Literature DB >> 29748383

FSHD2- and BAMS-associated mutations confer opposing effects on SMCHD1 function.

Alexandra D Gurzau1,2, Kelan Chen1,2, Shifeng Xue3,4, Weiwen Dai1, Isabelle S Lucet1,2, Thanh Thao Nguyen Ly3,4, Bruno Reversade3,4,5,6,7, Marnie E Blewitt8,2,9, James M Murphy10,2.   

Abstract

Structural maintenance of chromosomes flexible hinge domain-containing 1 (Smchd1) plays important roles in epigenetic silencing and normal mammalian development. Recently, heterozygous mutations in SMCHD1 have been reported in two disparate disorders: facioscapulohumeral muscular dystrophy type 2 (FSHD2) and Bosma arhinia microphthalmia syndrome (BAMS). FSHD2-associated mutations lead to loss of function; however, whether BAMS is associated with loss- or gain-of-function mutations in SMCHD1 is unclear. Here, we have assessed the effect of SMCHD1 missense mutations from FSHD2 and BAMS patients on ATP hydrolysis activity and protein conformation and the effect of BAMS mutations on craniofacial development in a Xenopus model. These data demonstrated that FSHD2 mutations only result in decreased ATP hydrolysis, whereas many BAMS mutations can result in elevated ATPase activity and decreased eye size in Xenopus Interestingly, a mutation reported in both an FSHD2 patient and a BAMS patient results in increased ATPase activity and a smaller Xenopus eye size. Mutations in the extended ATPase domain increased catalytic activity, suggesting critical regulatory intramolecular interactions and the possibility of targeting this region therapeutically to boost SMCHD1's activity to counter FSHD.
© 2018 Gurzau et al.

Entities:  

Keywords:  ATPase; SMC; Xenopus; craniofacial development; epigenetics; hinge domain; muscular dystrophy; small-angle X-ray scattering (SAXS)

Mesh:

Substances:

Year:  2018        PMID: 29748383      PMCID: PMC6016475          DOI: 10.1074/jbc.RA118.003104

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  43 in total

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7.  Structural and functional analysis of the middle segment of hsp90: implications for ATP hydrolysis and client protein and cochaperone interactions.

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9.  Cohesin relocation from sites of chromosomal loading to places of convergent transcription.

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10.  The Phyre2 web portal for protein modeling, prediction and analysis.

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Journal:  Nat Protoc       Date:  2015-05-07       Impact factor: 13.491

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  14 in total

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2.  Smchd1 is a maternal effect gene required for genomic imprinting.

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3.  SMCHD1 mutation spectrum for facioscapulohumeral muscular dystrophy type 2 (FSHD2) and Bosma arhinia microphthalmia syndrome (BAMS) reveals disease-specific localisation of variants in the ATPase domain.

Authors:  Richard J L F Lemmers; Nienke van der Stoep; Patrick J van der Vliet; Steven A Moore; David San Leon Granado; Katherine Johnson; Ana Topf; Volker Straub; Teresinha Evangelista; Tahseen Mozaffar; Virginia Kimonis; Natalie D Shaw; Rita Selvatici; Alessandra Ferlini; Nicol Voermans; Baziel van Engelen; Sabrina Sacconi; Rabi Tawil; Meindert Lamers; Silvère M van der Maarel
Journal:  J Med Genet       Date:  2019-06-26       Impact factor: 6.318

4.  Epigenetic modifier SMCHD1 maintains a normal pool of long-term hematopoietic stem cells.

Authors:  Sarah A Kinkel; Joy Liu; Tamara Beck; Kelsey A Breslin; Megan Iminitoff; Peter Hickey; Marnie E Blewitt
Journal:  iScience       Date:  2022-06-30

5.  SMCHD1 is involved in de novo methylation of the DUX4-encoding D4Z4 macrosatellite.

Authors:  Camille Dion; Stéphane Roche; Camille Laberthonnière; Natacha Broucqsault; Virginie Mariot; Shifeng Xue; Alexandra D Gurzau; Agnieszka Nowak; Christopher T Gordon; Marie-Cécile Gaillard; Claire El-Yazidi; Morgane Thomas; Andrée Schlupp-Robaglia; Chantal Missirian; Valérie Malan; Liham Ratbi; Abdelaziz Sefiani; Bernd Wollnik; Bernard Binetruy; Emmanuelle Salort Campana; Shahram Attarian; Rafaelle Bernard; Karine Nguyen; Jeanne Amiel; Julie Dumonceaux; James M Murphy; Jérôme Déjardin; Marnie E Blewitt; Bruno Reversade; Jérôme D Robin; Frédérique Magdinier
Journal:  Nucleic Acids Res       Date:  2019-04-08       Impact factor: 16.971

6.  A ubiquitin-like domain is required for stabilizing the N-terminal ATPase module of human SMCHD1.

Authors:  Lars C Pedersen; Kaoru Inoue; Susan Kim; Lalith Perera; Natalie D Shaw
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7.  Phenotypic Variability Among Patients With D4Z4 Reduced Allele Facioscapulohumeral Muscular Dystrophy.

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Review 9.  Consequences of epigenetic derepression in facioscapulohumeral muscular dystrophy.

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10.  The effects of the DNA Demethylating reagent, 5-azacytidine on SMCHD1 genomic localization.

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