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Molecular cloning, gene expression analysis, and in silico characterization of UDP-N-acetylglucosamine pyrophosphorylase from Bombyx mori

机译:来自Bombyx Mori的Molecular Cloning,基因表达分析和UDP-N-乙酰葡糖胺酸化酶的硅表征

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摘要

The present study was aimed to explore the molecular and structural features of UDP-N-acetylglucosamine pyrophosphorylase of Bombyx mori (BmUAP), an essential enzyme for chitin synthesis in insects. The BmUAP cDNA sequence was cloned and expression profiles were monitored during the molting and feeding stages of silkworm larvae. The effect of 20-hydroxyecdysone (20E) on BmUAP expression, and on silkworm molting was studied, which revealed that 20E regulates its expression. Multiple sequence alignment of various pyrophosphorylases revealed that the residues N223, G290, N327, and K407 of human UAP (PDB ID: 1JV1) were found to be highly conserved in BmUAP and all other eukaryotic UAPs considered for the study. Phylogenetic analysis inferred that the UAPs possess discrete variations in primary structure among different insect Orders while sharing good identity between species of the Order. The structure of BmUAP was predicted and its interactions with uridine triphosphate, N-acetylglucosamine-1-phosphate, and UDP-N-acetylglucosamine were analyzed. Virtual screening with a library of natural compounds resulted in five potential hits with good binding affinities. On further analysis, these five hits were found to be mimicking substrate and product, in inducing conformational changes in the active site. This work provides crucial information on molecular interactions and structural dynamics of insect UAPs.
机译:目前的研究旨在探讨昆虫中丁蛋白合成的必需酶的Bombyx Mori(BMuap)的UDP-N-乙酰甘黄胺酸化酶的分子和结构特征。克隆BMuAP cDNA序列,在蚕幼虫的蜕皮和饲喂阶段期间监测表达型材。研究了20-羟基粥样酮(20E)对BMAAP表达和蚕蜕皮的影响,揭示了20E调节其表达。各种焦磷酸化酶的多序列对准表明,人UAP(PDB ID:1JV1)的残基N223,G290,N327和K407被发现在BMAAP中高度保守,并且考虑研究的所有其他真核UP。系统发育分析推断出UAPS在不同昆虫订单之间具有离散变化,同时在订单的物种之间分享良好的身份。分析了BMAAP的结构,分析了其与尿苷三磷酸,N-乙酰葡糖胺-1-磷酸酯和UDP-N-乙酰葡糖胺的相互作用。用天然化合物库的虚拟筛选导致五个潜在的次次击中,具有良好的结合亲和力。在进一步分析中,发现这五次命中率是模拟底物和产品,在诱导活性位点的构象变化中。这项工作提供了关于昆虫的分子相互作用和结构动态的关键信息。

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