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Identification of N-linked Glycoproteins in Silkworm Serum Using Con A Lectin Affinity Chromatography and Mass Spectrometry

机译:用CON凝集素亲和色谱法和质谱法鉴定家蚕血清中N-连接的糖蛋白

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摘要

Glycosylation is one of the most common post-translational modifications to occur during protein biosynthesis, but remains poorly understood in insects. In this study, we collected serum proteins from two silkworm developmental stages, namely day 7 of the fifth instar larval stage and day 2 of the pupal stage. Results of SDS–PAGE and periodic acid-Schiff staining revealed that most serum proteins with high abundance were putative glycoproteins. LC-MS/MS identified 149 larval and 303 pupal serum proteins in the Con A lectin-enriched fractions. GO analysis revealed that many serum proteins were involved in the proteolysis and carbohydrate metabolic process. 82 N-linked glycoproteins with at least one glycosylation site were identified. N-Linked glycosylation occurred at the sequon, Asn-X-Ser/Thr, and the proportions of Ser and Thr glycosylation at the hydroxy position were found 39.6% and 60.3%, respectively. The N-glycan structures found in serum glycoproteins were mainly Man2FucGlcNAc2 (67.9%). Since storage protein 1 and transferrin had a relatively high abundance in the serum and could be significantly enriched by Con A lectin, their glycosylation was analyzed in detail. Glycoside hydrases, serine proteases and serpins were found to form three interacting glycoprotein networks using the website STRING. This study provides important clues for the understanding of the function of N-linked glycosylation in metabolism, immunity, and metamorphosis.
机译:糖基化是在蛋白质生物合成期间发生最常见的翻译后修饰之一,但在昆虫中仍然仍然清楚地理解。在这项研究中,我们从两种蚕发育阶段收集了血清蛋白,即第五龄幼虫阶段的第7天和蛹阶段的第2天。 SDS-PAGE和周期性酸 - 席石夫染色的结果显示,大多数具有高丰度的血清蛋白是推定糖蛋白。 LC-MS / MS鉴定在富合素富集的级分中的149个幼虫和303蛹血清蛋白。 GO分析显示,许多血清蛋白涉及蛋白水解和碳水化合物代谢过程。鉴定了82个与至少一个糖基化位点的N-连接的糖蛋白。在Sequot,Asn-X-Ser / Thr处发生N-连接的糖基化,羟基位置的Ser和Thr糖基化的比例分别发现39.6%和60.3%。在血清糖蛋白中发现的N-聚糖结构主要是MAN2FUCGLCNAC2(67.9%)。由于储存蛋白1和转铁蛋白在血清中具有相对高的丰度,并且可以通过凝集素显着富集它们,其细节分析它们的糖基化。发现糖苷水合物,丝氨酸蛋白酶和蛇素形成三个相互作用的糖蛋白网络,使用该网站字符串。本研究提供了理解N与代谢,免疫和变态中N-连接糖基化功能的重要线索。

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