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CRB2 depletion induces YAP signaling and disrupts mechanosensing in podocytes
Yingyu Sun1, Nils M Kronenberg1, Sidharth K Sethi2
1Humboldt Centre for Nano- and Biophotonics, Department of Chemistry, University of Cologne, Cologne, Germany.
Abstract:
Focal segmental glomerulosclerosis (FSGS) is a histologic lesion caused by a variety of injurious stimuli that lead to dysfunction/loss of glomerular visceral epithelial cells (i.e., podocytes). Pathogenic mutations in crumbs homolog-2 (CRB2), encoding the type 1 transmembrane protein crumbs homolog-2, have been shown to cause early-onset corticosteroid-resistant nephrotic syndrome (SRNS)/FSGS. Here, we identified a two-generation Indian kindred (DUK40595) with biopsy-proven SRNS/FSGS caused by a compound heterozygous mutation in CRB2 comprised of the previously described truncating mutation p.Gly1036_Alafs*43 and a rare 9-bp deletion mutation p.Leu1074_Asp1076del. Because compound heterozygous mutations involving the truncating p.Gly1036_Alafs*43 variant have been associated with reduced CRB2 expression in podocytes and autosomal recessive SRNS/FSGS, we sought to define the pathogenic effects of CRB2 deficiency in podocytes. We show that CRB2 knockdown induces yes-associated protein (YAP) activity and target gene expression in podocytes. It upregulates YAP-mediated mechanosignaling and increases the density of focal adhesion and F-actin. Using elastic resonator interference stress microscopy (ERISM), we demonstrate that CRB2 knockdown also enhances podocyte contractility in a substrate stiffness-dependent manner. The knockdown effect decreases with increasing substrate stiffness, indicating impaired mechanosensing in CRB2 knockdown cells at low substrate stiffness. Although the mechanical activation of CRB2 knockdown cells is associated with increased YAP activity, the enhanced cell contractility is not significantly reduced by the selective YAP inhibitors K-975 and verteporfin, suggesting that multiple pathways may be involved in mechanosignaling downstream of CRB2. Taken together, these studies provide the first evidence that CRB2 deficiency may impair podocyte mechanotransduction via disruption of YAP signaling in podocytes.NEW & NOTEWORTHY We identified a rare compound heterozygous CRB2 mutation as the cause of familial SRNS/FSGS in a two-generation East Asian kindred. Modeling the effect of the mutation, we show that CRB2 knockdown in podocytes induces YAP transcriptional activity and upregulates YAP-mediated mechanosignaling. Using elastic resonator interference stress microscopy (ERISM), we demonstrate that CRB2 knockdown enhances podocyte contractility in a substrate stiffness-dependent manner. The knockdown effect decreases with increasing substrate stiffness, indicating impaired mechanosensing in CRB2-deficient podocytes.
Insights
Genetic mutations in CRB2 cause nephrotic syndrome. CRB2 deficiency impairs podocyte mechanotransduction and YAP signaling, leading to kidney dysfunction.
Area of Science:
- Nephrology
- Molecular Biology
- Genetics
Background:
- Focal segmental glomerulosclerosis (FSGS) is a kidney disease characterized by podocyte injury.
- Mutations in Crumbs homolog-2 (CRB2) are linked to early-onset nephrotic syndrome.
- CRB2 encodes a protein crucial for podocyte function.
Purpose of the Study:
- To investigate the pathogenic effects of CRB2 deficiency in podocytes.
- To identify the molecular mechanisms underlying CRB2-associated nephrotic syndrome.
Main Methods:
- Identified a compound heterozygous CRB2 mutation in a two-generation Indian kindred with FSGS.
- Utilized CRB2 knockdown in podocytes to model the mutation's effects.
- Employed elastic resonator interference stress microscopy (ERISM) to assess podocyte contractility and mechanosensing.
- Investigated the role of Yes-associated protein (YAP) signaling.
Main Results:
- CRB2 deficiency in podocytes induced YAP activity and target gene expression.
- CRB2 knockdown enhanced YAP-mediated mechanosignaling, increasing focal adhesion and F-actin density.
- ERISM revealed substrate stiffness-dependent enhancement of podocyte contractility with CRB2 knockdown, indicating impaired mechanosensing.
- YAP inhibition did not fully reverse the enhanced contractility, suggesting multiple downstream pathways.
Conclusions:
- CRB2 deficiency impairs podocyte mechanotransduction through disruption of YAP signaling.
- This study provides the first evidence linking CRB2 mutations to altered podocyte mechanobiology in nephrotic syndrome.
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