首页> 外文期刊>The American Journal of Human Genetics >Neurologic, gastric, and opthalmologic Pathologies in a murine model of Mucolipidosis type IV
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Neurologic, gastric, and opthalmologic Pathologies in a murine model of Mucolipidosis type IV

机译:IV型粘膜脂肪病鼠模型的神经,胃和眼科病理学

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摘要

Mucolipidosis type IV (MLIV) is an autosomal recessive lysosomal storage disorder caused by mutations in the MCOLN1 gene, which encodes the 65-kDa protein mucolipin-1. The most common clinical features of patients with MLIV include severe mental retardation, delayed motor milestones, ophthalmologic abnormalities, constitutive achlorhydria, and elevated plasma gastrin levels. Here, we describe the first murine model for MLIV, which accurately replicates the phenotype of patients with MLIV. The Mcoln1(-/-) mice present with numerous dense inclusion bodies in all cell types in brain and particularly in neurons, elevated plasma gastrin, vacuolization in parietal cells, and retinal degeneration. Neurobehavioral assessments, including analysis of gait and clasping, confirm the presence of a neurological defect. Gait deficits progress to complete hind-limb paralysis and death at age similar to 8 mo. The Mcoln1(-/-) mice are born in Mendelian ratios, and both male and female Mcoln1(-/-) mice are fertile and can breed to produce progeny. The creation of the first murine model for human MLIV provides an excellent system for elucidating disease pathogenesis. In addition, this model provides an invaluable resource for testing treatment strategies and potential therapies aimed at preventing or ameliorating the abnormal lysosomal storage in this devastating neurological disorder.
机译:IV型粘液脂病(MLIV)是一种常染色体隐性溶酶体贮积病,由MCOLN1基因的突变引起,该基因编码65 kDa蛋白mucolipin-1。 MLIV患者最常见的临床特征包括严重智力低下,运动里程碑延迟,眼科异常,本构性胃酸缺乏和血浆胃泌素水平升高。在这里,我们描述了第一个MLIV的鼠模型,该模型准确地复制了MLIV患者的表型。 Mcoln1(-/-)小鼠在大脑的所有细胞类型中均存在大量致密的包涵体,尤其是在神经元中,血浆胃泌素升高,壁细胞的空泡化和视网膜变性。神经行为评估,包括步态分析和扣紧分析,确认存在神经系统缺陷。步态缺陷进展至完全后肢瘫痪,并在8个月大时死亡。 Mcoln1(-/-)小鼠以孟德尔比例出生,雄性和雌性Mcoln1(-/-)小鼠均能繁殖,并且可以繁殖以产生后代。人类MLIV的第一个鼠模型的创建为阐明疾病的发病机理提供了一个极好的系统。此外,该模型为测试治疗策略和潜在疗法提供了宝贵的资源,这些疗法和潜在疗法旨在预防或改善这种毁灭性神经系统疾病中的溶酶体贮藏异常。

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