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首页> 外文期刊>Fish Physiology and Biochemistry >Molecular cloning and biochemical characterization of medaka (Oryzias latipes) lysosomal neu4 sialidase
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Molecular cloning and biochemical characterization of medaka (Oryzias latipes) lysosomal neu4 sialidase

机译:花aka溶酶体neu4唾液酸酶的分子克隆和生化特性

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Glycoconjugates are known to be involved in many physiological events in vertebrates. Sialidase is one of the glycosidases, which removes sialic acid from glycoconjugates. In mammals, the properties and physiological functions of sialidases have been investigated, while there is little understanding of fish sialidase. Here, to investigate the significance of fish neu4 sialidase, neu4 gene was cloned from medaka brain mRNA and identified. Sialidase-specific motifs (GPG, YRVP and Asp-Box) were well conserved in the medaka neu4 polypeptide. Optimal pH of medaka neu4 sialidase was 4.6, but its activity was sustained even at neutral and weak alkaline pH. The neu4 considerably cleaved sialic acid from 4-methylumbelliferyl-N-acetyl-alpha-d-neuraminic acid and sialyllactose, but not from ganglioside and fetuin, which are good substrates for human NEU4. neu4 activity was mostly detected in mitochondria/lysosome fraction after biochemical fractionation, and indirect immunofluorescence assays revealed neu4 localization in lysosome in neu4 overexpressed cells. Next, developmental change in medaka neu4 and other sialidase mRNA levels were estimated by real-time PCR. Each sialidases showed different expression patterns in embryonic development: neu4 was up-regulated at late developmental stage in embryo, and neu3a mRNA level was quite high in 0.5 dpf. On the other hand, neu3b expression was drastically increased after hatching, suggesting that each sialidase may play a different role in embryonic development.
机译:已知糖缀合物参与脊椎动物中的许多生理事件。唾液酸酶是糖苷酶之一,其从糖缀合物中除去唾液酸。在哺乳动物中,已经对唾液酸酶的性质和生理功能进行了研究,但对鱼类唾液酸酶的了解却很少。在这里,为了研究鱼类neu4唾液酸酶的重要性,从青aka脑mRNA中克隆并鉴定了neu4基因。唾液酸酶特异性基序(GPG,YRVP和Asp-Box)在medaka neu4多肽中保存良好。 medaka neu4唾液酸酶的最佳pH为4.6,但即使在弱碱性和弱pH条件下,其活性也得以维持。 neu4可以从4-甲基伞形基-N-乙酰基-α-d-神经氨酸和唾液乳糖中大量裂解唾液酸,但不能从神经节苷脂和胎球蛋白中裂解,它们是人NEU4的良好底物。 neu4活性主要是在生化分级分离后的线粒体/溶酶体级分中检测到的,间接免疫荧光分析显示neu4在neu4过表达的细胞中在溶酶体中定位。接下来,通过实时PCR估算了medaka neu4和其他唾液酸酶mRNA水平的发育变化。每种唾液酸酶在胚胎发育中均表现出不同的表达方式:neu4在胚胎发育的后期被上调,neu3a mRNA的水平在0.5 dpf时很高。另一方面,孵化后neu3b表达急剧增加,这表明每种唾液酸酶可能在胚胎发育中发挥不同的作用。

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