肌营养不良
肌营养不良聚糖
病理
先天性肌营养不良
肌肉无力
生物
神经退行性变
肌营养不良蛋白
萎缩
神经科学
医学
解剖
疾病
遗传学
层粘连蛋白
细胞
作者
Pinki Munot,Nadine McCrea,Silvia Torelli,Adnan Manzur,Caroline A. Sewry,D. Chambers,Lucy Feng,Pierpaolo Ala,Irina Zaharieva,Nicola Ragge,Helen Roper,Tamás Marton,P. Cox,Miroslav Milev,Michael Sacher,Wen‐Chen Liang,Shinsuke Maruyama,Ichizo Nishino,Rahul Phadke,Francesco Muntoni
出处
期刊:Research Square - Research Square
日期:2020-10-12
被引量:1
标识
DOI:10.21203/rs.3.rs-31937/v2
摘要
Abstract Background: TRAPPC11, a subunit of the transport protein particle (TRAPP) complex is important for complex integrity and anterograde membrane transport from the endoplasmic reticulum (ER) to the ER-Golgi intermediate compartment. Several individuals with TRAPPC11 mutations have been reported with muscle weakness and other features including brain, liver, skeletal and eye involvement. A detailed analysis of brain and muscle biopsies will further our understanding of the presentation and etiology of TRAPPC11 -disease. Methods: We describe five cases of early-onset TRAPPC11 –related muscular dystrophy with a systematic review of muscle pathology in all five individuals, post-mortem brain pathology findings in one individual, and membrane trafficking assays in another. Results: All affected individuals presented in infancy with muscle weakness, motor delay and elevated serum creatine kinase (CK). Additional features included cataracts, liver disease, intellectual disability, cardiomyopathy, movement disorder, and structural brain abnormalities. Muscle pathology in all five revealed dystrophic changes, universal hypoglycosylation of alpha-dystroglycan and variably reduced dystrophin-associated complex proteins. Membrane trafficking assays showed defective Golgi trafficking in one individual. Neuropathological examination of one individual revealed cerebellar atrophy, granule cell hypoplasia, Purkinje cell (PC) loss and dendritic neurodegeneration, reduced alpha-dystroglycan (IIH6) expression in PC and dentate neurons, and absence of neuronal migration defects. Conclusions: This report suggests that recessive mutations in TRAPPC11 are linked to muscular dystrophies with hypoglycosylation of alpha-dystroglycan. The structural brain involvement that we document for the first time resembles the pathology previously reported in N-linked congenital disorders of glycosylation (CDG) such as PMM2 -CDG, suggesting defects in multiple glycosylation pathways in this condition.
科研通智能强力驱动
Strongly Powered by AbleSci AI