首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Hyposialylation of neprilysin possibly affects its expression and enzymatic activity in hereditary inclusion-body myopathy muscle.
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Hyposialylation of neprilysin possibly affects its expression and enzymatic activity in hereditary inclusion-body myopathy muscle.

机译:neprilysin的hypoialylation可能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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摘要

Autosomal recessive hereditary inclusion-body myopathy (h-IBM) is caused by mutations of the UDP-N-acetylglucosamine 2-epimerase/N-acetylmannosamine kinase gene, a rate-limiting enzyme in the sialic acid metabolic pathway. Previous studies have demonstrated an abnormal sialylation of glycoproteins in h-IBM. h-IBM muscle shows the abnormal accumulation of proteins including amyloid-beta (Abeta). Neprilysin (NEP), a metallopeptidase that cleaves Abeta, is characterized by the presence of several N-glycosylation sites, and changes in these sugar moieties affect its stability and enzymatic activity. In the present study, we found that NEP is hyposialylated and its expression and enzymatic activity reduced in all h-IBM muscles analyzed. In vitro, the experimental removal of sialic acid by Vibrio Cholerae neuraminidase in cultured myotubes resulted in reduced expression of NEP. This was most likely because of a post-translational modification consisting in an abnormal sialylation of the protein that leads toits reduced stability. Moreover, treatment with Vibrio Cholerae neuraminidase was associated with an increased immunoreactivity for Abeta mainly in the form of distinct cytoplasmic foci within myotubes. We hypothesize that, in h-IBM muscle, hyposialylated NEP has a role in hampering the cellular Abeta clearing system, thus contributing to its abnormal accumulation within vulnerable fibers and possibly promoting muscle degeneration.
机译:常染色体隐性遗传性包涵体肌病(h-IBM)是由UDP-N-乙酰氨基葡萄糖2-表异构酶/ N-乙酰甘露糖胺激酶基因的突变引起的,该基因是唾液酸代谢途径中的限速酶。先前的研究表明h-IBM中糖蛋白的唾液酸化异常。 h-IBM肌肉显示包括淀粉样蛋白(Abeta)在内的蛋白质异常积累。脑啡肽酶(NEP)是一种切割Abeta的金属肽酶,其特征是存在多个N-糖基化位点,这些糖部分的变化会影响其稳定性和酶促活性。在本研究中,我们发现NEP在所有h-IBM肌肉中均被低唾液酸化,其表达和酶活性降低。在体外,霍乱弧菌神经氨酸酶在培养的肌管中实验性去除唾液酸导致NEP表达降低。这很可能是由于翻译后修饰导致蛋白质的唾液酸化异常导致稳定性降低。此外,霍乱弧菌神经氨酸酶治疗与Abeta的免疫反应性增加有关,主要表现为肌管内明显的细胞质灶。我们假设,在h-IBM肌肉中,低唾液酸化的NEP在阻碍细胞Abeta清除系统中起作用,从而促进其在脆弱纤维内的异常蓄积并可能促进肌肉变性。

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