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A Drosophila model to screen Alport syndrome COL4A5 variants for their functional pathogenicity

Duan, J.; Wen, P.; Zhao, Y.; van de Leemput, J.; Lai, J.; Fermin, D.; Warady, B. A.; Furth, S. L.; Ng, D. K.; Sampson, M.; Han, Z.

2024-03-11 genetics
10.1101/2024.03.06.583697 bioRxiv
Show abstract

Alport syndrome is a hereditary chronic kidney disease, attributed to rare pathogenic variants in either of three collagen genes (COL4A3/4/5) with most localized in COL4A5. Trimeric type IV Collagen 345 is essential for the glomerular basement membrane that forms the kidney filtration barrier. A means to functionally assess the many candidate variants and determine pathogenicity is urgently needed. We used Drosophila, an established model for kidney disease, and identify Col4a1 as the functional homolog of human COL4A5 in the fly nephrocyte (equivalent of human podocyte). Fly nephrocytes deficient for Col4a1 showed an irregular and thickened basement membrane and significantly reduced nephrocyte filtration function. This phenotype was restored by expressing human reference (wildtype) COL4A5, but not by COL4A5 carrying any of three established pathogenic patient-derived variants. We then screened seven additional patient COL4A5 variants; their ClinVar classification was either likely pathogenic or of uncertain significance. The findings support pathogenicity for four of these variants; the three others were found benign. Thus, demonstrating the effectiveness of this Drosophila in vivo kidney platform in providing the urgently needed variant-level functional validation. SUMMARY STATEMENTDrosophila, an established model of kidney disease, was used to develop an in vivo functional screen to determine causation for COL4A5 genetic variants linked to Alport syndrome, a progressive nephropathy.

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