facundo Olmos, María Florencia Paván, Lorena Itatí Ibáñez, Javier Santos, Francisco Velazquez Duarte; CRISPR/Cas9-Based Edition of Frataxin Gene in Dictyostelium discoideum. Biochem J 2023; BCJ20230244. doi: https://doi.org/10.1042/BCJ20230244
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