논문 상세

Home > 논문 상세
  • P-ISSN 2233-4203
  • E-ISSN 2093-8950

Collisional Activation Dissociation Mass Spectrometry Studies of Oligosaccharides Conjugated with Na+-Encapsulated Dibenzo-18-Crown-6 Ether

Mass Spectrometry Letters / Mass Spectrometry Letters, (P)2233-4203; (E)2093-8950
2016, v.7 no.4, pp.96-101
https://doi.org/10.5478/MSL.2016.7.4.96
Jungeun Bae (Sogang University)
Hwangbo Song (Sogang University)
Bongjin Moon (Sogang University)
Han Bin Oh (Sogang University)
  • 다운로드 수
  • 조회수

Abstract

To determine the influence of the cationization agent on the collision activated dissociation (CAD) fragmentation behavior of oligosaccharides, the CAD spectra of the singly protonated, sodiated oligosaccharides and singly sodiated and dibenzo-18-crown-6 ether conjugated oligosaccharides were carefully compared. Each of these three different species showed quite different fragmentation spectra. The comparison of singly protonated and sodiated oligosaccharide CAD spectra revealed that different cationization agents affected the cationization agent adduction sites as well as the fragmentation sites within the oligosaccharides. When the mobility of Na+ was limited by the dibenzo-18-crown-6 ether encapsulation agent, the examined linear oligosaccharides showed fragmentation patterns quite different from the unmodified ones. For the dibenzo-18-crown-6 ether conjugated oligosaccharides, the charge-remote fragmentation pathways were more likely to be activated than the chargedirected pathways. This work demonstrates that dibenzo-18-crown-6 ether conjugation can potentially provide a route to selectively activate the charge-remote fragmentation pathways, albeit to a limited extent, in tandem mass spectrometry studies.

keywords
collisional activation dissociation, mass spectrometry, crown ether, oligosaccharides, sodium


참고문헌

1

Li, H.. (1993). . Eur. J. Biochem, 218, 1-.

2

Brockhausen, I.. (1998). . Acta Anat, 161, 36-.

3

Zaia, J.. (2004). . Mass Spectrom. Rev, 23, 161-.

4

Park, Y.. (2005). . Mass Spectrom. Rev, 24, 232-.

5

Harvey, D. J.. (2005). . Proteomics, 5, 1774-.

6

Zaia, J.. (2010). . OMICS, 14, 401-.

7

Wuhrer, M.. (2013). . Glycoconj. J, 30, 11-.

8

Zhou, W.. (2011). . Curr. Proteomics, 8, 297-.

9

Kailemia, M. J.. (2014). . Anal. Chem, 86, 196-.

10

Morelle, W.. (2004). . Rapid Commun. Mass Spectrom, 18, 2451-.

11

Oh, H. B.. (2011). . J. Am. Soc. Mass Spectrom, 22, 582-.

12

Lemoine J.. (1991). . Carbohydrate Res, 221, 209-.

13

Hofmeister, G. E.. (1991). . J. Am. Chem. Soc, 113, 5964-.

14

Ngoka, L. C.. (1994). . Anal. Chem, 66, 692-.

15

Cancilla, M. T.. (1996). . J. Am. Chem. Soc, 118, 6736-.

16

Orlando, R.. (1990). . Biomed. Mass Spectrom, 19, 747-.

17

Zhou, Z.. (1990). . J. Org. Chem, 55, 5444-.

18

Lemoine, J.. (1993). . J. Am. Soc. Mass Spectrom, 4, 197-.

19

Cancilla, M. T.. (1999). . Anal. Chem, 71, 3206-.

20

Blair, S. M.. (1998). . J. Am. Soc. Mass Spectrom, 9, 1049-.

21

Domon, B.. (1988). . Glycoconj. J, 5, 397-.

22

ViseuX, N.. (1997). . Anal. Chem, 69, 3193-.

23

Yu, X.. (2012). . Anal. Chem, 84, 7487-.

24

Gao, J.. (2013). . J. Am. Chem. Soc, 135, 10684-.

25

Harvey, D. J.. (2005). . J. Am. Soc. Mass Spectrom, 16, 622-.

투고일Submission Date
2016-10-13
수정일Revised Date
2016-11-30
게재확정일Accepted Date
2016-12-01
상단으로 이동

Mass Spectrometry Letters