Cesar Sergi, Coll Monica, Fiol Victoria, Fernandez-Falgueras Anna, Cruzalegui Jose, Iglesias Anna, Moll Isaac, Perez-Serra Alexandra, Martínez-Barrios Estefanía, Ferrer-Costa Carles, Del Olmo Bernat, Puigmulè Marta, Alcalde Mireia, Lopez Laura, Pico Ferran, Berrueco Rubén, Brugada Josep, Zschaeck Irene, Natera-de Benito Daniel, Carrera-García Laura, Exposito-Escudero Jessica, Ortez Carlos, Nascimento Andrés, Brugada Ramon, Sarquella-Brugada Georgia, Campuzano Oscar
Pediatric Arrhythmias, Inherited Cardiac Diseases and Sudden Death Unit, Hospital Sant Joan de Déu, Barcelona, Spain.
Arrítmies pediàtriques, Cardiologia Genètica i Mort sobtada, Malalties Cardiovasculars en el Desenvolupament, Institut de Recerca Sant Joan de Déu, Esplugues de Llobregat, Barcelona, Spain.
Front Genet. 2023 Mar 24;14:1135438. doi: 10.3389/fgene.2023.1135438. eCollection 2023.
Laminopathies are caused by rare alterations in , leading to a wide clinical spectrum. Though muscular dystrophy begins at early ages, disease progression is different in each patient. We investigated variability in laminopathy phenotypes by performing a targeted genetic analysis of patients diagnosed with -related muscular dystrophy to identify rare variants in alternative genes, thereby explaining phenotypic differences. We analyzed 105 genes associated with muscular diseases by targeted sequencing in 26 pediatric patients of different countries, diagnosed with any -related muscular dystrophy. Family members were also clinically assessed and genetically analyzed. All patients carried a pathogenic rare variant in . Clinical diagnoses included Emery-Dreifuss muscular dystrophy (EDMD, 13 patients), -related congenital muscular dystrophy (L-CMD, 11 patients), and limb-girdle muscular dystrophy 1B (LGMD1B, 2 patients). In 9 patients, 10 additional rare genetic variants were identified in 8 genes other than . Genotype-phenotype correlation showed additional deleterious rare variants in five of the nine patients (3 L-CMD and 2 EDMD) with severe phenotypes. Analysis f known genes related to muscular diseases in close correlation with personalized clinical assessments may help identify additional rare variants of potentially associated with early onset or most severe disease progression.
核纤层蛋白病由[具体基因]的罕见变异引起,导致广泛的临床谱。尽管肌肉营养不良在早年就开始,但每位患者的疾病进展各不相同。我们通过对诊断为[相关疾病]相关肌肉营养不良的患者进行靶向基因分析,以确定替代基因中的罕见变异,从而解释表型差异,来研究核纤层蛋白病表型的变异性。我们对来自不同国家的26名诊断为任何[相关疾病]相关肌肉营养不良的儿科患者进行靶向测序,分析了105个与肌肉疾病相关的基因。对家庭成员也进行了临床评估和基因分析。所有患者在[具体基因]中都携带致病性罕见变异。临床诊断包括埃默里-德赖富斯肌营养不良(EDMD,13例患者)、[相关疾病]相关先天性肌营养不良(L-CMD,11例患者)和肢带型肌营养不良1B(LGMD1B,2例患者)。在9例患者中,在除[具体基因]之外的8个基因中鉴定出另外10个罕见遗传变异。基因型-表型相关性显示,在9例具有严重表型的患者(3例L-CMD和2例EDMD)中有5例存在额外的有害罕见变异。对与肌肉疾病密切相关的已知基因进行分析,并与个性化临床评估紧密结合,可能有助于识别与早发或最严重疾病进展潜在相关的[具体基因]的其他罕见变异。