The exocyst protein Sec10 interacts with Polycystin-2 and knockdown causes PKD-phenotypes.

Autosomal dominant polycystic kidney disease (ADPKD) is characterized by formation of renal cysts that destroy the kidney. Mutations in PKD1 and PKD2, encoding polycystins-1 and -2, cause ADPKD. Polycystins are thought to function in primary cilia, but it is not well understood how these and other p...

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Main Authors: Ben Fogelgren, Shin-Yi Lin, Xiaofeng Zuo, Kimberly M Jaffe, Kwon Moo Park, Ryan J Reichert, P Darwin Bell, Rebecca D Burdine, Joshua H Lipschutz
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-04-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC3072367?pdf=render
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spelling doaj-bf74d7c8e6ba44ebac1bf4f14b1c89702020-11-25T01:57:37ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042011-04-0174e100136110.1371/journal.pgen.1001361The exocyst protein Sec10 interacts with Polycystin-2 and knockdown causes PKD-phenotypes.Ben FogelgrenShin-Yi LinXiaofeng ZuoKimberly M JaffeKwon Moo ParkRyan J ReichertP Darwin BellRebecca D BurdineJoshua H LipschutzAutosomal dominant polycystic kidney disease (ADPKD) is characterized by formation of renal cysts that destroy the kidney. Mutations in PKD1 and PKD2, encoding polycystins-1 and -2, cause ADPKD. Polycystins are thought to function in primary cilia, but it is not well understood how these and other proteins are targeted to cilia. Here, we provide the first genetic and biochemical link between polycystins and the exocyst, a highly-conserved eight-protein membrane trafficking complex. We show that knockdown of exocyst component Sec10 yields cellular phenotypes associated with ADPKD, including loss of flow-generated calcium increases, hyperproliferation, and abnormal activation of MAPK. Sec10 knockdown in zebrafish phenocopies many aspects of polycystin-2 knockdown-including curly tail up, left-right patterning defects, glomerular expansion, and MAPK activation-suggesting that the exocyst is required for pkd2 function in vivo. We observe a synergistic genetic interaction between zebrafish sec10 and pkd2 for many of these cilia-related phenotypes. Importantly, we demonstrate a biochemical interaction between Sec10 and the ciliary proteins polycystin-2, IFT88, and IFT20 and co-localization of the exocyst and polycystin-2 at the primary cilium. Our work supports a model in which the exocyst is required for the ciliary localization of polycystin-2, thus allowing for polycystin-2 function in cellular processes.http://europepmc.org/articles/PMC3072367?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Ben Fogelgren
Shin-Yi Lin
Xiaofeng Zuo
Kimberly M Jaffe
Kwon Moo Park
Ryan J Reichert
P Darwin Bell
Rebecca D Burdine
Joshua H Lipschutz
spellingShingle Ben Fogelgren
Shin-Yi Lin
Xiaofeng Zuo
Kimberly M Jaffe
Kwon Moo Park
Ryan J Reichert
P Darwin Bell
Rebecca D Burdine
Joshua H Lipschutz
The exocyst protein Sec10 interacts with Polycystin-2 and knockdown causes PKD-phenotypes.
PLoS Genetics
author_facet Ben Fogelgren
Shin-Yi Lin
Xiaofeng Zuo
Kimberly M Jaffe
Kwon Moo Park
Ryan J Reichert
P Darwin Bell
Rebecca D Burdine
Joshua H Lipschutz
author_sort Ben Fogelgren
title The exocyst protein Sec10 interacts with Polycystin-2 and knockdown causes PKD-phenotypes.
title_short The exocyst protein Sec10 interacts with Polycystin-2 and knockdown causes PKD-phenotypes.
title_full The exocyst protein Sec10 interacts with Polycystin-2 and knockdown causes PKD-phenotypes.
title_fullStr The exocyst protein Sec10 interacts with Polycystin-2 and knockdown causes PKD-phenotypes.
title_full_unstemmed The exocyst protein Sec10 interacts with Polycystin-2 and knockdown causes PKD-phenotypes.
title_sort exocyst protein sec10 interacts with polycystin-2 and knockdown causes pkd-phenotypes.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2011-04-01
description Autosomal dominant polycystic kidney disease (ADPKD) is characterized by formation of renal cysts that destroy the kidney. Mutations in PKD1 and PKD2, encoding polycystins-1 and -2, cause ADPKD. Polycystins are thought to function in primary cilia, but it is not well understood how these and other proteins are targeted to cilia. Here, we provide the first genetic and biochemical link between polycystins and the exocyst, a highly-conserved eight-protein membrane trafficking complex. We show that knockdown of exocyst component Sec10 yields cellular phenotypes associated with ADPKD, including loss of flow-generated calcium increases, hyperproliferation, and abnormal activation of MAPK. Sec10 knockdown in zebrafish phenocopies many aspects of polycystin-2 knockdown-including curly tail up, left-right patterning defects, glomerular expansion, and MAPK activation-suggesting that the exocyst is required for pkd2 function in vivo. We observe a synergistic genetic interaction between zebrafish sec10 and pkd2 for many of these cilia-related phenotypes. Importantly, we demonstrate a biochemical interaction between Sec10 and the ciliary proteins polycystin-2, IFT88, and IFT20 and co-localization of the exocyst and polycystin-2 at the primary cilium. Our work supports a model in which the exocyst is required for the ciliary localization of polycystin-2, thus allowing for polycystin-2 function in cellular processes.
url http://europepmc.org/articles/PMC3072367?pdf=render
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