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Published on: June 23, 2015
Dnajb11-Kidney Disease Develops from Reduced Polycystin-1 Dosage but not Unfolded Protein Response in Mice
Sounak Ghosh Roy1, Zhigui Li, Zi Guo
1Section of Nephrology, Department of Internal Medicine, Yale School of Medicine, New Haven, Connecticut.
Significance Statement:
Heterozygous DNAJB11 mutation carriers manifest with small cystic kidneys and renal failure in adulthood. Recessive cases with prenatal cystic kidney dysplasia were recently described. Our in vitro and mouse model studies investigate the proposed disease mechanism as an overlap of autosomal-dominant polycystic kidney disease and autosomal-dominant tubulointerstitial kidney disease pathogenesis. We find that DNAJB11 loss impairs cleavage and maturation of the autosomal-dominant polycystic kidney disease protein polycystin-1 (PC1) and results in dosage-dependent cyst formation in mice. We find that Dnajb11 loss does not activate the unfolded protein response, drawing a fundamental contrast with the pathogenesis of autosomal-dominant tubulointerstitial kidney disease. We instead propose that fibrosis in DNAJB11 -kidney disease may represent an exaggerated response to polycystin-dependent cysts.
Background:
Patients with heterozygous inactivating mutations in DNAJB11 manifest with cystic but not enlarged kidneys and renal failure in adulthood. Pathogenesis is proposed to resemble an overlap of autosomal-dominant polycystic kidney disease (ADPKD) and autosomal-dominant tubulointerstitial kidney disease (ADTKD), but this phenotype has never been modeled in vivo . DNAJB11 encodes an Hsp40 cochaperone in the endoplasmic reticulum: the site of maturation of the ADPKD polycystin-1 (PC1) protein and of unfolded protein response (UPR) activation in ADTKD. We hypothesized that investigation of DNAJB11 would shed light on mechanisms for both diseases.
Methods:
We used germline and conditional alleles to model Dnajb11 -kidney disease in mice. In complementary experiments, we generated two novel Dnajb11-/- cell lines that allow assessment of PC1 C-terminal fragment and its ratio to the immature full-length protein.
Results:
Dnajb11 loss results in a profound defect in PC1 cleavage but with no effect on other cystoproteins assayed. Dnajb11-/- mice are live-born at below the expected Mendelian ratio and die at a weaning age with cystic kidneys. Conditional loss of Dnajb11 in renal tubular epithelium results in PC1 dosage-dependent kidney cysts, thus defining a shared mechanism with ADPKD. Dnajb11 mouse models show no evidence of UPR activation or cyst-independent fibrosis, which is a fundamental distinction from typical ADTKD pathogenesis.
Conclusions:
DNAJB11 -kidney disease is on the spectrum of ADPKD phenotypes with a PC1-dependent pathomechanism. The absence of UPR across multiple models suggests that alternative mechanisms, which may be cyst-dependent, explain the renal failure in the absence of kidney enlargement.
Insights
DNAJB11 kidney disease impairs polycystin-1 (PC1) maturation, causing cystic kidneys and renal failure. This study models the disease, revealing a PC1-dependent mechanism distinct from typical autosomal-dominant tubulointerstitial kidney disease (ADTKD).
Area of Science:
- Renal Pathogenesis
- Molecular Mechanisms of Kidney Disease
- Genetic Basis of Cystic Kidney Disorders
Background:
- Heterozygous DNAJB11 mutations cause cystic kidneys and renal failure in adults.
- Proposed pathogenesis involves overlap of autosomal-dominant polycystic kidney disease (ADPKD) and autosomal-dominant tubulointerstitial kidney disease (ADTKD).
- DNAJB11, an Hsp40 cochaperone, is critical for polycystin-1 (PC1) maturation and unfolded protein response (UPR) pathways.
Purpose of the Study:
- To investigate the in vivo disease mechanism of DNAJB11 mutations.
- To determine the role of DNAJB11 in PC1 maturation and UPR activation.
- To establish a mouse model for DNAJB11-associated kidney disease.
Main Methods:
- Generation of germline and conditional Dnajb11 knockout mouse models.
- Creation of Dnajb11-/- cell lines for assessing PC1 processing.
- Analysis of PC1 cleavage, cystogenesis, and UPR activation in vitro and in vivo.
Main Results:
- Dnajb11 loss profoundly impairs PC1 cleavage, leading to dosage-dependent cyst formation in mice.
- Dnajb11-/- mice exhibit reduced viability and develop cystic kidneys.
- No evidence of UPR activation or cyst-independent fibrosis was observed, distinguishing it from ADTKD.
Conclusions:
- DNAJB11-kidney disease is mechanistically linked to ADPKD via a PC1-dependent pathway.
- The absence of UPR suggests alternative, potentially cyst-dependent, mechanisms for renal failure.
- This study provides critical insights into the pathogenesis of a spectrum of cystic kidney disorders.
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