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APOL1-G2 accelerates nephrocyte cell death by inhibiting the autophagy pathway
Jun-Yi Zhu1,2, Jin-Gu Lee1,2, Yulong Fu1
1Center for Precision Disease Modeling, Department of Medicine, University of Maryland School of Medicine, Baltimore, MD 21201, USA.
Abstract:
People of African ancestry who carry the APOL1 risk alleles G1 or G2 are at high risk of developing kidney diseases through not fully understood mechanisms that impair the function of podocytes. It is also not clear whether the APOL1-G1 and APOL1-G2 risk alleles affect these cells through similar mechanisms. Previously, we have developed transgenic Drosophila melanogaster lines expressing either the human APOL1 reference allele (G0) or APOL1-G1 specifically in nephrocytes, the cells homologous to mammalian podocytes. We have found that nephrocytes that expressed the APOL1-G1 risk allele display accelerated cell death, in a manner similar to that of cultured human podocytes and APOL1 transgenic mouse models. Here, to compare how the APOL1-G1 and APOL1-G2 risk alleles affect the structure and function of nephrocytes in vivo, we generated nephrocyte-specific transgenic flies that either expressed the APOL1-G2 or both G1 and G2 (G1G2) risk alleles on the same allele. We found that APOL1-G2- and APOL1-G1G2-expressing nephrocytes developed more severe changes in autophagic pathways, acidification of organelles and the structure of the slit diaphragm, compared to G1-expressing nephrocytes, leading to their premature death. We conclude that both risk alleles affect similar key cell trafficking pathways, leading to reduced autophagy and suggesting new therapeutic targets to prevent APOL1 kidney diseases.
Insights
The APOL1-G2 risk allele causes more severe kidney cell damage than APOL1-G1 by disrupting cell trafficking and autophagy. This finding offers new therapeutic targets for APOL1-mediated kidney diseases.
Area of Science:
- Genetics and Molecular Biology
- Nephrology
- Cell Biology
Background:
- APOL1 risk alleles (G1, G2) in people of African ancestry are linked to kidney disease.
- Mechanisms by which APOL1 risk alleles impair podocyte function are not fully understood.
- It remains unclear if APOL1-G1 and APOL1-G2 affect podocytes via similar pathways.
Purpose of the Study:
- To compare the in vivo effects of APOL1-G1 and APOL1-G2 risk alleles on nephrocytes (Drosophila melanogaster podocyte homologs).
- To investigate whether APOL1-G1 and APOL1-G2 impact nephrocyte structure and function through similar mechanisms.
Main Methods:
- Generated nephrocyte-specific transgenic Drosophila melanogaster expressing human APOL1-G0 (reference), APOL1-G1, APOL1-G2, or APOL1-G1G2 risk alleles.
- Assessed nephrocyte cell death, autophagic pathways, organelle acidification, and slit diaphragm structure.
Main Results:
- Nephrocytes expressing APOL1-G1 showed accelerated cell death, consistent with previous models.
- APOL1-G2 and APOL1-G1G2 expression led to more severe defects in autophagy, organelle acidification, and slit diaphragm structure compared to APOL1-G1.
- Both risk alleles induced premature nephrocyte death.
Conclusions:
- APOL1-G1 and APOL1-G2 risk alleles impair similar key cell trafficking pathways, including autophagy.
- These findings suggest novel therapeutic targets for preventing APOL1-mediated kidney diseases.
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