Hulen Jason, Kenny Dorothy, Black Rebecca, Hallgren Jodi, Hammond Kelley G, Bredahl Eric C, Wickramasekara Rochelle N, Abel Peter W, Stessman Holly A F
Department of Pharmacology and Neuroscience, School of Medicine, Creighton University, Omaha, NE, United States.
Department of Exercise Science, College of Arts and Sciences, Creighton University, Omaha, NE, United States.
Front Genet. 2022 Aug 12;13:901228. doi: 10.3389/fgene.2022.901228. eCollection 2022.
Disruptive variants in lysine methyl transferase 5B (KMT5B/SUV4-20H1) have been identified as likely-pathogenic among humans with neurodevelopmental phenotypes including motor deficits (i.e., hypotonia and motor delay). However, the role that this enzyme plays in early motor development is largely unknown. Using a gene trap mouse model, we assessed neuromuscular strength, skeletal muscle weight (i.e., muscle mass), neuromuscular junction (NMJ) structure, and myofiber type, size, and distribution. Tests were performed over developmental time (postnatal days 17 and 44) to represent postnatal versus adult structures in slow- and fast-twitch muscle types. Prior to the onset of puberty, slow-twitch muscle weight was significantly reduced in heterozygous compared to wild-type males but not females. At the young adult stage, we identified decreased neuromuscular strength, decreased skeletal muscle weights (both slow- and fast-twitch), increased NMJ fragmentation (in slow-twitch muscle), and smaller myofibers in both sexes. We conclude that haploinsufficiency results in a skeletal muscle developmental deficit causing reduced muscle mass and body weight.
赖氨酸甲基转移酶5B(KMT5B/SUV4-20H1)的破坏性变异已被确定为在具有神经发育表型(包括运动缺陷,即肌张力减退和运动迟缓)的人类中可能致病。然而,这种酶在早期运动发育中所起的作用在很大程度上尚不清楚。我们使用基因陷阱小鼠模型,评估了神经肌肉力量、骨骼肌重量(即肌肉质量)、神经肌肉接头(NMJ)结构以及肌纤维类型、大小和分布。在发育过程中(出生后第17天和第44天)进行测试,以代表慢肌和快肌类型中出生后与成年后的结构。在青春期开始之前,与野生型雄性相比,杂合子雄性的慢肌重量显著降低,但雌性没有。在年轻成年阶段,我们发现两性的神经肌肉力量下降、骨骼肌重量(慢肌和快肌)下降、NMJ碎片化增加(在慢肌中)以及肌纤维变小。我们得出结论,单倍剂量不足会导致骨骼肌发育缺陷,从而导致肌肉质量和体重下降。