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Mutations in MYLPF Cause a Novel Segmental Amyoplasia that Manifests as Distal Arthrogryposis.
Chong, Jessica X; Talbot, Jared C; Teets, Emily M; Previs, Samantha; Martin, Brit L; Shively, Kathryn M; Marvin, Colby T; Aylsworth, Arthur S; Saadeh-Haddad, Reem; Schatz, Ulrich A; Inzana, Francesca; Ben-Omran, Tawfeg; Almusafri, Fatima; Al-Mulla, Mariam; Buckingham, Kati J; Harel, Tamar; Mor-Shaked, Hagar; Radhakrishnan, Periyasamy; Girisha, Katta M; Nayak, Shalini S; Shukla, Anju; Dieterich, Klaus; Faure, Julien; Rendu, John; Capri, Yline; Latypova, Xenia; Nickerson, Deborah A; Warshaw, David M; Janssen, Paul M L; Amacher, Sharon L; Bamshad, Michael J.
Afiliação
  • Chong JX; Division of Genetic Medicine, Department of Pediatrics, University of Washington, Seattle, WA 98195, USA; Brotman-Baty Institute, Seattle, WA 98195, USA.
  • Talbot JC; Department of Molecular Genetics, The Ohio State University, Columbus, OH 43210, USA; Center for Muscle Health and Neuromuscular Disorders, Columbus OH 43210, USA. Electronic address: jared.talbot@maine.edu.
  • Teets EM; Department of Molecular Genetics, The Ohio State University, Columbus, OH 43210, USA.
  • Previs S; Department of Molecular Physiology and Biophysics, University of Vermont, Burlington, VT 05405, USA.
  • Martin BL; Department of Physiology and Cell Biology, The Ohio State University, Columbus, OH 43210, USA.
  • Shively KM; Division of Genetic Medicine, Department of Pediatrics, University of Washington, Seattle, WA 98195, USA.
  • Marvin CT; Division of Genetic Medicine, Department of Pediatrics, University of Washington, Seattle, WA 98195, USA.
  • Aylsworth AS; Departments of Pediatrics and Genetics, University of North Carolina, Chapel Hill, NC 27599, USA.
  • Saadeh-Haddad R; Division of Genetics, Department of Pediatrics, Medstar Georgetown University Hospital, Washington, DC 20007, USA.
  • Schatz UA; Human Genetics, Medical University, Innsbruck 6020, Austria.
  • Inzana F; Genetic Counseling Service, Department of Pediatrics, Regional Hospital of Bolzano, Bolzano 39100, Italy.
  • Ben-Omran T; Division of Genetic and Genomic Medicine, Sidra Medicine and Hamad Medical Corporation, PO Box 3050, Doha, Qatar.
  • Almusafri F; Division of Genetic and Genomic Medicine, Sidra Medicine and Hamad Medical Corporation, PO Box 3050, Doha, Qatar.
  • Al-Mulla M; Division of Genetic and Genomic Medicine, Sidra Medicine and Hamad Medical Corporation, PO Box 3050, Doha, Qatar.
  • Buckingham KJ; Division of Genetic Medicine, Department of Pediatrics, University of Washington, Seattle, WA 98195, USA.
  • Harel T; Department of Genetics, Hadassah-Hebrew University Medical Center, Jerusalem 91120, Israel.
  • Mor-Shaked H; Department of Genetics, Hadassah-Hebrew University Medical Center, Jerusalem 91120, Israel.
  • Radhakrishnan P; Department of Medical Genetics, Kasturba Medical College, Manipal, Manipal Academy of Higher Education, Manipal 576104, India.
  • Girisha KM; Department of Medical Genetics, Kasturba Medical College, Manipal, Manipal Academy of Higher Education, Manipal 576104, India.
  • Nayak SS; Department of Medical Genetics, Kasturba Medical College, Manipal, Manipal Academy of Higher Education, Manipal 576104, India.
  • Shukla A; Department of Medical Genetics, Kasturba Medical College, Manipal, Manipal Academy of Higher Education, Manipal 576104, India.
  • Dieterich K; Department of Medical Genetics, CHU Grenoble Alpes, Génétique Médicale, Grenoble 38700, France; Université Grenoble Alpes, Inserm, U1216, Grenoble Institut des Neurosciences, Grenoble 38706, France.
  • Faure J; Université Grenoble Alpes, Inserm, U1216, Grenoble Institut des Neurosciences, Grenoble 38706, France; Biochimie Génétique et Moléculaire, CHU Grenoble Alpes, Grenoble 38700, France.
  • Rendu J; Université Grenoble Alpes, Inserm, U1216, Grenoble Institut des Neurosciences, Grenoble 38706, France; Biochimie Génétique et Moléculaire, CHU Grenoble Alpes, Grenoble 38700, France.
  • Capri Y; Department of Genetics, APHP-Robert DEBRE University Hospital, UF Génétique clinique, Paris 75019, France.
  • Latypova X; Université Grenoble Alpes, Inserm, U1216, Grenoble Institut des Neurosciences, Grenoble 38706, France; Biochimie Génétique et Moléculaire, CHU Grenoble Alpes, Grenoble 38700, France.
  • Nickerson DA; Brotman-Baty Institute, Seattle, WA 98195, USA; Department of Genome Sciences, University of Washington, Seattle, WA 98195, USA.
  • Warshaw DM; Department of Molecular Physiology and Biophysics, University of Vermont, Burlington, VT 05405, USA.
  • Janssen PML; Department of Physiology and Cell Biology, The Ohio State University, Columbus, OH 43210, USA.
  • Amacher SL; Department of Molecular Genetics, The Ohio State University, Columbus, OH 43210, USA; Center for Muscle Health and Neuromuscular Disorders, Columbus OH 43210, USA; Dept of Biological Chemistry and Pharmacology, The Ohio State University, Columbus, OH 43210, USA; Center for RNA Biology, The Ohio Stat
  • Bamshad MJ; Division of Genetic Medicine, Department of Pediatrics, University of Washington, Seattle, WA 98195, USA; Brotman-Baty Institute, Seattle, WA 98195, USA; Department of Genome Sciences, University of Washington, Seattle, WA 98195, USA; Seattle Children's Hospital, Seattle, WA 98105, USA. Electronic a
Am J Hum Genet ; 107(2): 293-310, 2020 08 06.
Article em En | MEDLINE | ID: mdl-32707087
ABSTRACT
We identified ten persons in six consanguineous families with distal arthrogryposis (DA) who had congenital contractures, scoliosis, and short stature. Exome sequencing revealed that each affected person was homozygous for one of two different rare variants (c.470G>T [p.Cys157Phe] or c.469T>C [p.Cys157Arg]) affecting the same residue of myosin light chain, phosphorylatable, fast skeletal muscle (MYLPF). In a seventh family, a c.487G>A (p.Gly163Ser) variant in MYLPF arose de novo in a father, who transmitted it to his son. In an eighth family comprised of seven individuals with dominantly inherited DA, a c.98C>T (p.Ala33Val) variant segregated in all four persons tested. Variants in MYLPF underlie both dominant and recessively inherited DA. Mylpf protein models suggest that the residues associated with dominant DA interact with myosin whereas the residues altered in families with recessive DA only indirectly impair this interaction. Pathological and histological exam of a foot amputated from an affected child revealed complete absence of skeletal muscle (i.e., segmental amyoplasia). To investigate the mechanism for this finding, we generated an animal model for partial MYLPF impairment by knocking out zebrafish mylpfa. The mylpfa mutant had reduced trunk contractile force and complete pectoral fin paralysis, demonstrating that mylpf impairment most severely affects limb movement. mylpfa mutant muscle weakness was most pronounced in an appendicular muscle and was explained by reduced myosin activity and fiber degeneration. Collectively, our findings demonstrate that partial loss of MYLPF function can lead to congenital contractures, likely as a result of degeneration of skeletal muscle in the distal limb.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Artrogripose / Músculo Esquelético / Cadeias Leves de Miosina / Anormalidades Musculoesqueléticas / Mutação Tipo de estudo: Prognostic_studies Limite: Adolescent / Adult / Animals / Child / Female / Humans / Male Idioma: En Revista: Am J Hum Genet Ano de publicação: 2020 Tipo de documento: Article País de afiliação: Estados Unidos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Artrogripose / Músculo Esquelético / Cadeias Leves de Miosina / Anormalidades Musculoesqueléticas / Mutação Tipo de estudo: Prognostic_studies Limite: Adolescent / Adult / Animals / Child / Female / Humans / Male Idioma: En Revista: Am J Hum Genet Ano de publicação: 2020 Tipo de documento: Article País de afiliação: Estados Unidos