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Metabolic Labeling of Caenorhabditis elegans Primary Embryonic Cells with Azido-Sugars as a Tool for Glycoprotein Discovery

机译:秀丽隐杆线虫的代谢标记线虫原代胚胎细胞具有叠氮基的糖作为工具糖蛋白愉

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摘要

Glycobiology research with Caenorhabditis elegans (C. elegans) has benefitted from the numerous genetic and cell biology tools available in this system. However, the lack of a cell line and the relative inaccessibility of C. elegans somatic cells in vivo have limited the biochemical approaches available in this model. Here we report that C. elegans primary embryonic cells in culture incorporate azido-sugar analogs of N-acetylgalactosamine (GalNAc) and N-acetylglucosamine (GlcNAc), and that the labeled glycoproteins can be analyzed by mass spectrometry. By using this metabolic labeling approach, we have identified a set of novel C. elegans glycoprotein candidates, which include several mitochondrially-annotated proteins. This observation was unexpected given that mitochondrial glycoproteins have only rarely been reported, and it suggests that glycosylation of mitochondrially-annotated proteins might occur more frequently than previously thought. Using independent experimental strategies, we validated a subset of our glycoprotein candidates. These include a mitochondrial, atypical glycoprotein (ATP synthase α-subunit), a predicted glycoprotein (aspartyl protease, ASP-4), and a protein family with established glycosylation in other species (actin). Additionally, we observed a glycosylated isoform of ATP synthase α-subunit in bovine heart tissue and a primate cell line (COS-7). Overall, our finding that C. elegans primary embryonic cells are amenable to metabolic labeling demonstrates that biochemical studies in C. elegans are feasible, which opens the door to labeling C. elegans cells with other radioactive or azido-substrates and should enable the identification of additional post-translationally modified targets and analysis of the genes required for their modification using C. elegans mutant libraries.
机译:秀丽隐杆线虫的秀丽生物学研究得益于该系统中可用的众多遗传和细胞生物学工具。但是,缺乏细胞系和秀丽隐杆线虫体细胞在体内的相对不可及性限制了该模型中可用的生化方法。在这里,我们报告的线虫原代胚胎细胞在培养物中结合了N-乙酰半乳糖胺(GalNAc)和N-乙酰氨基葡萄糖(GlcNAc)的叠氮糖类似物,并且标记的糖蛋白可以通过质谱分析。通过使用这种代谢标记方法,我们已经鉴定出一组新的秀丽隐杆线虫糖蛋白候选物,其中包括几种线粒体注释的蛋白。考虑到线粒体糖蛋白的报道很少,因此这一发现是出乎意料的,它表明线粒体注释蛋白的糖基化可能比以前认为的更为频繁。使用独立的实验策略,我们验证了候选糖蛋白的一个子集。这些包括线粒体,非典型糖蛋白(ATP合酶α亚基),预测的糖蛋白(天冬氨酰蛋白酶,ASP-4)以及在其他物种中具有确定的糖基化的蛋白家族(肌动蛋白)。此外,我们在牛心脏组织和灵长类细胞系(COS-7)中观察到ATP合酶α亚基的糖基化亚型。总的来说,我们发现秀丽隐杆线虫原代胚胎细胞适合代谢标记,这表明秀丽隐杆线虫的生化研究是可行的,这为用其他放射性或叠氮底物标记秀丽隐杆线虫的细胞打开了大门,并且应该能够鉴定其他翻译后修饰的靶标和使用秀丽隐杆线虫突变体文库对其修饰所需的基因进行分析。

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