TY - JOUR
T1 - Structure and fragmentation mechanisms of isomeric T-rich oligodeoxynucleotides
T2 - A comparison of four tandem mass spectrometric methods
AU - Wang, Z.
AU - Wan, K. X.
AU - Ramanathan, R.
AU - Taylor, J. S.
AU - Gross, M. L.
N1 - Funding Information:
This work was supported by the National Institutes of Health, National Center for Research Resources (grant no. 2P41RR00954) and by NIH grant no. P01CA49210.
PY - 1998
Y1 - 1998
N2 - Understanding the product-ion spectra of T-rich tetradeoxynucleotides is a starting point in the development of a mass spectrometric scheme to determine the mutagenicity of individual types of DNA damage. We obtained product-ion spectra for electrospray-produced ions that were activated in the ion source (electrospray ionization-source collision-activated-dissociation) and by high-energy collisions in the MS/MS mode of a four-sector instrument. We also activated singly and doubly charged ions by low-energy collisions in an ion-trap mass spectrometer and investigated post source decompositions of matrix-assisted laser desorbed ions in a time-of-flight mass spectrometer. The various methods of extracting structural information give remarkably consistent results. The difference in the relative abundances of wn and dn ions of the singly charged oligonucleotides and the formation of [a3 - B3] ions, where B3 is the base on the third position, are effective for identification and distinction of pairs of isomeric tetranucleotides. A sufficient number of tetramers and pentamers were studied to enable us to propose a charge-remote mechanism for the formation of site-specific [an - Bn] ion.
AB - Understanding the product-ion spectra of T-rich tetradeoxynucleotides is a starting point in the development of a mass spectrometric scheme to determine the mutagenicity of individual types of DNA damage. We obtained product-ion spectra for electrospray-produced ions that were activated in the ion source (electrospray ionization-source collision-activated-dissociation) and by high-energy collisions in the MS/MS mode of a four-sector instrument. We also activated singly and doubly charged ions by low-energy collisions in an ion-trap mass spectrometer and investigated post source decompositions of matrix-assisted laser desorbed ions in a time-of-flight mass spectrometer. The various methods of extracting structural information give remarkably consistent results. The difference in the relative abundances of wn and dn ions of the singly charged oligonucleotides and the formation of [a3 - B3] ions, where B3 is the base on the third position, are effective for identification and distinction of pairs of isomeric tetranucleotides. A sufficient number of tetramers and pentamers were studied to enable us to propose a charge-remote mechanism for the formation of site-specific [an - Bn] ion.
UR - http://www.scopus.com/inward/record.url?scp=0032232419&partnerID=8YFLogxK
U2 - 10.1016/S1044-0305(98)00178-0
DO - 10.1016/S1044-0305(98)00178-0
M3 - Article
C2 - 9879378
AN - SCOPUS:0032232419
SN - 1044-0305
VL - 9
SP - 683
EP - 691
JO - Journal of the American Society for Mass Spectrometry
JF - Journal of the American Society for Mass Spectrometry
IS - 7
ER -