Anillin variant in proteinuric kidney disease drives tubular epithelial cell death, junctional instability, and
Abstract:
Poor outcomes in proteinuric kidney diseases are challenging to successfully manage therapeutically due to the heterogeneity of underlying disease pathogenesis and associated risk for progression. The role of cytoskeleton-associated proteins, including the scaffolding protein Anillin (ANLN), are of specific interest in kidney disease given the importance of actin dynamics in the kidney's specialized epithelial cell types. In this study, we identify the prevalence of genetic variants in ANLN , the gene encoding ANLN, in a cohort of deeply phenotyped individuals with non-diabetic proteinuric kidney disease. Thirty-one individuals (of 864 genotyped) harbor heterozygously expressed variants in ANLN ; 7 unrelated individuals shared the same variant (I1109V) in the C-terminal pleckstrin homology (PH) domain, a region necessary for interaction with the plasma membrane. Kidney organoids generated from I1109V induced pluripotent stem cells from 1 of these individuals showed increased epithelial cell mitogen-activated protein kinase 8 network activity and apoptosis, which was enhanced by tumor necrosis factor alpha (TNF-α) and phenocopied by actin polymerization inhibition. TNF-α-treated I1109V organoids also exhibited tubular lumen expansion. Knockdown and re-expression of the analogous ANLN variant in Xenopus laevis embryonic epithelia resulted in defects in cell-cell junction dynamics including wavy cell membranes exhibiting increased transverse movements as well as abnormal junctional F-actin remodeling in response to mechanical stress and leaky barrier function. Taken together, these results indicate that enhanced tubular epithelial cell death, perturbed cell-cell contacts and barrier function defects are associated with a novel ANLN variant discovered in individuals with non-diabetic proteinuric kidney disease.
One Sentence Summary:
Enhanced tubular epithelial cell death and perturbed cell-cell junction integrity and barrier function are associated with a novel Anillin coding variant discovered in a cohort of individuals with proteinuric kidney disease.
Insights
A novel Anillin (ANLN) gene variant is linked to proteinuric kidney disease. This variant causes kidney cell death, junction defects, and impaired barrier function, impacting kidney health.
Area of Science:
- Nephrology
- Molecular Biology
- Genetics
Background:
- Proteinuric kidney diseases present therapeutic challenges due to heterogeneous pathogenesis and progression risks.
- Cytoskeleton-associated proteins, like Anillin (ANLN), are crucial due to actin dynamics in specialized kidney epithelial cells.
Purpose of the Study:
- To identify genetic variants in ANLN associated with non-diabetic proteinuric kidney disease.
- To investigate the functional impact of a specific ANLN variant (I1109V) on kidney epithelial cells.
Main Methods:
- Genotyping of 864 individuals with non-diabetic proteinuric kidney disease to identify ANLN variants.
- Generation of kidney organoids from induced pluripotent stem cells carrying the ANLN I1109V variant.
- Functional assays in organoids and Xenopus laevis embryonic epithelia to assess cell behavior and barrier function.
Main Results:
- Thirty-one individuals harbored ANLN variants; 7 shared the I1109V variant in the PH domain.
- ANLN I1109V kidney organoids showed increased MAPK8 activity, apoptosis, and tubular lumen expansion, exacerbated by TNF-α.
- Xenopus epithelia with the ANLN variant exhibited defective cell-cell junctions, abnormal F-actin, and leaky barriers.
Conclusions:
- A novel ANLN variant is associated with non-diabetic proteinuric kidney disease.
- This variant disrupts tubular epithelial cell integrity, leading to increased cell death and compromised barrier function.
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