Kbtbd13 knockdown restores muscle function in a clinically relevant mouse model of nemaline myopathy type 6

基因敲除 丝状体肌病 发病机制 心肌细胞 肌病 疾病 生物 医学 肌动蛋白 细胞生物学 骨骼肌 病理 肌肉放松 肌肉无力 肌节 肌肉疾病 癌症研究 细胞 内科学 肌肉组织 内分泌学 神经肌肉疾病 功能(生物学) 肌肉疾病 免疫学
作者
R. Galli,Leander A. Vonk,R. Baelde,Anita van den Heuvel,Sylvia J. P. Bogaards,Stefan Conijn,Emma Siteur,Olga Alekhina,Henk Granzier,Thomas C. Irving,Weikang Ma,Karlijn Bouman,Baziel G.M. van Engelen,Silvère M. van der Maarel,Tyler J. Kirby,Nicol C. Voermans,Josine M. de Winter,Coen A. C. Ottenheijm
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:18 (855): eadx2116-eadx2116
标识
DOI:10.1126/scitranslmed.adx2116
摘要

Nemaline myopathy type 6 (NEM6) is a rare neuromuscular disorder caused by pathogenic variants in the Kelch repeat and BTB domain–containing 13 ( KBTBD13 ) gene. Patients experience muscle weakness, excessive fatigue, and impaired muscle relaxation that affect their daily activities related to abnormal protein aggregation in muscle cells and a predominance of slow-twitch myofibers, and no specific therapies are available. Here, we studied a clinically relevant Kbtbd13 :p.Arg408Cys knockin mouse model to elucidate the molecular changes driving disease pathogenesis through measurements of muscle contractility, single myofiber assays, super-resolution microscopy, and x-ray diffraction. Kbtbd13 :p.Arg408Cys knockin mice closely phenocopied human NEM6 pathology at the morphological, functional, and transcriptional levels, with the p.Arg408Cys variant causing mislocalization of KBTBD13 in the muscle sarcomere, associated with disease onset between 1 and 3 months of age, plateauing by 9 months, and with little progression at 18 months. As a potential therapeutic approach, we knocked down Kbtbd13 using short hairpin RNA against Kbtbd13 delivered intramuscularly via an adeno-associated virus 9 vector at either the prephenotype (1-month-old) or peak-phenotype (3- or 7-month-old) stages. A single treatment at the prephenotype stage prevented the development of impaired relaxation kinetics, nemaline rod aggregation, and slow-twitch myofiber predominance at 3 months of age. A single treatment at 3 months of age, after onset of disease, restored muscle morphology, contractility, and muscle-relaxation kinetics over 6 months. These data provide insights into NEM6 pathogenesis and suggest that Kbtbd13 knockdown might be a promising therapeutic strategy for patients with NEM6.
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