Literature DB >> 32894499

BBS4 Is Essential for Nuclear Transport of Transcription Factors Mediating Neuronal ER Stress Response.

Avital Horwitz1, Ruth Birk2.   

Abstract

Bardet-Biedl syndrome (BBS) is an autosomal recessive syndrome presenting with retinal dystrophy, cognitive impairment, and obesity. BBS is characterized by elevated endoplasmic reticulum (ER) stress in the early stages of adipocyte and retinal development. BBS expression in the CNS and indications of hippocampal dysgenesis suggest neural development abnormalities. However, the role of BBS in ER stress in neuronal cells has not yet been studied. Therefore, we aimed at studying the role of BBS4 in neuronal development under normal and ER stress conditions. ER stress and unfolded protein response (UPR) were studied in BBS4-silenced (SiBBS4) SH-SY5Y cells during differentiation under normal and stress states, using molecular and biochemical markers. ER stress was demonstrated at early neural differentiation, with significantly augmented expression of UPR markers corresponding to BBS4 expression. In the undifferentiated state, BBS4 silencing resulted in significantly reduced ER-stress markers' expression under normal and ER-stress states. Independent of ER stress, SiBBS4 cells demonstrated significant reduction in activated phospho-IRE1α. Under BBS4 silencing, both sXBP-1 and activated ATF6α p50 failed to translocate to the nucleus. Transcript levels of apoptosis markers were upregulated under BBS4 depletion and ER-stress induction, corresponding to decreased viability. BBS4 depletion in neuronal cells results in reduced sensitivity to ER stress during differentiation and under ER-stress induction, partly due to failure in translocation of ER-transcription factors (TF) sXBP-1 and ATF6α p50 to the nucleus. Hence, BBS4 is essential for nuclear transport under ER-stress response in neuronal cells during early differentiation. Our studies shed light on molecular mechanisms through which BBS4 malfunction alters neuronal ER stress response.

Entities:  

Keywords:  ATF6α; BBS4; Endoplasmic reticulum (ER); Unfolded protein response (UPR); XBP-1

Mesh:

Substances:

Year:  2020        PMID: 32894499     DOI: 10.1007/s12035-020-02104-z

Source DB:  PubMed          Journal:  Mol Neurobiol        ISSN: 0893-7648            Impact factor:   5.590


  41 in total

1.  Bardet-Biedl syndrome.

Authors:  Elizabeth Forsythe; Philip L Beales
Journal:  Eur J Hum Genet       Date:  2012-06-20       Impact factor: 4.246

Review 2.  Genetics of human Bardet-Biedl syndrome, an updates.

Authors:  S A Khan; N Muhammad; M A Khan; A Kamal; Z U Rehman; S Khan
Journal:  Clin Genet       Date:  2016-02-09       Impact factor: 4.438

3.  A BBSome subunit links ciliogenesis, microtubule stability, and acetylation.

Authors:  Alexander V Loktev; Qihong Zhang; John S Beck; Charles C Searby; Todd E Scheetz; J Fernando Bazan; Diane C Slusarski; Val C Sheffield; Peter K Jackson; Maxence V Nachury
Journal:  Dev Cell       Date:  2008-12       Impact factor: 12.270

4.  Homozygosity mapping with SNP arrays identifies TRIM32, an E3 ubiquitin ligase, as a Bardet-Biedl syndrome gene (BBS11).

Authors:  Annie P Chiang; John S Beck; Hsan-Jan Yen; Marwan K Tayeh; Todd E Scheetz; Ruth E Swiderski; Darryl Y Nishimura; Terry A Braun; Kwang-Youn A Kim; Jian Huang; Khalil Elbedour; Rivka Carmi; Diane C Slusarski; Thomas L Casavant; Edwin M Stone; Val C Sheffield
Journal:  Proc Natl Acad Sci U S A       Date:  2006-04-10       Impact factor: 11.205

5.  Bardet-Biedl syndrome obesity: BBS4 regulates cellular ER stress in early adipogenesis.

Authors:  Mariana Anosov; Ruth Birk
Journal:  Mol Genet Metab       Date:  2019-03-15       Impact factor: 4.797

6.  Candidate exome capture identifies mutation of SDCCAG8 as the cause of a retinal-renal ciliopathy.

Authors:  Edgar A Otto; Toby W Hurd; Rannar Airik; Moumita Chaki; Weibin Zhou; Corinne Stoetzel; Suresh B Patil; Shawn Levy; Amiya K Ghosh; Carlos A Murga-Zamalloa; Jeroen van Reeuwijk; Stef J F Letteboer; Liyun Sang; Rachel H Giles; Qin Liu; Karlien L M Coene; Alejandro Estrada-Cuzcano; Rob W J Collin; Heather M McLaughlin; Susanne Held; Jennifer M Kasanuki; Gokul Ramaswami; Jinny Conte; Irma Lopez; Joseph Washburn; James Macdonald; Jinghua Hu; Yukiko Yamashita; Eamonn R Maher; Lisa M Guay-Woodford; Hartmut P H Neumann; Nicholas Obermüller; Robert K Koenekoop; Carsten Bergmann; Xiaoshu Bei; Richard A Lewis; Nicholas Katsanis; Vanda Lopes; David S Williams; Robert H Lyons; Chi V Dang; Daniela A Brito; Mónica Bettencourt Dias; Xinmin Zhang; James D Cavalcoli; Gudrun Nürnberg; Peter Nürnberg; Eric A Pierce; Peter K Jackson; Corinne Antignac; Sophie Saunier; Ronald Roepman; Helene Dollfus; Hemant Khanna; Friedhelm Hildebrandt
Journal:  Nat Genet       Date:  2010-09-12       Impact factor: 38.330

7.  The Bardet-Biedl syndrome protein complex is an adapter expanding the cargo range of intraflagellar transport trains for ciliary export.

Authors:  Peiwei Liu; Karl F Lechtreck
Journal:  Proc Natl Acad Sci U S A       Date:  2018-01-16       Impact factor: 11.205

8.  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

9.  Hypomorphic mutations in syndromic encephalocele genes are associated with Bardet-Biedl syndrome.

Authors:  Carmen C Leitch; Norann A Zaghloul; Erica E Davis; Corinne Stoetzel; Anna Diaz-Font; Suzanne Rix; Majid Alfadhel; Majid Al-Fadhel; Richard Alan Lewis; Wafaa Eyaid; Eyal Banin; Helene Dollfus; Philip L Beales; Jose L Badano; Nicholas Katsanis
Journal:  Nat Genet       Date:  2008-03-09       Impact factor: 38.330

Review 10.  Bardet-Biedl Syndrome as a Chaperonopathy: Dissecting the Major Role of Chaperonin-Like BBS Proteins (BBS6-BBS10-BBS12).

Authors:  María Álvarez-Satta; Sheila Castro-Sánchez; Diana Valverde
Journal:  Front Mol Biosci       Date:  2017-07-31
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