Search results for "Congenital myopathy"

showing 10 items of 21 documents

The genomic and clinical landscape of fetal akinesia

2020

International audience; Fetal akinesia has multiple clinical subtypes with over 160 gene associations, but the genetic etiology is not yet completely understood.Methods: In this study, 51 patients from 47 unrelated families were analyzed using next-generation sequencing (NGS) techniques aiming to decipher the genomic landscape of fetal akinesia (FA).Results: We have identified likely pathogenic gene variants in 37 cases and report 41 novel variants. Additionally, we report putative pathogenic variants in eight cases including nine novel variants. Our work identified 14 novel disease-gene associations for fetal akinesia: ADSSL1, ASAH1, ASPM, ATP2B3, EARS2, FBLN1, PRG4, PRICKLE1, ROR2, SETBP1…

MaleCandidate geneMyopathyVARIANTSFetal akinesiaMESH: Ryanodine Receptor Calcium Release Channel0302 clinical medicineMESH: ChildGuanine Nucleotide Exchange FactorsMESH: Guanine Nucleotide Exchange FactorsExomeCopy-number variationChildExomeMESH: High-Throughput Nucleotide SequencingGenetics (clinical)GeneticsArthrogryposisArthrogryposis0303 health sciencesMESH: Infant NewbornMESH: Genetic Predisposition to DiseaseHigh-Throughput Nucleotide SequencingRNA-Binding ProteinsMESH: Infant3. Good healthFetal DiseasesCopy-number variationMESH: Fetal DiseasesMESH: Young AdultChild PreschoolASAH1FemaleMESH: DNA Copy Number Variationsmedicine.symptomAdultGENETICSAdolescentDNA Copy Number VariationsMESH: Trans-ActivatorsMESH: ArthrogryposisBiologyASPMYoung Adult03 medical and health sciencesMuscular DiseasesmedicineHumansGenetic Predisposition to DiseaseGene030304 developmental biologyMESH: Adolescent[SDV.MHEP.PED]Life Sciences [q-bio]/Human health and pathology/PediatricsMESH: HumansMUTATIONSMESH: Child PreschoolInfant NewbornMESH: Muscular DiseasesInfantNEMALINE MYOPATHYRyanodine Receptor Calcium Release ChannelMESH: Adultmedicine.diseaseCongenital myopathyMESH: MaleMESH: RNA-Binding Proteins[SDV.GEN.GH]Life Sciences [q-bio]/Genetics/Human geneticsDISTAL ARTHROGRYPOSISTrans-ActivatorsMESH: Female030217 neurology & neurosurgery
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Novel slow-skeletal myosin (MYH7) mutation in the original myosin storage myopathy kindred

2006

Abstract Myosin storage myopathy (OMIM 608358), a congenital myopathy characterised by subsarcolemmal, hyaline-like accumulations of myosin in Type I muscle fibres, was first described by Cancilla and Colleagues in 1971 [Neurology 1971;21:579–585] in two siblings as ‘familial myopathy with probable lysis of myofibrils in type I muscle fibres'. Two mutations in the slow skeletal myosin heavy chain gene ( MYH7 ) have recently been associated with the disease in other families. We have identified a novel heterozygous Leu1793Pro mutation in MYH7 in DNA from paraffin sections of one of the original siblings. This historical molecular analysis confirms the original cases had myosin storage myopat…

MaleHeterozygotemacromolecular substancesMyosinsBiologymedicine.disease_causeMuscular DiseasesMyofibrilsMyosinmedicineHumansMyopathyGeneGenetics (clinical)GeneticsMutationMyosin Heavy ChainsMyosin storage myopathyDNAExonsmedicine.diseaseMolecular biologyCongenital myopathyMuscle Fibers Slow-TwitchNeurologyChild PreschoolMutationPediatrics Perinatology and Child HealthFemaleMYH7Neurology (clinical)medicine.symptomMyofibrilCardiac MyosinsNeuromuscular Disorders
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Actin-related myopathy without any missense mutation in the ACTA1 gene.

2004

Actinopathies are defined by missense mutations in the ACTA1 gene coding for sarcomeric actin, of which some 70 families have, so far, been identified. Often, but not always, muscle fibers carry large patches of actin filaments. Many such patients also have nemaline myopathy, qualifying actinopathies as a subgroup of nemaline myopathies. This article concerns a then newborn, now 21/2-year-old boy, the first and single child of nonconsanguineous parents, who was born floppy, requiring immediate postnatal assisted ventilation. A quadriceps muscle biopsy revealed large patches of thin myofilaments reacting at light and electron microscopic levels with antibodies against actin but only a few s…

MaleMyofilamentBiopsyDNA Mutational AnalysisMutation MissenseGene mutationBiologymedicine.disease_cause03 medical and health sciences0302 clinical medicineNemaline myopathyMuscular Diseases030225 pediatricsmedicineMissense mutationHumansPoint MutationMyopathyMuscle SkeletalActinMutationInfantmedicine.diseaseMolecular biologyCongenital myopathyActinsPediatrics Perinatology and Child HealthNeurology (clinical)medicine.symptom030217 neurology & neurosurgeryJournal of child neurology
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A new familial congenital myopathy in children with desmin and dystrophin reacting plaques.

1995

In 5 children with a progressive congenital myopathy representing 3 different families, unusual histological, immunohistochemical and ultrastructural changes in skeletal muscle have been found. Histologically, this myopathy was characterized by the presence of fine hyaline plaques devoid of oxidative as well as ATPase enzyme activities. At the ultrastructural level plaques were composed of helical filaments and amorphous dense material. Helical filament storage corresponded to strong desmin as well as ubiquitin immunoreactivity. In addition they were also dystrophin positive. The exclusive appearance of desmin, ubiquitin and dystrophin positive plaques in muscle specimens from 5 children em…

MalePathologymedicine.medical_specialtyAdolescentImmunocytochemistryBiologyDesminDystrophinMyofibrilsBiopsymedicineHumansMyopathyChildUbiquitinsHyalinemedicine.diagnostic_testMusclesSkeletal muscleNeuromuscular Diseasesmedicine.diseaseCongenital myopathyImmunohistochemistryMicroscopy Electronmedicine.anatomical_structureNeurologyChild Preschoolbiology.proteinDesminFemaleNeurology (clinical)medicine.symptomDystrophinJournal of the neurological sciences
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HACD1, a regulator of membrane composition and fluidity, promotes myoblast fusion and skeletal muscle growth

2015

International audience; The reduced diameter of skeletal myofibres is a hallmark of several congenital myopathies, yet the underlying cellular and molecular mechanisms remain elusive. In this study, we investigate the role of HACD1/PTPLA, which is involved in the elongation of the very long chain fatty acids, in muscle fibre formation. In humans and dogs, HACD1 deficiency leads to a congenital myopathy with fibre size disproportion associated with a generalized muscle weakness. Through analysis of HACD1-deficient Labradors, Hacd1-knockout mice, and Hacd1-deficient myoblasts, we provide evidence that HACD1 promotes myoblast fusion during muscle development and regeneration. We further demons…

Male[SPI.GPROC] Engineering Sciences [physics]/Chemical and Process EngineeringCellular differentiationGeneralized muscle weaknessBiologyMuscle Developmentcentronuclear myopathyCell LineMyoblasts03 medical and health scienceschemistry.chemical_compoundMyoblast fusionMice0302 clinical medicineDogsVLCFA[SDV.IDA]Life Sciences [q-bio]/Food engineeringGeneticsmedicineMyocyteAnimalsHumans[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringMUFACentronuclear myopathyMuscle SkeletalMolecular Biology030304 developmental biologyMice Knockout0303 health sciencesPTPLACell MembraneSkeletal muscleCell DifferentiationCell BiologyGeneral MedicineArticles[SDV.IDA] Life Sciences [q-bio]/Food engineeringmedicine.diseaseCongenital myopathyLysophosphatidylcholinemedicine.anatomical_structureLPCchemistryBiochemistryFemaleProtein Tyrosine Phosphatasescentronuclear myopathy;lpc;mufa;ptpla;vlcfa030217 neurology & neurosurgery
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Familial mixed congenital myopathy with rigid spine phenotype

1997

We describe a father and daughter with a rigid spine syndrome and proximal myopathy. The index patient was a 42-year-old man, who died from respiratory failure after a lifelong, slowly progressive proximal myopathy and a rigid spine phenotype. This was morphologically characterized by cytoplasmic bodies, increased desmin, features of reducing-body myopathy, and sarcoplasmic and intranuclear tubulofilamentous inclusions. These cases are characterized by an early onset and possibly autosomal-dominant inheritance, with associated complex structural hallmarks of both desmin-related and inclusion body myopathies. Together they may be defined as a complex mixed congenital myopathy with a rigid sp…

Mixed congenital myopathyPathologymedicine.medical_specialtyPhysiologybusiness.industryRIGID SPINE SYNDROMEAnatomymusculoskeletal systemRigid spinePhenotypeTubulofilamentous inclusionsCellular and Molecular NeuroscienceRespiratory failurePhysiology (medical)medicineDesminNeurology (clinical)medicine.symptomMyopathybusinessMuscle & Nerve
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Proteomic identification of FHL1 as the protein mutated in human reducing body myopathy

2007

Reducing body myopathy (RBM) is a rare disorder causing progressive muscular weakness characterized by aggresome-like inclusions in the myofibrils. Identification of genes responsible for RBM by traditional genetic approaches has been impossible due to the frequently sporadic occurrence in affected patients and small family sizes. As an alternative approach to gene identification, we used laser microdissection of intracytoplasmic inclusions identified in patient muscle biopsies, followed by nanoflow liquid chromatography-tandem mass spectrometry and proteomic analysis. The most prominent component of the inclusions was the Xq26.3-encoded four and a half LIM domain 1 (FHL1) protein, expresse…

Models MolecularProteomicsMolecular Sequence DataMuscle ProteinsBiologyTransfectionProteomicsInclusion bodiesMuscular DiseasesmedicineAmino Acid SequenceLaser capture microdissectionInclusion BodiesIntracellular Signaling Peptides and ProteinsCardiac muscleSkeletal muscleGenetic Diseases X-LinkedGeneral MedicineLIM Domain Proteinsmedicine.diseaseCongenital myopathyMolecular biologyFHL1medicine.anatomical_structureMutationMyofibrilResearch Article
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Congenital Myopathies in the New Millennium

2005

Few medical disciplines have benefited so enormously from the molecular revolution as myology. Whereas the congenital myopathies have flourished from enzyme histochemistry and electron microscopy, defining individual congenital myopathies by structural abnormalities, genetic research has only recently focused on congenital myopathies. However, a number of congenital myopathies have been molecularly elucidated: central and multiminicore diseases, nemaline myopathy, myotubular myopathy, and congenital myopathy marked by aggregation of proteins, giving rise to the concept of protein aggregate myopathies, to which now desminopathies, α-B crystallinopathies, selenoproteinopathy, myotilinopathy,…

MyotilinopathyPathologymedicine.medical_specialtyEnzyme histochemistryBiologymedicine.diseaseCongenital myopathyMolecular analysis03 medical and health sciences0302 clinical medicineNemaline myopathy030225 pediatricsPediatrics Perinatology and Child HealthMyologymedicineMyotubular MyopathyNeurology (clinical)030217 neurology & neurosurgeryJournal of Child Neurology
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Cap disease uncapped

2007

With the advent of enzyme histochemistry and electron microscopy, the new nosographic group of congenital myopathies hailed as ‘‘new myopathies’’ [1] was established, largely based on morphological features in biopsied muscle specimens although clinically early (congenital) onset and mild progression were also attributed to these childhood myopathies. When molecular investigations of patients with hereditary neuromuscular diseases began, earlier classifications based on clinical, morphological, and metabolic criteria started to quake, most conspicuously observed in the group of limb girdle muscular dystrophy or limb girdle muscular syndrome, which now comprise seven autosomal dominant (LGMD…

Pathologymedicine.medical_specialtyGenetic mosaicbusiness.industryCap DiseaseLimb girdleDiseasemedicine.diseaseCongenital myopathyTPM2NeurologyPediatrics Perinatology and Child HealthmedicineNeurology (clinical)businessGenetics (clinical)Central core diseaseLimb-girdle muscular dystrophyNeuromuscular Disorders
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X-Linked myopathy with excessive autophagy: A new hereditary muscle disease

1988

We report on 3 brothers with a myopathy that also affected their maternal grandfather and great-uncle. Characteristic features are onset in early childhood, very slow progression, normal life expectancy, weakness of proximal limb muscles, especially in the legs, elevation of serum creatine kinase, and no cardiac or intellectual involvement. In biopsy material muscle fibers are almost never necrotic but show excessive autophagic activity and exocytosis of the phagocytosed material. We suggest that this family has an undescribed type of congenital myopathy, for which we propose the name X-linked myopathy with excessive autophagy.

WeaknessPathologymedicine.medical_specialtybusiness.industryAutophagyAnatomymedicine.diseaseCongenital myopathyX-linked myopathy with excessive autophagyMuscle diseaseNeurologySlow progressionMedicineNeurology (clinical)Biopsy materialmedicine.symptombusinessMyopathyAnnals of Neurology
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