Am J Physiol Cell Physiol AJP: Cell Physiology
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Am J Physiol Cell Physiol (January 7, 2009). doi:10.1152/ajpcell.00077.2008
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Submitted on February 11, 2008
Revised on January 1, 2009
Accepted on January 2, 2009

TRPC6 MUTATIONS ASSOCIATED WITH FOCAL SEGMENTAL GLOMERULOSCLEROSIS CAUSE CONSTITUTIVE ACTIVATION OF NFAT-DEPENDENT TRANSCRIPTION

Johannes Sebastian Schlondorff1, Donato del Camino2, Robert Carrasquillo3, Vanessa Lacey2, and Martin R. Pollak1*

1 Brigham and Women's Hospital
2 Hydra Biosciences
3 Harvard University

* To whom correspondence should be addressed. E-mail: mpollak{at}rics.bwh.harvard.edu.

Mutations in the canonical transient receptor potential channel TRPC6 lead to an autosomal dominant form of human kidney disease characterized histologically by focal and segmental glomerulosclerosis. Several of these mutations enhance the amplitude and duration of the channel current. However, the effect of these mutations on the downstream target of TRPC6, the NFAT transcription factors , has not been previously examined. Here we demonstrate that all three TRPC6 mutations previously shown to enhance channel activity lead to enhanced basal NFAT-mediated transcription in several cell lines, including cultured podocytes. These effects are dependent on channel activity, and are dominant when mutants are co-expressed with wild-type TRPC6. While TRPC6 mutants do not demonstrate an increase in basal channel currents, a subset of cells expressing the R895C and E897K mutants have elevated basal calcium levels as measured by Fura-2 imaging. Activation of NFAT by TRPC6 mutants is blocked by inhibitors of calcineurin, calmodulin dependent kinase II, and phosphatidylinositol 3-kinase. PP2 partially inhibits NFAT activation by mutant TRPC6 independently of Src, Yes or Fyn. Differences in channel glycosylation and surface expression do not explain the ability of mutants to enhance NFAT activation. Taken together, these results identify the activation of the calcineurin-NFAT pathway as a potential mediator of focal segmental glomerulosclerosis.




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Hum Mol GenetHome page
E. Machuca, G. Benoit, and C. Antignac
Genetics of nephrotic syndrome: connecting molecular genetics to podocyte physiology
Hum. Mol. Genet., October 15, 2009; 18(R2): R185 - R194.
[Abstract] [Full Text] [PDF]




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