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Published on: August 17, 2013
Trpc6 inactivation confers protection in a model of severe nephrosis in rats
Eun Young Kim1, Parisa Yazdizadeh Shotorbani1, Stuart E Dryer2,3
1Department of Biology and Biochemistry, University of Houston, Houston, TX, USA.
Abstract:
Mutations in canonical transient receptor potential-6 (TRPC6) channels give rise to rare familial forms of focal and segmental glomerulosclerosis (FSGS). Here we examined a possible role for TRPC6 in the progression of chronic puromycin aminonucleoside (PAN) nephrosis in Sprague-Dawley rats, a classic model of acquired nephrotic syndromes. We used CRISPR/Cas9 technology to delete a 239-bp region within exon 2 of the Trpc6 gene (Trpc6del allele). Trpc6del/del rats expressed detectable Trpc6 transcripts missing exon 2, and TRPC6 proteins could be detected by immunoblot of renal cortex. However, the abundance of Trpc6 transcripts and TRPC6 protein in renal cortex was much lower than in Trpc6wt/wt littermates, and functional TRPC6 channels could not be detected in whole-cell recordings from glomerular cells cultured from Trpc6del/del animals, possibly because of disruption of ankyrin repeats 1 and 2. During the chronic phase of PAN nephrosis, Trpc6del/del rats had reduced urine albumin excretion, reduced serum cholesterol and triglycerides, and improved azotemia compared to wild-type Trpc6wt/wt littermates. Glomerulosclerosis was severe during chronic PAN nephrosis in Trpc6wt/wt rats but was markedly reduced in Trpc6del/del littermates. Trpc6del/del animals also had less severe tubulointerstitial fibrosis as assessed by several biochemical and histological analyses, as well as reduced foot process effacement and glomerular basement thickening compared to Trpc6wtt/wt controls. None of the manipulations in this study affected the abundance of TRPC5 channels in renal cortex. TRPC3 was increased in PAN nephrosis and in Trpc6del/del rats. These data support a role for TRPC6 channels in driving an acquired form of secondary FSGS.
Key Messages:
We examined aminonucleoside nephrosis in rats with wild type and inactivated TRPC6. TRPC6 channels were inactivated by CRISPR/Cas9 editing of the Trpc6 gene. TRPC6 inactivation reduced albuminuria in the chronic but not the acute phase. TRPC6 inactivation reduced glomerulosclerosis and ultrastructural changes. TRPC6 inactivation also reduced interstitial changes and renal fibrosis.
Insights
TRPC6 channel inactivation protected against chronic kidney disease progression in a rat model. This study highlights TRPC6’s role in acquired focal and segmental glomerulosclerosis (FSGS).
Area of Science:
- Nephrology
- Molecular Biology
- Genetics
Background:
- Canonical transient receptor potential-6 (TRPC6) channel mutations are linked to rare familial focal and segmental glomerulosclerosis (FSGS).
- Puromycin aminonucleoside (PAN) nephrosis in rats is a model for acquired nephrotic syndromes.
Purpose of the Study:
- To investigate the role of TRPC6 in the progression of chronic PAN nephrosis.
- To determine if TRPC6 inactivation impacts the development of FSGS and associated kidney damage.
Main Methods:
- CRISPR/Cas9 gene editing was used to create Trpc6-deficient rats (Trpc6del/del).
- Rats were subjected to chronic PAN nephrosis induction.
- Kidney function, albuminuria, serum markers, and histological/ultrastructural changes were assessed.
Main Results:
- Trpc6del/del rats exhibited reduced albuminuria, improved azotemia, and lower serum cholesterol/triglycerides during chronic PAN nephrosis.
- Glomerulosclerosis, tubulointerstitial fibrosis, foot process effacement, and glomerular basement thickening were significantly reduced in Trpc6del/del rats.
- TRPC6 inactivation did not affect TRPC5 levels but TRPC3 levels increased.
Conclusions:
- TRPC6 channels play a significant role in driving acquired secondary FSGS.
- Inactivating TRPC6 offers protection against the progression of chronic kidney disease in this model.
- Targeting TRPC6 may represent a therapeutic strategy for acquired nephrotic syndromes.
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