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过乙酰化 N-乙酰氨基葡萄糖,一种合成糖分子,能有效挽救唾液酸缺乏型肌病小鼠模型的肌肉表型和生化缺陷。

Peracetylated N-acetylmannosamine, a synthetic sugar molecule, efficiently rescues muscle phenotype and biochemical defects in mouse model of sialic acid-deficient myopathy.

机构信息

Department of Neuromuscular Research, National Institute of Neuroscience, National Center of Neurology and Psychiatry, Tokyo 187-8502, Japan.

出版信息

J Biol Chem. 2012 Jan 20;287(4):2689-705. doi: 10.1074/jbc.M111.297051. Epub 2011 Dec 8.

DOI:10.1074/jbc.M111.297051
PMID:22157763
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3268427/
Abstract

Distal myopathy with rimmed vacuoles/hereditary inclusion body myopathy (DMRV/hIBM), characterized by progressive muscle atrophy, weakness, and degeneration, is due to mutations in GNE, a gene encoding a bifunctional enzyme critical in sialic acid biosynthesis. In the DMRV/hIBM mouse model, which exhibits hyposialylation in various tissues in addition to muscle atrophy, weakness, and degeneration, we recently have demonstrated that the myopathic phenotype was prevented by oral administration of N-acetylneuraminic acid, N-acetylmannosamine, and sialyllactose, underscoring the crucial role of hyposialylation in the disease pathomechanism. The choice for the preferred molecule, however, was limited probably by the complex pharmacokinetics of sialic acids and the lack of biomarkers that could clearly show dose response. To address these issues, we screened several synthetic sugar compounds that could increase sialylation more remarkably and allow demonstration of measurable effects in the DMRV/hIBM mice. In this study, we found that tetra-O-acetylated N-acetylmannosamine increased cell sialylation most efficiently, and in vivo evaluation in DMRV/hIBM mice revealed a more dramatic, measurable effect and improvement in muscle phenotype, enabling us to establish analysis of protein biomarkers that can be used for assessing response to treatment. Our results provide a proof of concept in sialic acid-related molecular therapy with synthetic monosaccharides.

摘要

远端肌病伴镶边空泡/遗传性包涵体肌病(DMRV/hIBM),其特征是进行性肌肉萎缩、无力和退化,是由于 GNE 基因突变引起的,该基因编码在唾液酸生物合成中起关键作用的双功能酶。在 DMRV/hIBM 小鼠模型中,除了肌肉萎缩、无力和退化外,各种组织还表现出低唾液酸化,我们最近证明,通过口服 N-乙酰神经氨酸、N-乙酰甘露糖胺和唾液乳糖,可以预防肌病表型,这突显了低唾液酸化在疾病发病机制中的关键作用。然而,由于唾液酸的复杂药代动力学和缺乏能够清楚显示剂量反应的生物标志物,因此首选分子的选择可能受到限制。为了解决这些问题,我们筛选了几种可以更显著增加唾液酸化的合成糖化合物,并在 DMRV/hIBM 小鼠中证明了可测量的效果。在这项研究中,我们发现四-O-乙酰化 N-乙酰甘露糖胺最有效地增加了细胞的唾液酸化,并且在 DMRV/hIBM 小鼠中的体内评估显示出更显著、可测量的效果和肌肉表型的改善,使我们能够建立可用于评估治疗反应的蛋白质生物标志物分析。我们的结果为使用合成单糖进行唾液酸相关的分子治疗提供了概念验证。

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Peracetylated N-acetylmannosamine, a synthetic sugar molecule, efficiently rescues muscle phenotype and biochemical defects in mouse model of sialic acid-deficient myopathy.过乙酰化 N-乙酰氨基葡萄糖,一种合成糖分子,能有效挽救唾液酸缺乏型肌病小鼠模型的肌肉表型和生化缺陷。
J Biol Chem. 2012 Jan 20;287(4):2689-705. doi: 10.1074/jbc.M111.297051. Epub 2011 Dec 8.
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Prophylactic treatment with sialic acid metabolites precludes the development of the myopathic phenotype in the DMRV-hIBM mouse model.用唾液酸代谢物进行预防性治疗可防止DMRV-hIBM小鼠模型中肌病表型的发展。
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Expression of neprilysin in skeletal muscle reduces amyloid burden in a transgenic mouse model of Alzheimer disease.中性内肽酶在骨骼肌中的表达可减轻阿尔茨海默病转基因小鼠模型中的淀粉样蛋白负担。
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Prophylactic treatment with sialic acid metabolites precludes the development of the myopathic phenotype in the DMRV-hIBM mouse model.用唾液酸代谢物进行预防性治疗可防止DMRV-hIBM小鼠模型中肌病表型的发展。
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Hyposialylation of neprilysin possibly affects its expression and enzymatic activity in hereditary inclusion-body myopathy muscle.中性内肽酶的低唾液酸化可能会影响其在遗传性包涵体肌病肌肉中的表达和酶活性。
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A Gne knockout mouse expressing human GNE D176V mutation develops features similar to distal myopathy with rimmed vacuoles or hereditary inclusion body myopathy.表达人类GNE D176V突变的Gne基因敲除小鼠出现与边缘空泡性远端肌病或遗传性包涵体肌病相似的特征。
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Diversity in cell surface sialic acid presentations: implications for biology and disease.细胞表面唾液酸呈现的多样性:对生物学和疾病的影响。
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Mutation in the key enzyme of sialic acid biosynthesis causes severe glomerular proteinuria and is rescued by N-acetylmannosamine.唾液酸生物合成关键酶的突变导致严重的肾小球蛋白尿,而N-乙酰甘露糖胺可挽救该症状。
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Engineering the sialic acid in organs of mice using N-propanoylmannosamine.使用N-丙酰甘露糖胺对小鼠器官中的唾液酸进行工程改造。
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Roles for UDP-GlcNAc 2-epimerase/ManNAc 6-kinase outside of sialic acid biosynthesis: modulation of sialyltransferase and BiP expression, GM3 and GD3 biosynthesis, proliferation, and apoptosis, and ERK1/2 phosphorylation.UDP-N-乙酰葡糖胺2-差向异构酶/甘露糖胺6-激酶在唾液酸生物合成之外的作用:对唾液酸转移酶和结合免疫球蛋白蛋白表达的调节、GM3和GD3生物合成、增殖和凋亡以及ERK1/2磷酸化。
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