Expanding the clinical-pathological and genetic spectrum of RYR1-related congenital myopathies with cores and minicores: an Italian population study

被引:10
作者
Fusto, Aurora [1 ]
Cassandrini, Denise [2 ]
Fiorillo, Chiara [3 ]
Codemo, Valentina [1 ]
Astrea, Guja [4 ]
D'Amico, Adele [5 ]
Maggi, Lorenzo [6 ]
Magri, Francesca [7 ]
Pane, Marika [8 ]
Tasca, Giorgio [9 ]
Sabbatini, Daniele [1 ]
Bello, Luca [1 ]
Battini, Roberta [2 ]
Bernasconi, Pia [6 ]
Fattori, Fabiana [4 ]
Bertini, Enrico Silvio [4 ]
Comi, Giacomo [7 ]
Messina, Sonia [10 ]
Mongini, Tiziana [11 ]
Moroni, Isabella [12 ]
Panicucci, Chiara [13 ]
Berardinelli, Angela [14 ]
Donati, Alice [15 ]
Nigro, Vincenzo [16 ,17 ]
Pini, Antonella [18 ]
Giannotta, Melania [18 ]
Dosi, Claudia [2 ]
Ricci, Enzo [8 ]
Mercuri, Eugenio [8 ]
Minervini, Giovanni [19 ]
Tosatto, Silvio [19 ]
Santorelli, Filippo [2 ]
Bruno, Claudio [13 ]
Pegoraro, Elena [1 ]
机构
[1] Univ Padua, Dept Neurosci DNS, I-35128 Padua, Italy
[2] IRCCS Fdn Stella Maris, Mol Med Unit, I-56128 Pisa, Italy
[3] Univ Genoa, Dept Neurosci Rehabil Ophthalmol Genet Maternal &, IRCCS Ist Giannina Gaslini, Paediat Neurol & Neuromuscular Disorders Unit, I-16147 Genoa, Italy
[4] IRCCS Fdn Stella Maris, Dept Neurosci, I-56128 Pisa, Italy
[5] Bambino Gesu Pediat Hosp, Mol Med Unit, I-00165 Rome, Italy
[6] Fdn IRCCS Neurol Inst C Besta, Neuroimmunol & Neuromuscular Disorders Unit, I-20133 Milan, Italy
[7] Univ Milan, IRCCS Fdn Ca Granda, Osped Maggiore Policlin, Dept Neurol Sci,Dino Ferrari Ctr, I-20122 Milan, Italy
[8] Catholic Univ, Dept Paediat Neurol, I-00165 Rome, Italy
[9] Fdn Policlin Univ A Gemelli IRCCS, Unita Operat Complessa Neurol, I-00168 Rome, Italy
[10] Univ Messina, Dept Neurosci Psychiat & Anaesthesiol, I-98122 Messina, Italy
[11] Univ Turin, SG Battista Hosp, Neuromuscular Ctr, I-10124 Turin, Italy
[12] Neurol Inst C Besta Fdn IRCCS, Child Neurol Dept, I-20133 Milan, Italy
[13] Univ Genoa, Dept Neurosci Rehabil Ophthalmol Genet Maternal &, IRCCS Ist Giannina Gaslini, Ctr Translat & Expt Myol, I-16147 Genoa, Italy
[14] IRCCS C Mondino Fdn, Child & Adolescent Unit, I-27100 Pavia, Italy
[15] AOU Meyer Children Hosp, Metab Dis Unit, I-50139 Florence, Italy
[16] Luigi Vanvitelli Univ, I-80078 Naples, Italy
[17] Telethon Inst Genet & Med TIGEM, I-80078 Naples, Italy
[18] IRCCS Ist Sci Neurol Bologna, Child Neurol & Psychiat Unit, I-40139 Bologna, Italy
[19] Univ Padua, Dept Biomed Sci, I-35128 Padua, Italy
关键词
RYR1-related myopathies; Central core disease; Multi-minicore disease; Genotype-phenotype correlations; Neuromuscular disorder; Protein modelling; CA2+ RELEASE CHANNEL; MALIGNANT HYPERTHERMIA SUSCEPTIBILITY; RECESSIVE RYR1 MUTATIONS; RYANODINE RECEPTOR GENE; VITRO CONTRACTURE TEST; FUNCTIONAL-CHARACTERIZATION; SARCOPLASMIC-RETICULUM; MULTIMINICORE DISEASE; FKBP12; BINDING; MUSCLE;
D O I
10.1186/s40478-022-01357-0
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Mutations in the RYR1 gene, encoding ryanodine receptor 1 (RyR1), are a well-known cause of Central Core Disease (CCD) and Multi-minicore Disease (MmD). We screened a cohort of 153 patients carrying an histopathological diagnosis of core myopathy (cores and minicores) for RYR1 mutation. At least one RYR1 mutation was identified in 69 of them and these patients were further studied. Clinical and histopathological features were collected. Clinical phenotype was highly heterogeneous ranging from asymptomatic or paucisymptomatic hyperCKemia to severe muscle weakness and skeletal deformity with loss of ambulation. Sixty-eight RYR1 mutations, generally missense, were identified, of which 16 were novel. The combined analysis of the clinical presentation, disease progression and the structural bioinformatic analyses of RYR1 allowed to associate some phenotypes to mutations in specific domains. In addition, this study highlighted the structural bioinformatics potential in the prediction of the pathogenicity of RYR1 mutations. Further improvement in the comprehension of genotype-phenotype relationship of core myopathies can be expected in the next future: the actual lack of the human RyR1 crystal structure paired with the presence of large intrinsically disordered regions in RyR1, and the frequent presence of more than one RYR1 mutation in core myopathy patients, require designing novel investigation strategies to completely address RyR1 mutation effect.
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