首页> 外文期刊>Analytical chemistry >MAGIC: An Automated N-Linked Glycoprotein Identification Tool Using a Y1-Ion Pattern Matching Algorithm and in Silk MS2 Approach
【24h】

MAGIC: An Automated N-Linked Glycoprotein Identification Tool Using a Y1-Ion Pattern Matching Algorithm and in Silk MS2 Approach

机译:MAGIC:使用Y1-离子模式匹配算法和Silk MS2方法的自动N联糖蛋白鉴定工具

获取原文
获取原文并翻译 | 示例
       

摘要

Glycosylation is a highly complex modification influencing the functions and activities of proteins. Interpretation of intact glycopeptide spectra is crucial but challenging. In this paper, we present a mass spectrometry-based automated glycopeptide identification platform (MAGIC) to identify peptide sequences and glycan compositions directly from intact N-linked glycopeptide collision-induced-dissociation spectra. The identification of the Y1 (peptideY0 + GlcNAc) ion is critical for the correct analysis of unknown glycoproteins, especially without prior knowledge of the proteins and glycans present in the sample. To ensure accurate Y1-ion assignment, we propose a novel algorithm called Trident that detects a triplet pattern corresponding to [Y0, Y1, Y2] or [Y0-NH3, Y0, Y1] from the fragmentation of the common trimannosyl core of N-linked glycopeptides. To facilitate the subsequent peptide sequence identification by common database search engines, MAGIC generates in silico spectra by overwriting the original precursor with the naked peptide m/z and removing all of the glycan-related ions. Finally, MAGIC computes the glycan compositions and ranks them. For the model glycoprotein horseradish peroxidase (HRP) and a 5-glycoprotein mixture, a 2- to 31-fold increase in the relative intensities of the peptide fragments was achieved, which led to the identification of 7 tryptic glycopeptides from HRP and 16 glycopeptides from the mixture via Mascot. In the HeLa cell proteome data set, MAGIC processed over a thousand MS2 spectra in 3 min on a PC and reported 36 glycopeptides from 26 glycoproteins. Finally, a remarkable false discovery rate of 0 was achieved on the N-glycosylation-free Escherichia coli data set. MAGIC is available at http://ms.iis.sinica.edu.tw/COmics/Software_MAGIC.html.
机译:糖基化是影响蛋白质功能和活性的高度复杂的修饰。完整糖肽谱的解释至关重要但具有挑战性。在本文中,我们提出了一种基于质谱的自动糖肽鉴定平台(MAGIC),可以直接从完整的N-连接的糖肽碰撞诱导-解离光谱中鉴定肽序列和聚糖成分。 Y1(肽Y0 + GlcNAc)离子的鉴定对于正确分析未知糖蛋白至关重要,特别是在没有样品中蛋白质和聚糖的先验知识的情况下。为确保准确的Y1离子分配,我们提出了一种称为Trident的新颖算法,该算法从N-的常见三甘露糖基核的片段中检测对应于[Y0,Y1,Y2]或[Y0-NH3,Y0,Y1]的三联体模式连接的糖肽。为了便于通过通用数据库搜索引擎进行后续的肽序列识别,MAGIC通过用裸肽m / z覆盖原始前体并去除所有与聚糖相关的离子,来生成计算机光谱图。最终,MAGIC计算出聚糖成分并对其进行排名。对于模型糖蛋白辣根过氧化物酶(HRP)和5-糖蛋白混合物,肽片段的相对强度增加了2到31倍,从而鉴定了HRP中的7种胰蛋白酶糖肽和HRP中的16种糖肽。通过吉祥物的混合物。在HeLa细胞蛋白质组数据集中,MAGIC在PC上在3分钟内处理了超过一千个MS2光谱,并报告了来自26种糖蛋白的36种糖肽。最后,在无N-糖基化的大肠杆菌数据集上,实现了显着的错误发现率0。 MAGIC可从http://ms.iis.sinica.edu.tw/COmics/Software_MAGIC.html获得。

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