Literature DB >> 24938409

Functional characterization of Prickle2 and BBS7 identify overlapping phenotypes yet distinct mechanisms.

Xue Mei1, Trudi A Westfall1, Qihong Zhang2, Val C Sheffield2, Alexander G Bassuk3, Diane C Slusarski4.   

Abstract

Ciliopathies are genetic disorders that are caused by dysfunctional cilia and affect multiple organs. One type of ciliopathy, Bardet-Biedl syndrome, is a rare disorder characterized by obesity, retinitis pigmentosa, polydactyly, mental retardation and susceptibility to cardiovascular diseases. The Wnt/Planar cell polarity (PCP) has been associated with cilia function and ciliogenesis in directing the orientation of cilia and basal bodies. Yet the exact relationship between PCP and ciliopathy is not well understood. Here, we examine interactions between a core PCP component, Prickle2 (Pk2), and a central BBS gene, Bbs7, using gene knockdown in the zebrafish. pk2 and bbs7 knockdown both disrupt the formation of a ciliated organ, the Kupffer׳s vesicle (KV), but do not display a synergistic interaction. By measuring cell polarity in the neural tube, we find that bbs7 activity is not required for Pk asymmetric localization. Moreover, BBS protein complex formation is preserved in the Pk2-deficient (Pk2(-/-)) mouse. Previously we reported an intracellular melanosome transport delay as a cardinal feature of reduced bbs gene activity. We find that pk2 knockdown suppresses bbs7-related retrograde transport delay. Similarly, knockdown of ift22, an anterograde intraflagellar transport component, also suppresses the bbs7-related retrograde delay. Notably, we find that pk2 knockdown larvae show a delay in anterograde transport. These data suggest a novel role for Pk2 in directional intracellular transport and our analyses show that PCP and BBS function independently, yet result in overlapping phenotypes when knocked down in zebrafish.
Copyright © 2014 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Bardet–Biedl syndrome; Cilia; Intracellular transport; Kupffer׳s vesicle; Planar cell polarity; Prickle2; Retinal neurogenesis; Zebrafish

Mesh:

Substances:

Year:  2014        PMID: 24938409      PMCID: PMC4114335          DOI: 10.1016/j.ydbio.2014.05.020

Source DB:  PubMed          Journal:  Dev Biol        ISSN: 0012-1606            Impact factor:   3.582


  73 in total

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Journal:  Nat Genet       Date:  2004-08-15       Impact factor: 38.330

2.  Ascidian prickle regulates both mediolateral and anterior-posterior cell polarity of notochord cells.

Authors:  Di Jiang; Edwin M Munro; William C Smith
Journal:  Curr Biol       Date:  2005-01-11       Impact factor: 10.834

3.  Regulation of polarized extension and planar cell polarity in the cochlea by the vertebrate PCP pathway.

Authors:  Jianbo Wang; Sharayne Mark; Xiaohui Zhang; Dong Qian; Seung-Jong Yoo; Kristen Radde-Gallwitz; Yanping Zhang; Xi Lin; Andres Collazo; Anthony Wynshaw-Boris; Ping Chen
Journal:  Nat Genet       Date:  2005-08-14       Impact factor: 38.330

4.  Disruption of Bardet-Biedl syndrome ciliary proteins perturbs planar cell polarity in vertebrates.

Authors:  Alison J Ross; Helen May-Simera; Erica R Eichers; Masatake Kai; Josephine Hill; Daniel J Jagger; Carmen C Leitch; J Paul Chapple; Peter M Munro; Shannon Fisher; Perciliz L Tan; Helen M Phillips; Michel R Leroux; Deborah J Henderson; Jennifer N Murdoch; Andrew J Copp; Marie-Madeleine Eliot; James R Lupski; David T Kemp; Hélène Dollfus; Masazumi Tada; Nicholas Katsanis; Andrew Forge; Philip L Beales
Journal:  Nat Genet       Date:  2005-09-18       Impact factor: 38.330

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Journal:  Dev Dyn       Date:  1995-07       Impact factor: 3.780

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Authors:  A Biedl
Journal:  Obes Res       Date:  1995-07

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Journal:  Nat Cell Biol       Date:  2005-06-05       Impact factor: 28.824

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Journal:  Obes Res       Date:  1995-07

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Authors:  J S Green; P S Parfrey; J D Harnett; N R Farid; B C Cramer; G Johnson; O Heath; P J McManamon; E O'Leary; W Pryse-Phillips
Journal:  N Engl J Med       Date:  1989-10-12       Impact factor: 91.245

10.  Structure of the zebrafish snail1 gene and its expression in wild-type, spadetail and no tail mutant embryos.

Authors:  C Thisse; B Thisse; T F Schilling; J H Postlethwait
Journal:  Development       Date:  1993-12       Impact factor: 6.868

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  4 in total

1.  Mutations in C8ORF37 cause Bardet Biedl syndrome (BBS21).

Authors:  Elise Heon; Gunhee Kim; Sophie Qin; Janelle E Garrison; Erika Tavares; Ajoy Vincent; Nina Nuangchamnong; C Anthony Scott; Diane C Slusarski; Val C Sheffield
Journal:  Hum Mol Genet       Date:  2016-03-22       Impact factor: 6.150

2.  High-throughput behavioral assay to investigate seizure sensitivity in zebrafish implicates ZFHX3 in epilepsy.

Authors:  Tyson D Fuller; Trudi A Westfall; Tirthasree Das; Deborah V Dawson; Diane C Slusarski
Journal:  J Neurogenet       Date:  2018-05-02       Impact factor: 1.250

3.  Nuclear/cytoplasmic transport defects in BBS6 underlie congenital heart disease through perturbation of a chromatin remodeling protein.

Authors:  Charles Anthony Scott; Autumn N Marsden; Michael R Rebagliati; Qihong Zhang; Xitiz Chamling; Charles C Searby; Lisa M Baye; Val C Sheffield; Diane C Slusarski
Journal:  PLoS Genet       Date:  2017-07-28       Impact factor: 5.917

4.  Prickle3 synergizes with Wtip to regulate basal body organization and cilia growth.

Authors:  Chih-Wen Chu; Olga Ossipova; Andriani Ioannou; Sergei Y Sokol
Journal:  Sci Rep       Date:  2016-04-11       Impact factor: 4.379

  4 in total

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