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Am J Physiol Renal Physiol (October 17, 2007). doi:10.1152/ajprenal.00345.2007
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Submitted on July 24, 2007
Accepted on October 10, 2007

Identification of BRAF as a new interactor of PLC{epsilon}1, the protein mutated in nephrotic syndrome type 3

Hassan Chaib1, Bethan E Hoskins1, Shazia Ashraf1, Meera Goyal1, Roger C. Wiggins1, and Friedhelm Hildebrandt1*

1 Univ. of Michigan, United States

* To whom correspondence should be addressed. E-mail: fhilde{at}med.umich.edu.

Steroid resistant nephrotic syndrome is a malfunction of the kidney glomerular filter that leads to proteinuria, hypoalbuminemia, edema, and renal failure. Recently, we identified recessive mutations in the phospholipase C epsilon 1 gene (PLCE1) as a new cause of early-onset nephrotic syndrome and demonstrated interaction of PLC{epsilon}1 with IQGAP1. To further elucidate the mechanism by which PLCE1 mutations cause nephrotic syndrome, we sought to identify new protein interaction partners of PLC{epsilon}1. We utilized information from the genetic interaction network of C. elegans. It relates the PLCE1 ortholog (plc-1) to the C. elegans ortholog (lin-45) of human BRAF (v-raf murine sarcoma viral oncogene homolog B1). We hypothesized that this may indicate a functional protein-protein interaction. Using GST pull down of HEK293T cell lysates in vitro and coimmunoprecipation of mouse kidney lysates in vivo we show that BRAF interacts with PLC{epsilon}1. By immunohistochemistry in rat kidney we demonstrate that both proteins are coexpressed and colocalize in developing and mature glomerular podocytes, reporting for the first time the expression of Braf in the glomerular podocyte.







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