Mutations in the satellite cell gene MEGF10 cause a recessive congenital myopathy with minicores

被引:58
|
作者
Boyden, Steven E. [2 ,3 ,4 ]
Mahoney, Lane J. [3 ,4 ]
Kawahara, Genri [3 ,4 ]
Myers, Jennifer A. [3 ,4 ]
Mitsuhashi, Satomi [3 ,4 ,5 ]
Estrella, Elicia A. [3 ,4 ]
Duncan, Anna R. [3 ,4 ]
Dey, Friederike [3 ,4 ]
DeChene, Elizabeth T. [3 ,4 ]
Blasko-Goehringer, Jessica M. [3 ,4 ]
Boennemann, Carsten G. [6 ]
Darras, Basil T. [1 ]
Mendell, Jerry R. [7 ]
Lidov, Hart G. W. [3 ,4 ,8 ]
Nishino, Ichizo [5 ]
Beggs, Alan H. [3 ,4 ,9 ]
Kunkel, Louis M. [2 ,3 ,4 ,9 ]
Kang, Peter B. [1 ,3 ,4 ]
机构
[1] Childrens Hosp, Dept Neurol, Boston, MA 02115 USA
[2] Harvard Univ, Sch Med, Dept Genet, Boston, MA 02115 USA
[3] Childrens Hosp, Div Genet, Program Genom, Boston, MA 02115 USA
[4] Childrens Hosp, Manton Ctr Orphan Dis Res, Boston, MA 02115 USA
[5] Natl Ctr Neurol & Psychiat, Dept Neuromuscular Res, Natl Inst Neurosci, Tokyo, Japan
[6] Natl Inst Neurol Disorders & Stroke, NIH, Bethesda, MD USA
[7] Nationwide Childrens Hosp, Ctr Gene Therapy Res Inst, Columbus, OH USA
[8] Childrens Hosp, Dept Pathol, Boston, MA 02115 USA
[9] Harvard Univ, Sch Med, Dept Pediat, Boston, MA 02115 USA
关键词
MEGF10; Whole genome sequencing; Linkage analysis; Congenital myopathy; Satellite cells; Cleft palate; MUSCULAR-DYSTROPHY; MUSCLE; DISEASE; ZEBRAFISH; CED-1; IDENTIFICATION; ORTHOLOG; DOMAINS; BRAIN;
D O I
10.1007/s10048-012-0315-z
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
We ascertained a nuclear family in which three of four siblings were affected with an unclassified autosomal recessive myopathy characterized by severe weakness, respiratory impairment, scoliosis, joint contractures, and an unusual combination of dystrophic and myopathic features on muscle biopsy. Whole genome sequence from one affected subject was filtered using linkage data and variant databases. A single gene, MEGF10, contained nonsynonymous mutations that co-segregated with the phenotype. Affected subjects were compound heterozygous for missense mutations c.976T > C (p.C326R) and c.2320T > C (p.C774R). Screening the MEGF10 open reading frame in 190 patients with genetically unexplained myopathies revealed a heterozygous mutation, c.211C > T (p.R71W), in one additional subject with a similar clinical and histological presentation as the discovery family. All three mutations were absent from at least 645 genotyped unaffected control subjects. MEGF10 contains 17 atypical epidermal growth factor-like domains, each of which contains eight cysteine residues that likely form disulfide bonds. Both the p.C326R and p.C774R mutations alter one of these residues, which are completely conserved in vertebrates. Previous work showed that murine Megf10 is required for preserving the undifferentiated, proliferative potential of satellite cells, myogenic precursors that regenerate skeletal muscle in response to injury or disease. Here, knockdown of megf10 in zebrafish by four different morpholinos resulted in abnormal phenotypes including unhatched eggs, curved tails, impaired motility, and disorganized muscle tissue, corroborating the pathogenicity of the human mutations. Our data establish the importance of MEGF10 in human skeletal muscle and suggest satellite cell dysfunction as a novel myopathic mechanism.
引用
收藏
页码:115 / 124
页数:10
相关论文
共 50 条
  • [1] Mutations in the satellite cell gene MEGF10 cause a recessive congenital myopathy with minicores
    Steven E. Boyden
    Lane J. Mahoney
    Genri Kawahara
    Jennifer A. Myers
    Satomi Mitsuhashi
    Elicia A. Estrella
    Anna R. Duncan
    Friederike Dey
    Elizabeth T. DeChene
    Jessica M. Blasko-Goehringer
    Carsten G. Bönnemann
    Basil T. Darras
    Jerry R. Mendell
    Hart G. W. Lidov
    Ichizo Nishino
    Alan H. Beggs
    Louis M. Kunkel
    Peter B. Kang
    neurogenetics, 2012, 13 : 115 - 124
  • [2] MEGF10 gene mutations causing a recessive congenital multiminicore myopathy
    Faria, Larissa Maria
    Soares Barbosa, Andre Vinicius
    Torres, Bruna Ribeiro
    de Menezes e Souza Filho, Carlos Eduardo
    Silva Thiersch, Laura Maria
    Fonseca Oliveira, Thais de Almeida
    NEUROLOGY, 2023, 100 (17)
  • [3] Myofibrillar myopathy phenotype due to recessive mutations in MEGF10
    Harris, E.
    Topf, A.
    Hudson, J.
    Barresi, R.
    Bushby, K.
    Lochmueller, H.
    Straub, V.
    NEUROMUSCULAR DISORDERS, 2017, 27 : S9 - S9
  • [4] Cysteine mutations cause defective tyrosine phosphorylation in MEGF10 myopathy
    Mitsuhashi, Satomi
    Mitsuhashi, Hiroaki
    Alexander, Matthew S.
    Sugimoto, Hiroyuki
    Kang, Peter B.
    FEBS LETTERS, 2013, 587 (18) : 2952 - 2957
  • [5] Cysteine mutations cause defective tyrosine phosphorylation in MEGF10 myopathy
    Mitsuhashi, S.
    Mitsuhashi, H.
    Alexander, M. S.
    Sugimoto, H.
    Kang, P. B.
    NEUROMUSCULAR DISORDERS, 2014, 24 (9-10) : 849 - 849
  • [6] Mutations in MEGF10, a regulator of satellite cell myogenesis, cause early onset myopathy, areflexia, respiratory distress and dysphagia (EMARDD)
    Logan, Clare V.
    Lucke, Barbara
    Pottinger, Caroline
    Abdelhamed, Zakia A.
    Parry, David A.
    Szymanska, Katarzyna
    Diggle, Christine P.
    van Riesen, Anne
    Morgan, Joanne E.
    Markham, Grace
    Ellis, Ian
    Manzur, Adnan Y.
    Markham, Alexander F.
    Shires, Mike
    Helliwell, Tim
    Scoto, Mariacristina
    Huebner, Christoph
    Bonthron, David T.
    Taylor, Graham R.
    Sheridan, Eamonn
    Muntoni, Francesco
    Carr, Ian M.
    Schuelke, Markus
    Johnson, Colin A.
    NATURE GENETICS, 2011, 43 (12) : 1189 - 1192
  • [7] Mutations in MEGF10, a regulator of satellite cell myogenesis, cause early onset myopathy, areflexia, respiratory distress and dysphagia (EMARDD)
    Clare V Logan
    Barbara Lucke
    Caroline Pottinger
    Zakia A Abdelhamed
    David A Parry
    Katarzyna Szymanska
    Christine P Diggle
    Anne van Riesen
    Joanne E Morgan
    Grace Markham
    Ian Ellis
    Adnan Y Manzur
    Alexander F Markham
    Mike Shires
    Tim Helliwell
    Mariacristina Scoto
    Christoph Hübner
    David T Bonthron
    Graham R Taylor
    Eamonn Sheridan
    Francesco Muntoni
    Ian M Carr
    Markus Schuelke
    Colin A Johnson
    Nature Genetics, 2011, 43 : 1189 - 1192
  • [8] Megf10 regulates the progression of the satellite cell myogenic program
    Holterman, Chet E.
    Le Grand, Fabien
    Kuang, Shihuan
    Seale, Patrick
    Rudnicki, Michael A.
    JOURNAL OF CELL BIOLOGY, 2007, 179 (05): : 911 - 922
  • [9] Skeletal muscle satellite cell behaviour and the role of MEGF10
    Hughes, R.
    Richardson, L.
    Egginton, S.
    Johnson, C.
    Peckham, M.
    INTERNATIONAL JOURNAL OF EXPERIMENTAL PATHOLOGY, 2019, 100 (04) : A6 - A6
  • [10] Identification and Characterization of Disease Mechanisms in MEGF10 Myopathy
    Saha, Madhurima
    Mitsuhashi, Satomi
    Kang, Peter
    FASEB JOURNAL, 2015, 29