Literature DB >> 32969478

FKBP8 variants are risk factors for spina bifida.

Tian Tian1,2, Xuanye Cao2, Sung-Eun Kim3, Ying Linda Lin2, John W Steele2, Robert M Cabrera2, Menuka Karki2, Wei Yang4, Nicholas J Marini5, Ethan N Hoffman2, Xiao Han2, Cindy Hu3, Linlin Wang1, Bogdan J Wlodarczyk2, Gary M Shaw4, Aiguo Ren1, Richard H Finnell2,6, Yunping Lei2.   

Abstract

Neural tube defects (NTDs) are a group of severe congenital malformations caused by a failure of neural tube closure during early embryonic development. Although extensively investigated, the genetic etiology of NTDs remains poorly understood. FKBP8 is critical for proper mammalian neural tube closure. Fkbp8-/- mouse embryos showed posterior NTDs consistent with a diagnosis of spina bifida (SB). To date, no publication has reported any association between FKBP8 and human NTDs. Using Sanger sequencing on genomic DNA samples from 472 SB and 565 control samples, we identified five rare (MAF ≤ 0.001) deleterious variants in SB patients, while no rare deleterious variant was identified in the controls (P = 0.0191). p.Glu140* affected FKBP8 localization to the mitochondria and created a truncated form of the FKBP8 protein, thus impairing its interaction with BCL2 and ultimately leading to an increase in cellular apoptosis. p.Ser3Leu, p.Lys315Asn and p.Ala292Ser variants decreased FKBP8 protein level. p.Lys315Asn further increased the cellular apoptosis. RNA sequencing on anterior and posterior tissues isolated from Fkbp8-/- and wildtype mice at E9.5 and E10.5 showed that Fkbp8-/- embryos have an abnormal expression profile within tissues harvested at posterior sites, thus leading to a posterior NTD. Moreover, we found that Fkbp8 knockout mouse embryos have abnormal expression of Wnt3a and Nkx2.9 during the early stage of neural tube development, perhaps also contributing to caudal specific NTDs. These findings provide evidence that functional variants of FKBP8 are risk factors for SB, which may involve a novel mechanism by which Fkbp8 mutations specifically cause SB in mice.
© The Author(s) 2020. Published by Oxford University Press. All rights reserved. For Permissions, please email: journals.permissions@oup.com.

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Year:  2020        PMID: 32969478      PMCID: PMC7645715          DOI: 10.1093/hmg/ddaa211

Source DB:  PubMed          Journal:  Hum Mol Genet        ISSN: 0964-6906            Impact factor:   6.150


  46 in total

1.  Near-optimal probabilistic RNA-seq quantification.

Authors:  Nicolas L Bray; Harold Pimentel; Páll Melsted; Lior Pachter
Journal:  Nat Biotechnol       Date:  2016-04-04       Impact factor: 54.908

2.  Progressive induction of caudal neural character by graded Wnt signaling.

Authors:  Ulrika Nordström; Thomas M Jessell; Thomas Edlund
Journal:  Nat Neurosci       Date:  2002-06       Impact factor: 24.884

3.  Scribble1 plays an important role in the pathogenesis of neural tube defects through its mediating effect of Par-3 and Vangl1/2 localization.

Authors:  Fares Kharfallah; Marie Claude Guyot; Abdul Rahman El Hassan; Redouane Allache; Elisa Merello; Patrizia De Marco; Graziella Di Cristo; Valeria Capra; Zoha Kibar
Journal:  Hum Mol Genet       Date:  2017-06-15       Impact factor: 6.150

Review 4.  Genetic, epigenetic, and environmental contributions to neural tube closure.

Authors:  Jonathan J Wilde; Juliette R Petersen; Lee Niswander
Journal:  Annu Rev Genet       Date:  2014-10-06       Impact factor: 16.830

5.  Mouse Fkbp8 activity is required to inhibit cell death and establish dorso-ventral patterning in the posterior neural tube.

Authors:  Rebecca Lee Yean Wong; Bogdan J Wlodarczyk; Kyung Soo Min; Melissa L Scott; Susan Kartiko; Wei Yu; Michelle Y Merriweather; Peter Vogel; Brian P Zambrowicz; Richard H Finnell
Journal:  Hum Mol Genet       Date:  2007-11-13       Impact factor: 6.150

6.  Cell size regulation by the human TSC tumor suppressor proteins depends on PI3K and FKBP38.

Authors:  Margit Rosner; Katja Hofer; Marion Kubista; Markus Hengstschläger
Journal:  Oncogene       Date:  2003-07-31       Impact factor: 9.867

7.  Specification of dorsal telencephalic character by sequential Wnt and FGF signaling.

Authors:  Lena Gunhaga; Matthew Marklund; My Sjödal; Jen-Chih Hsieh; Thomas M Jessell; Thomas Edlund
Journal:  Nat Neurosci       Date:  2003-07       Impact factor: 24.884

8.  Novel mutations in VANGL1 in neural tube defects.

Authors:  Zoha Kibar; Ciprian M Bosoi; Megan Kooistra; Sandra Salem; Richard H Finnell; Patrizia De Marco; Elisa Merello; Alexander G Bassuk; Valeria Capra; Philippe Gros
Journal:  Hum Mutat       Date:  2009-07       Impact factor: 4.878

9.  Decoupling the impact of microRNAs on translational repression versus RNA degradation in embryonic stem cells.

Authors:  Jacob W Freimer; T J Hu; Robert Blelloch
Journal:  Elife       Date:  2018-07-25       Impact factor: 8.140

10.  Variants identified in PTK7 associated with neural tube defects.

Authors:  Yunping Lei; Sung-Eun Kim; Zhongzhong Chen; Xuanye Cao; Huiping Zhu; Wei Yang; Gary M Shaw; Yufang Zheng; Ting Zhang; Hong-Yan Wang; Richard H Finnell
Journal:  Mol Genet Genomic Med       Date:  2019-01-28       Impact factor: 2.183

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  2 in total

Review 1.  Unraveling the complex genetics of neural tube defects: From biological models to human genomics and back.

Authors:  Paul Wolujewicz; John W Steele; Julia A Kaltschmidt; Richard H Finnell; Margaret Elizabeth Ross
Journal:  Genesis       Date:  2021-10-29       Impact factor: 2.487

Review 2.  Mutations in Hsp90 Cochaperones Result in a Wide Variety of Human Disorders.

Authors:  Jill L Johnson
Journal:  Front Mol Biosci       Date:  2021-12-08
  2 in total

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