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首页> 外文期刊>The Biochemical Journal >Towards abolition of immunogenic structures in insect cells: characterization of a honey-bee (Apis mellifera) multi-gene family reveals both an allergy-related core alpha1,3-fucosyltransferase and the first insect Lewis-histo-blood-group-related anti
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Towards abolition of immunogenic structures in insect cells: characterization of a honey-bee (Apis mellifera) multi-gene family reveals both an allergy-related core alpha1,3-fucosyltransferase and the first insect Lewis-histo-blood-group-related anti

机译:致力于消除昆虫细胞中的免疫原性结构:蜜蜂(Apis mellifera)多基因家族的特征揭示了与过敏相关的核心α1,3-岩藻糖基转移酶和第一个与昆虫路易斯-组织-血型相关的抗

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摘要

Glycoproteins from honey-bee (Apis mellifera), such as phospholipase A2 and hyaluronidase, are well-known major bee-venom allergens. They carry N-linked oligosaccharide structures with two types of alpha1,3-fucosylation: the modification by alpha1,3-fucose of the innermost core GlcNAc, which constitutes an epitope recognized by IgE from some bee-venom-allergic patients, and an antennal Lewis-like GalNAcbeta1,4(Fucalpha1,3)GlcNAc moiety. We now report the cloning and expression of two cDNAs encoding the relevant active alpha1,3-FucTs (alpha1,3-fucosyltransferases). The first sequence, closest to that of fruitfly (Drosophila melanogaster) FucTA, was found to be a core alpha1,3-FucT (EC 2.4.1.214), as judged by several enzyme and biochemical assays. The second cDNA encoded an enzyme, most related to Drosophila FucTC, that was shown to be capable of generating the Le(x) [Galbeta1-4(Fucalpha1-3)GlcNAc] epitope in vitro and is the first Lewis-type alpha1,3-FucT (EC 2.4.1.152) to be described in insects. The transcription levels of these two genes in various tissues were examined: FucTA was found to be predominantly expressed in the brain tissue and venom glands, whereas FucTC transcripts were detected at highest levels in venom and hypopharyngeal glands. Very low expression of a third homologue of unknown function, FucTB, was also observed in various tissues. The characterization of these honey-bee gene products not only accounts for the observed alpha1,3-fucosylation of bee-venom glycoproteins, but is expected to aid the identification and subsequent down-regulation of the FucTs in insect cell lines of biotechnological importance.
机译:蜜蜂(Apis mellifera)的糖蛋白,例如磷脂酶A2和透明质酸酶,是众所周知的主要蜂毒过敏原。它们带有N-连接的寡糖结构,具有两种类型的α1,3-岩藻糖基化:最内层核心GlcNAc的α1,3-岩藻糖基修饰,该结构构成了IgE从一些蜂毒-过敏患者中识别出的表位,以及触角刘易斯样GalNAcbeta1,4(Fucalpha1,3)GlcNAc部分。现在,我们报告两个编码相关活性α1,3-FucTs(α1,3-岩藻糖基转移酶)的cDNA的克隆和表达。根据几种酶和生化分析,发现最接近果蝇(果蝇)FucTA的第一个序列是核心α1,3-FucT(EC 2.4.1.214)。第二个cDNA编码一种酶,与果蝇FucTC最相关,该酶显示能够在体外产生Le(x)[Galbeta1-4(Fucalpha1-3)GlcNAc]表位,并且是第一个Lewis型alpha1,3。 -FucT(EC 2.4.1.152)在昆虫中有描述。检查了这两个基因在各种组织中的转录水平:发现FucTA主要在脑组织和毒腺中表达,而在毒液和下咽腺中检测到的FucTC转录水平最高。在各种组织中也观察到未知功能的第三种同源物FucTB的极低表达。这些蜜蜂基因产物的表征不仅解释了蜂毒糖蛋白的α1,3-岩藻糖基化,而且有望有助于鉴定和随后下调具有生物技术重要性的昆虫细胞系中的FucTs。

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