| Literature DB >> 31852522 |
Hormos Salimi Dafsari1,2, Nur Mehpare Kocaturk1,2, Hülya-Sevcan Daimagüler1,2, Anna Brunn3, Jörg Dötsch1,4, Joachim Weis5, Martina Deckert3, Sebahattin Cirak6,7,8.
Abstract
Congenital myopathies (CM) form a genetically heterogeneous group of disorders characterized by perinatal muscle weakness. Here, we report an 11-year old male offspring of consanguineous parents of Lebanese origin. He presented with proximal weakness including Gower's sign, and skeletal muscle biopsy revealed myopathic changes with core-like structures. Whole exome sequencing of this index patient lead to the discovery of a novel genetically defined CM subtype based on bi-allelic mutations in the uncoordinated mutant number-45 myosin chaperone B (UNC45B) NM_173167:c.2261G > A, p.Arg754Gln. The mutation is conserved in evolution and co-segregates within the pedigree with the phenotype, and located in the myosin binding armadillo repeat domain 3 (ARM3), and has a CADD Score of 35. On a multimeric level, UNC45B aggregates to a chain which serves as an assembly line and functions as a "template" defining the geometry, regularity, and periodicity of myosin arranged into muscle thick filaments. Our discovery is in line with the previously described myopathological phenotypes in C. elegans and in vertebrate mutants and knockdown-models. In conclusion, we here report for the first time a patient with an UNC45B mutation causing a novel genetically defined congenital myopathy disease entity.Entities:
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Year: 2019 PMID: 31852522 PMCID: PMC6921565 DOI: 10.1186/s40478-019-0869-1
Source DB: PubMed Journal: Acta Neuropathol Commun ISSN: 2051-5960 Impact factor: 7.801
Fig. 1Phenotypic, myopathological, and electron microscopical findings in our patient with an overview of the UNC45B variant identified in this study. a Front and side view of our patient, showing hyperlordosis and obesity. b Gower’s sign in our patient. c Increased fiber size caliber spectrum with internalized nuclei predominantly in hypertrophic muscle fibers (arrows) and atrophic muscle fibers (arrowheads). H&E staining, original magnification × 400; scale bar 20 μm. d Disorganization of myofibrillary architecture evidenced by pale centers of muscle fibers presenting as core-like structures. Enzyme histochemistry with NADH; original magnification × 400; scale bar 20 μm. e Focal myofibrillary disintegration (arrows) and occasional non-subsarcolemmal muscle fiber nuclei. Semithin section, toluidine blue staining; scale bar 20 μm. f Subsarcolemmal core-like structure and Z-band streaming in electron microscopy (EM). g Pedigree and chromatograms of the index patient, healthy sisters, and healthy mother. The healthy father’s blood sample was unavailable for dideoxy sequencing. h UNC45B multiple sequence alignment made with Jalview shows high evolutionary conservation at amino acid residue p.Arg754 (NP_775259.1 Homo sapiens, the mutated sequence from our patient c.2261G > A p.Arg754Gln, XP_001174363.2 P. troglodytes, XP_0011113905.2 m. mulatta, XP_005624856.1 C. lupus, XP_002695676.1 B. taurus, NP_848795.3 m. musculus, NP_001100498.1 R. norvegicus, XP_004946569.1 g. gallus, NP_705959.1 D. rerio, NP_001172057.1 x. tropicalis, NP_524796.1 D. melanogaster, XP_310258.5 A. gambiae, and NP_497205.1 C. elegans). i Variant in the UNC45B gene (NM_173167.3, 20 exons) identified in our patients and concomitant position in the j. UNC45B protein structure (Q8IWX7) based on 931-aa isoform (ENST00000268876.9, NP_775259.1); pictogram with protein domains: Tetratricopeptide repeats (TPR, red) and Armadillo/beta-catenin-like repeats (ARM, green), N-terminal region of protein in blue, central region (131–506) in white, UCS region (Unc45−/Cro1p−/She4p-related protein) in red (507–931). Gene and protein sequences are drawn with the IBS Biocuckoo web server [14]