Javascript must be enabled to continue!
Pkd1 mutation has no apparent effects on peroxisome structure or lipid metabolism
View through CrossRef
Abstract
Background
Multiple studies of tissue and cell samples from patients and pre-clinical models of autosomal dominant polycystic kidney disease report abnormal mitochondrial function and morphology and suggest metabolic reprogramming is an intrinsic feature of this disease. Peroxisomes interact with mitochondria physically and functionally, and congenital peroxisome biogenesis disorders can cause various phenotypes, including mitochondrial defects, metabolic abnormalities and renal cysts. We hypothesized that a peroxisomal defect might contribute to the metabolic and mitochondrial impairments observed in autosomal dominant polycystic kidney disease.
Methods
Using control and
Pkd1
-/-
kidney epithelial cells, we investigated peroxisome abundance, biogenesis and morphology by immunoblotting, immunofluorescent and live cell imaging of peroxisome-related proteins and assayed peroxisomal specific β-oxidation. We further analyzed fatty acid composition by mass spectrometry in kidneys of
Pkd1
fl/fl
;
Ksp-Cre
mice. We also evaluated peroxisome lipid metabolism in published metabolomics datasets of
Pkd1
mutant cells and kidneys. Lastly, we investigated if the C-terminus or full-length polycystin-1 co-localize with peroxisome markers by imaging studies.
Results
Peroxisome abundance, morphology and peroxisome-related protein expression in
Pkd1
-/-
cells were normal, suggesting preserved peroxisome biogenesis. Peroxisomal β-oxidation was not impaired in
Pkd1
-/-
cells, and there was no obvious accumulation of very long chain fatty acids in kidneys of mutant mice. Re-analysis of published datasets provide little evidence of peroxisomal abnormalities in independent sets of
Pkd1
mutant cells and cystic kidneys, while providing further evidence of mitochondrial fatty acid oxidation defects. Imaging studies with either full length polycystin-1 or its C-terminus, a fragment previously shown to go to the mitochondria, showed minimal co-localization with peroxisome markers.
Conclusions
Our studies showed that loss of
Pkd1
does not disrupt peroxisome biogenesis nor peroxisome-dependent fatty acid metabolism.
Key points
-
While mitochondrial abnormalities and fatty acid oxidation impairment have been reported in ADPKD, no studies have investigated if peroxisome dysfunction contributes to these defects.
-
We investigated peroxisome morphology, biogenesis and function in cell and animal models of ADPKD and investigated whether polycystin-1 co-localized with peroxisome proteins.
-
Our studies show that loss of
Pkd1
does not disrupt peroxisome biogenesis nor peroxisome-dependent fatty acid metabolism.
Title: Pkd1
mutation has no apparent effects on peroxisome structure or lipid metabolism
Description:
Abstract
Background
Multiple studies of tissue and cell samples from patients and pre-clinical models of autosomal dominant polycystic kidney disease report abnormal mitochondrial function and morphology and suggest metabolic reprogramming is an intrinsic feature of this disease.
Peroxisomes interact with mitochondria physically and functionally, and congenital peroxisome biogenesis disorders can cause various phenotypes, including mitochondrial defects, metabolic abnormalities and renal cysts.
We hypothesized that a peroxisomal defect might contribute to the metabolic and mitochondrial impairments observed in autosomal dominant polycystic kidney disease.
Methods
Using control and
Pkd1
-/-
kidney epithelial cells, we investigated peroxisome abundance, biogenesis and morphology by immunoblotting, immunofluorescent and live cell imaging of peroxisome-related proteins and assayed peroxisomal specific β-oxidation.
We further analyzed fatty acid composition by mass spectrometry in kidneys of
Pkd1
fl/fl
;
Ksp-Cre
mice.
We also evaluated peroxisome lipid metabolism in published metabolomics datasets of
Pkd1
mutant cells and kidneys.
Lastly, we investigated if the C-terminus or full-length polycystin-1 co-localize with peroxisome markers by imaging studies.
Results
Peroxisome abundance, morphology and peroxisome-related protein expression in
Pkd1
-/-
cells were normal, suggesting preserved peroxisome biogenesis.
Peroxisomal β-oxidation was not impaired in
Pkd1
-/-
cells, and there was no obvious accumulation of very long chain fatty acids in kidneys of mutant mice.
Re-analysis of published datasets provide little evidence of peroxisomal abnormalities in independent sets of
Pkd1
mutant cells and cystic kidneys, while providing further evidence of mitochondrial fatty acid oxidation defects.
Imaging studies with either full length polycystin-1 or its C-terminus, a fragment previously shown to go to the mitochondria, showed minimal co-localization with peroxisome markers.
Conclusions
Our studies showed that loss of
Pkd1
does not disrupt peroxisome biogenesis nor peroxisome-dependent fatty acid metabolism.
Key points
-
While mitochondrial abnormalities and fatty acid oxidation impairment have been reported in ADPKD, no studies have investigated if peroxisome dysfunction contributes to these defects.
-
We investigated peroxisome morphology, biogenesis and function in cell and animal models of ADPKD and investigated whether polycystin-1 co-localized with peroxisome proteins.
-
Our studies show that loss of
Pkd1
does not disrupt peroxisome biogenesis nor peroxisome-dependent fatty acid metabolism.
Related Results
A de novo PKD1 mutation in a Chinese family with autosomal dominant polycystic kidney disease
A de novo PKD1 mutation in a Chinese family with autosomal dominant polycystic kidney disease
Background:
PKD1, which has a relatively high mutation rate, is highly polymorphic, and the role of PKD1 is incompletely defined. In t...
Étude des mécanismes d'initiation des kystes rénaux au cours de la polykystose rénale autosomique dominante
Étude des mécanismes d'initiation des kystes rénaux au cours de la polykystose rénale autosomique dominante
La polykystose rénale autosomique dominante (PKRAD) est la ciliopathie rénale la plus fréquente, caractérisée par la formation de kystes aux dépens du tubule. Elle résulte principa...
Prediction of Renal Prognosis in Patients with Autosomal Dominant Polycystic Kidney Disease Using PKD1/PKD2 Mutations
Prediction of Renal Prognosis in Patients with Autosomal Dominant Polycystic Kidney Disease Using PKD1/PKD2 Mutations
Autosomal dominant polycystic kidney disease (ADPKD) patients with PKD1 mutations, particularly those with truncating mutations, show poor prognosis. However, the differences in di...
Polycystins Expression in Astrocytic Gliomas
Polycystins Expression in Astrocytic Gliomas
Background: Polycystin 1 (PC1) and polycystin 2 (PC2) proteins are members of the transient receptor potential (TRP) channels family and are encoded from PKD1 and PKD2 genes, respe...
The Homeodomain Protein Cux1 is Required for Cyst Development in an ADPKD Mouse Model
The Homeodomain Protein Cux1 is Required for Cyst Development in an ADPKD Mouse Model
Cux1 is a homeobox gene involved in cell cycle regulation and kidney development. Cux1 is upregulated in the kidneys of both mice and humans with autosomal dominant polycystic kidn...
FC029: A Multivariate Model Identifies Genotype, Hypertension and Kidney Length as Independent Baseline Predictors of Disease Progression in a Longitudinal Autosomal Dominant Polycystic Kidney Disease Patient Cohort
FC029: A Multivariate Model Identifies Genotype, Hypertension and Kidney Length as Independent Baseline Predictors of Disease Progression in a Longitudinal Autosomal Dominant Polycystic Kidney Disease Patient Cohort
Abstract
BACKGROUND AND AIMS
Patients with autosomal dominant polycystic kidney disease (ADPKD) and evidence of rapid kidney fun...
Generation of ADPKD in vitro models for genotype-phenotype correlation and drug discovery
Generation of ADPKD in vitro models for genotype-phenotype correlation and drug discovery
Génération de modèles in vitro de PKD pour la corrélation génotype-phénotype et la découverte de médicaments
La maladie polykystique rénale autosomique dominante (A...
Review dari Metabolisme Karbohidrat, Lipid, Protein, dan Asam Nukleat
Review dari Metabolisme Karbohidrat, Lipid, Protein, dan Asam Nukleat
Artikel review ini mengulas tentang prinsip dan proses metabolisme karbohidrat, lipid, protein dan asam nukeat pada organisme. Telaah pustaka yang disajikan dalam review ini bersu...

