首页> 外文期刊>Journal of proteome research >Similar Albeit Not the Same: In-Depth Analysis of Proteoforms of Human Serum, Bovine Serum, and Recombinant Human Fetuin
【24h】

Similar Albeit Not the Same: In-Depth Analysis of Proteoforms of Human Serum, Bovine Serum, and Recombinant Human Fetuin

机译:相似尽管不一样:深入分析人血清,牛血清和重组人胎素的蛋白质ort

获取原文
获取原文并翻译 | 示例
       

摘要

Fetuin, also known as alpha-2-Heremans Schmid glycoprotein (AHSG), belongs to some of the most abundant glycoproteins secreted into the bloodstream. In blood, fetuins exhibit functions as carriers of metals and small molecules. Bovine fetuin, which harbors 3 N-glycosylation sites and a suggested half dozen O-glycosylation sites, has been used often as a model glycoprotein to test novel analytical workflows in glycoproteomics. Here we characterize and compare fetuin in depth, using protein from three different biological sources: human serum, bovine serum, and recombinant human fetuin expressed in HEK-293 cells, with the aim to elucidate similarities and differences between these proteins and the post-translational modifications they harbor. Combining data from high-resolution native mass spectrometry and glycopeptide centric LC-MS analysis, we qualitatively and quantitatively gather information on fetuin protein maturation, N-glycosylation, O-glycosylation, and phosphorylation. We provide direct experimental evidence that both the human serum and part of the recombinant proteins are processed into two chains (A and B) connected by a single interchain disulfide bridge, whereas bovine fetuin remains a single-chain protein. Although two N-glycosylation sites, one O-glycosylation site, and a phosphorylation site are conserved from bovine to human, the stoichiometry of the modifications and the specific glycoforms they harbor are quite distinct. Comparing serum and recombinant human fetuin, we observe that the serum protein harbors a much simpler proteoform profile, indicating that the recombinant protein is not ideally engineered to mimic human serum fetuin. Comparing the proteoform profile and post-translational modifications of human and bovine serum fetuin, we observe that, although the gene structures of these two proteins are alike, they represent quite distinct proteins when their glycoproteoform profile is also taken into consideration.
机译:芬芳,也称为α-2-盐脑血苷糖蛋白(AHSG),属于一些最丰富的糖蛋白分泌到血液中。在血液中,蕨类植物表现出作为金属和小分子的载体的功能。牛胎儿,其中留下3个n-糖基化位点和建议的半糖糖基化位点已被用作糖蛋白的模型糖蛋白,以测试糖蛋白质中的新型分析工作流程。在这里,我们在HEK-293细胞中使用来自三种不同的生物来源的蛋白质,使用来自三种不同的生物学来源的蛋白质,使用蛋白质,使用蛋白质,旨在阐明这些蛋白质和翻译后的相似性和差异的蛋白质,使用蛋白质他们港口的修改。将数据组合从高分辨率本地质谱和糖肽中心LC-MS分析,我们定性地和定量地收集关于胎蛋白成熟,N-糖基化,O-糖基化和磷酸化的信息。我们提供直接的实验证据,即人血清和重组蛋白的一部分被加工成通过单个连续二硫化物桥连接的两条链(A和B),而牛Fetuin仍然是单链蛋白质。虽然两个N-糖基化位点,一个O-糖基化位点和磷酸化部位从牛到人,修饰的化学计量和它们港口的特定糖果实是完全不同的。比较血清和重组人胎素,观察到血清蛋白质遗骸更简单的植物谱,表明重组蛋白理想地设计成模仿人血清胎素。比较蛋白质形式曲线和翻译后的人和牛血清蕨类植物的翻译修饰,但观察到这两种蛋白质的基因结构是相似的,但是当考虑到它们的糖蛋白质谱时,它们代表了相当明显的蛋白质。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号