Literature DB >> 33569080

Glycine Cleavage System H Protein Is Essential for Embryonic Viability, Implying Additional Function Beyond the Glycine Cleavage System.

Kit-Yi Leung1, Sandra C P De Castro1, Gabriel L Galea1, Andrew J Copp1, Nicholas D E Greene1.   

Abstract

Glycine cleavage system H protein (GCSH) is a component of the glycine cleavage system (GCS), a conserved protein complex that acts to decarboxylate glycine. Mutation of AMT or GLDC, encoding the GCS components aminomethyltransferase and glycine decarboxylase, can cause malformations of the developing CNS (neural tube defects (NTDs) and ventriculomegaly) as well as a post-natal life-limiting neurometabolic disorder, Non-Ketotic Hyperglycinemia. In contrast, it is unclear whether mutation of GCSH contributes to these conditions and we therefore investigated GCSH loss of function in mice. Mice that were heterozygous for a Gcsh null allele were viable and did not exhibit elevated plasma glycine. Moreover, heterozygous mutation of Gcsh did not increase the frequency of NTDs in Gldc mutant embryos. Homozygous Gcsh null mice were not recovered at post-natal stages. Analysis of litters at E8.5-10.5, revealed the presence of homozygous null embryos which were much smaller than littermates and had failed to develop beyond early post-implantation stages with no visible somites or head-folds. Hence, unlike null mutations of Gldc or Amt, which are compatible with embryonic survival despite the presence of NTDs, loss of Gcsh causes embryonic death prior to mid-gestation. Maternal supplementation with formate did not restore embryonic development beyond E7.5, suggesting that the primary cause of lethality was not loss of glycine cleavage activity or suppression of folate one-carbon metabolism. These findings suggest that GCSH has additional roles beyond function in the glycine cleavage system. We hypothesize that GCSH potentially acts in lipoylation of 2-oxoacid dehydrogenase proteins, as reported in bacteria.
Copyright © 2021 Leung, De Castro, Galea, Copp and Greene.

Entities:  

Keywords:  embryonic lethality; glycine cleavage system; glycine cleavage system H protein; lipoylation; mouse models

Year:  2021        PMID: 33569080      PMCID: PMC7868403          DOI: 10.3389/fgene.2021.625120

Source DB:  PubMed          Journal:  Front Genet        ISSN: 1664-8021            Impact factor:   4.599


  31 in total

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Journal:  Neurology       Date:  2004-11-23       Impact factor: 9.910

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Authors:  Junko Kanno; Tim Hutchin; Fumiaki Kamada; Ayumi Narisawa; Yoko Aoki; Yoichi Matsubara; Shigeo Kure
Journal:  J Med Genet       Date:  2007-03       Impact factor: 6.318

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Authors:  Curtis R Coughlin; Michael A Swanson; Kathryn Kronquist; Cécile Acquaviva; Tim Hutchin; Pilar Rodríguez-Pombo; Marja-Leena Väisänen; Elaine Spector; Geralyn Creadon-Swindell; Ana M Brás-Goldberg; Elisa Rahikkala; Jukka S Moilanen; Vincent Mahieu; Gert Matthijs; Irene Bravo-Alonso; Celia Pérez-Cerdá; Magdalena Ugarte; Christine Vianey-Saban; Gunter H Scharer; Johan L K Van Hove
Journal:  Genet Med       Date:  2016-06-30       Impact factor: 8.822

10.  Impaired folate 1-carbon metabolism causes formate-preventable hydrocephalus in glycine decarboxylase-deficient mice.

Authors:  Chloe Santos; Yun Jin Pai; M Raasib Mahmood; Kit-Yi Leung; Dawn Savery; Simon N Waddington; Andrew J Copp; Nicholas DE Greene
Journal:  J Clin Invest       Date:  2020-03-02       Impact factor: 14.808

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