Struwe Weston B, Pagel Kevin, Benesch Justin L P, Harvey David J, Campbell Matthew P
Department of Chemistry, University of Oxford, Oxford, OX1 3QZ, UK.
Free University Chemistry, Institute of Chemistry and Biochemistry, Takustrasse 3, 14195, Berlin, Germany.
Glycoconj J. 2016 Jun;33(3):399-404. doi: 10.1007/s10719-015-9613-7. Epub 2015 Aug 28.
Ion mobility mass spectrometry (IM-MS) is a promising analytical technique for glycomics that separates glycan ions based on their collision cross section (CCS) and provides glycan precursor and fragment masses. It has been shown that isomeric oligosaccharide species can be separated by IM and identified on basis of their CCS and fragmentation. These results indicate that adding CCSs information for glycans and glycan fragments to searchable databases and analysis pipelines will increase identification confidence and accuracy. We have developed a freely accessible database, GlycoMob ( http://www.glycomob.org ), containing over 900 CCSs values of glycans, oligosaccharide standards and their fragments that will be continually updated. We have measured the absolute CCSs of calibration standards, biologically derived and synthetic N-glycans ionized with various adducts in positive and negative mode or as protonated (positive ion) and deprotonated (negative ion) ions.
离子淌度质谱(IM-MS)是一种用于糖组学研究的很有前景的分析技术,它基于聚糖离子的碰撞截面(CCS)对其进行分离,并提供聚糖前体和碎片的质量。研究表明,同分异构的寡糖种类可以通过离子淌度进行分离,并根据其碰撞截面和碎片化情况进行鉴定。这些结果表明,将聚糖和聚糖碎片的碰撞截面信息添加到可搜索数据库和分析流程中,将提高鉴定的可信度和准确性。我们开发了一个免费访问的数据库GlycoMob(http://www.glycomob.org),其中包含900多个聚糖、寡糖标准品及其碎片的碰撞截面值,该数据库将持续更新。我们测量了校准标准品、生物来源的和合成的N-聚糖在正离子和负离子模式下以各种加合物离子化后的绝对碰撞截面,这些加合物分别为质子化(正离子)和去质子化(负离子)离子。