Lowenthal Mark S, Davis Kiersta S, Formolo Trina, Kilpatrick Lisa E, Phinney Karen W
Material Measurement Laboratory, Biomolecular Measurement Division, National Institute of Standards and Technology , 100 Bureau Drive, Stop 8314, Gaithersburg, Maryland 20899, United States.
J Proteome Res. 2016 Jul 1;15(7):2087-101. doi: 10.1021/acs.jproteome.5b00733. Epub 2016 Jun 14.
N-glycosylation of proteins is well known to occur at asparagine residues that fall within the canonical consensus sequence N-X-S/T but has also been identified at a small number of asparagine residues within N-X-C motifs, including the N491 residue of human serotransferrin. Here we report novel glycosylation sites within noncanonical consensus motifs, in the conformation N-X-C, based on mass spectrometry analysis of partially deglycosylated glycopeptide targets. Alpha-1-acid glycoprotein (A1AG) and serotransferrin (Tf) were observed for the first time to be N-glycosylated on asparagine residues within a total of six unique noncanonical motifs. N-glycosylation was initially predicted in silico based on the evolutionary conservation of the N-X-C motif among related mammalian species and demonstrated experimentally in A1AG from porcine, canine, and feline sources and in human serotransferrin. High-resolution liquid chromatography-tandem mass spectrometry was employed to collect fragmentation data of predicted GlcNAcylated peptides and to assign modification sites within N-X-C motifs. A combination of targeted analytical techniques that includes complementary mass spectrometry platforms, enzymatic digestions, and partial-deglycosylation procedures was developed to confirm the novel observations. Additionally, we found that A1AG in porcine and canine sources is highly N-glycosylated at a noncanonical motif (N-Q-C) based on semiquantitative multiple reaction monitoring analysis-the first report of an N-X-C motif exhibiting substantial N-glycosylation. Although reports of N-X-C motif N-glycosylation are relatively uncommon in the literature, this work adds to a growing list of glycoproteins reported with glycosylation at various forms of noncanonical motifs.
蛋白质的N-糖基化通常发生在符合经典共有序列N-X-S/T的天冬酰胺残基上,但也已在N-X-C基序内的少数天冬酰胺残基上被发现,包括人血清转铁蛋白的N491残基。在此,我们基于对部分去糖基化糖肽靶标的质谱分析,报告了非经典共有基序(构象为N-X-C)内的新型糖基化位点。首次观察到α-1-酸性糖蛋白(A1AG)和血清转铁蛋白(Tf)在总共六个独特的非经典基序内的天冬酰胺残基上发生N-糖基化。基于相关哺乳动物物种中N-X-C基序的进化保守性,最初通过计算机模拟预测了N-糖基化,并在来自猪、犬和猫来源的A1AG以及人血清转铁蛋白中进行了实验验证。采用高分辨率液相色谱-串联质谱法收集预测的GlcNAc化肽段的碎片数据,并确定N-X-C基序内的修饰位点。开发了包括互补质谱平台、酶消化和部分去糖基化程序在内的靶向分析技术组合,以证实这些新发现。此外,基于半定量多反应监测分析,我们发现猪和犬来源的A1AG在一个非经典基序(N-Q-C)上高度N-糖基化——这是关于N-X-C基序表现出大量N-糖基化的首次报道。尽管文献中关于N-X-C基序N-糖基化的报道相对较少,但这项工作增加了越来越多报道的在各种形式非经典基序上发生糖基化的糖蛋白名单。