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Molecular cloning and biochemical characterization of sialidases from zebrafish (Danio rerio)

机译:斑马鱼唾液酸酶(Danio rerio)的分子克隆和生化特性

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摘要

Sialidases remove sialic acid residues from various sialo-derivatives. To gain further insights into the biological roles of sialidases in vertebrates, we exploited zebrafish (Danio rerio) as an animal model. A zebrafish transcriptome- and genome-wide search using the sequences of the human NEU polypeptides as templates revealed the presence of seven different genes related to human sialidases. neu1 and neu4 are the putative orthologues of the mammalian sialidases NEU1 and NEU4 respectively. Interestingly, the remaining genes are organized in clusters located on chromosome 21 and are all more closely related to mammalian sialidase NEU3. They were thus named neu3.1, neu3.2, neu3.3, neu3.4 and neu3.5. Using RT–PCR (reverse transcription–PCR) we detected transcripts for all genes, apart from neu3.4, and whole-mount in situ hybridization experiments show a localized expression pattern in gut and lens for neu3.1 and neu4 respectively. Transfection experiments in COS7 (monkey kidney) cells demonstrate that Neu3.1, Neu3.2, Neu3.3 and Neu4 zebrafish proteins are sialidase enzymes. Neu3.1, Neu3.3 and Neu4 are membrane-associated and show a very acidic pH optimum below 3.0, whereas Neu3.2 is a soluble sialidase with a pH optimum of 5.6. These results were further confirmed by subcellular localization studies carried out using immunofluorescence. Moreover, expression in COS7 cells of these novel zebrafish sialidases (with the exception of Neu3.2) induces a significant modification of the ganglioside pattern, consistent with the results obtained with membrane-associated mammalian sialidases. Overall, the redundancy of sialidases together with their expression profile and their activity exerted on gangliosides of living cells indicate the biological relevance of this class of enzymes in zebrafish.
机译:唾液酸酶从各种唾液酸衍生物中除去唾液酸残基。为了进一步了解唾液酸酶在脊椎动物中的生物学作用,我们利用斑马鱼(Danio rerio)作为动物模型。斑马鱼转录组和全基因组搜索使用人类NEU多肽的序列作为模板,发现存在与人类唾液酸酶相关的七个不同基因。 neu1和neu4分别是哺乳动物唾液酸酶NEU1和NEU4的假定直向同源物。有趣的是,其余的基因组织在21号染色体上的簇中,并且与哺乳动物唾液酸酶NEU3的关系更加密切。因此,它们被命名为neu3.1,neu3.2,neu3.3,neu3.4和neu3.5。使用RT-PCR(逆转录-PCR),我们检测到了除neu3.4之外所有基因的转录本,整装原位杂交实验分别显示了neu3.1和neu4在肠道和晶状体中的局部表达模式。在COS7(猴肾)细胞中进行转染实验表明,Neu3.1,Neu3.2,Neu3.3和Neu4斑马鱼蛋白是唾液酸酶。 Neu3.1,Neu3.3和Neu4与膜相关,在pH低于3.0时显示非常酸性的最适pH,而Neu3.2是pH值为5.6的可溶性唾液酸酶。通过使用免疫荧光进行的亚细胞定位研究进一步证实了这些结果。此外,这些新型斑马鱼唾液酸酶(除了Neu3.2)在COS7细胞中的表达诱导了神经节苷脂模式的显着修饰,这与膜相关的哺乳动物唾液酸酶获得的结果一致。总的来说,唾液酸酶的冗余以及它们的表达谱和在活细胞神经节苷脂上的活性表明了这类酶在斑马鱼中的生物学相关性。

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