Pathogenic Variants in the Myosin Chaperone UNC-45B Cause Progressive Myopathy with Eccentric Cores

The myosin-directed chaperone UNC-45B is essential for sarcomeric organization and muscle function from Caenorhabditis elegans to humans. The pathological impact of UNC-45B in muscle disease remained elusive. We report ten individuals with bi-allelic variants in UNC45B who exhibit childhood-onset pr...

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Veröffentlicht in:American journal of human genetics 2020-12, Vol.107 (6), p.1078-1095
Hauptverfasser: Donkervoort, Sandra, Kutzner, Carl E., Hu, Ying, Lornage, Xavière, Rendu, John, Stojkovic, Tanya, Baets, Jonathan, Neuhaus, Sarah B., Tanboon, Jantima, Maroofian, Reza, Bolduc, Véronique, Mroczek, Magdalena, Conijn, Stefan, Kuntz, Nancy L., Töpf, Ana, Monges, Soledad, Lubieniecki, Fabiana, McCarty, Riley M., Chao, Katherine R., Governali, Serena, Böhm, Johann, Boonyapisit, Kanokwan, Malfatti, Edoardo, Sangruchi, Tumtip, Horkayne-Szakaly, Iren, Hedberg-Oldfors, Carola, Efthymiou, Stephanie, Noguchi, Satoru, Djeddi, Sarah, Iida, Aritoshi, di Rosa, Gabriella, Fiorillo, Chiara, Salpietro, Vincenzo, Darin, Niklas, Fauré, Julien, Houlden, Henry, Oldfors, Anders, Nishino, Ichizo, de Ridder, Willem, Straub, Volker, Pokrzywa, Wojciech, Laporte, Jocelyn, Foley, A. Reghan, Romero, Norma B., Ottenheijm, Coen, Hoppe, Thorsten, Bönnemann, Carsten G.
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Sprache:eng
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Zusammenfassung:The myosin-directed chaperone UNC-45B is essential for sarcomeric organization and muscle function from Caenorhabditis elegans to humans. The pathological impact of UNC-45B in muscle disease remained elusive. We report ten individuals with bi-allelic variants in UNC45B who exhibit childhood-onset progressive muscle weakness. We identified a common UNC45B variant that acts as a complex hypomorph splice variant. Purified UNC-45B mutants showed changes in folding and solubility. In situ localization studies further demonstrated reduced expression of mutant UNC-45B in muscle combined with abnormal localization away from the A-band towards the Z-disk of the sarcomere. The physiological relevance of these observations was investigated in C. elegans by transgenic expression of conserved UNC-45 missense variants, which showed impaired myosin binding for one and defective muscle function for three. Together, our results demonstrate that UNC-45B impairment manifests as a chaperonopathy with progressive muscle pathology, which discovers the previously unknown conserved role of UNC-45B in myofibrillar organization.
ISSN:0002-9297
1537-6605
DOI:10.1016/j.ajhg.2020.11.002