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Disease modeling of ADAMTS9-related nephropathy using kidney organoids reveals its roles in tubular cells and podocytes.


ABSTRACT:

Introduction

Mutations in ADAMTS9 cause nephronophthisis-related ciliopathies (NPHP-RC), which are characterized by multiple developmental defects and kidney diseases. Patients with NPHP-RC usually have normal glomeruli and negligible or no proteinuria. Herein, we identified novel compound-heterozygous ADAMTS9 variants in two siblings with NPHP-RC who had glomerular manifestations, including proteinuria.

Methods

To investigate whether ADAMTS9 dysfunction causes NPHP and glomerulopathy, we differentiated ADAMTS9 knockout human induced pluripotent stem cells (hiPSCs) into kidney organoids. Single-cell RNA sequencing was utilized to elucidate the gene expression profiles from the ADAMTS9 knockout kidney organoids.

Results

ADAMTS9 knockout had no effect on nephron differentiation; however, it reduced the number of primary cilia, thereby recapitulating renal ciliopathy. Single-cell transcriptomics revealed that podocyte clusters express the highest levels of ADAMTS9, followed by the proximal tubules. Loss of ADAMTS9 increased the activity of multiple signaling pathways, including the Wnt/PCP signaling pathway, in podocyte clusters.

Conclusions

Mutations in ADMATS9 cause a glomerulotubular nephropathy in kidney and our study provides insights into the functional roles of ADMATS9 in glomeruli and tubules.

SUBMITTER: Yu S 

PROVIDER: S-EPMC10079903 | biostudies-literature | 2023

REPOSITORIES: biostudies-literature

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Publications

Disease modeling of ADAMTS9-related nephropathy using kidney organoids reveals its roles in tubular cells and podocytes.

Yu Seyoung S   Choi Yo Jun YJ   Rim John Hoon JH   Kim Hye-Youn HY   Bekheirnia Nasim N   Swartz Sarah Jane SJ   Dai Hongzheng H   Gu Shen Linda SL   Lee Soyeon S   Nishinakamura Ryuichi R   Hildebrandt Friedhelm F   Bekheirnia Mir Reza MR   Gee Heon Yung HY  

Frontiers in medicine 20230323


<h4>Introduction</h4>Mutations in <i>ADAMTS9</i> cause nephronophthisis-related ciliopathies (NPHP-RC), which are characterized by multiple developmental defects and kidney diseases. Patients with NPHP-RC usually have normal glomeruli and negligible or no proteinuria. Herein, we identified novel compound-heterozygous <i>ADAMTS9</i> variants in two siblings with NPHP-RC who had glomerular manifestations, including proteinuria.<h4>Methods</h4>To investigate whether ADAMTS9 dysfunction causes NPHP  ...[more]

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