Biology Reference
In-Depth Information
commonly used mass analyzers. Appl Spectrosc Rev
2009;
by Fourier transform ion cyclotron resonance mass
spectrometry. Anal Chem 2011;
:210 e 30.
33. Wilm M. Principles of electrospray ionization. Mol Cell
Proteomics 2011;
44
:8391 e 5.
48. Makarov A, Denisov E, Lange O. Performance evalu-
ation of a high-
83
:M111.009407.
34. Lomeli SH, Peng IX, Yin S, Loo RR, Loo JA. New
reagents for increasing ESI multiple charging of
proteins and protein complexes. J Am Soc Mass Spec-
trom 2010;
10
eld Orbitrap mass analyzer. J Am Soc
Mass Spectrom 2009;
:1391 e 6.
49. Patrie SM, Charlebois JP, Whipple D, et al. Construc-
tion of a hybrid quadrupole/Fourier transform ion
cyclotron resonance mass spectrometer for versatile
MS/MS above 10 kDa. J Am Soc Mass Spectrom 2004;
15
20
:127 e 31.
35. Guo X, Bruins AP, Covey TR. Characterization of
typical chemical background interferences in atmo-
spheric pressure ionization liquid chromatography-
mass spectrometry. Rapid Commun Mass Spectrom
2006;
21
:1099 e 108.
50. Xian F, Hendrickson CL, Blakney GT, Beu SC,
Marshall AG. Automated broadband phase correction
of Fourier transform ion cyclotron resonance mass
spectra. Anal Chem 2010;
:3145 e 50.
36. Emmett MR, Caprioli RM. Micro-electrospray mass-
spectrometry e ultra-high-sensitivity analysis of
peptides and proteins. J Am Chem Soc 1994;
20
:8807 e 12.
51. Chi A, Bai DL, Geer LY, Shabanowitz J, Hunt DF.
Analysis of intact proteins on a chromatographic time
scale by electron transfer dissociation tandem mass
spectrometry. Int J Mass Spectrom 2007;
82
:605 e 13.
37. Wilm MS, Mann Electrospray M, Theory Taylor-Cone.
Doles Beam of Macromolecules at Last. Int J Mass
Spectrom 1994;
5
:197 e 203.
52. Meluzzi D, Zheng WH, Hensler M, Nizet V,
Dorrestein PC. Top-down mass spectrometry on
low-resolution instruments: Characterization of phos-
phopantetheinylated carrier domains in polyketide
and non-ribosomal biosynthetic pathways. Bioorg Med
Chem 2008;
259
:167 e 80.
38. Marginean I, Kelly RT, Prior DC, LaMarche BL,
Tang K, Smith RD. Analytical characterization of the
electrospray ion source in the nano
136
ow regime. Anal
:6573 e 9.
39. Patrie SM, Ferguson JT, Robinson DE, et al. Top down
mass spectrometry of
Chem 2008;
80
:3107 e 11.
53. Madsen JA, Gardner MW, Smith SI, et al. Top-down
protein fragmentation by infrared multiphoton disso-
ciation in a dual pressure linear ion trap. Anal Chem
2009;
18
60-kDa proteins from Meth-
anosarcina acetivorans using quadrupole FRMS with
automated octopole collisionally activated dissocia-
tion. Mol Cell Proteomics 2006;
<
:14 e 25.
40. Parks BA, Jiang L, Thomas PM, et al. Top-down pro-
teomics on a chromatographic time scale using linear
ion trap Fourier transform hybrid mass spectrometers.
Anal Chem 2007;
5
:8677 e 86.
54. Ginter JM, Zhou F, Johnston MV. Generating protein
sequence tags by combining cone and conventional
collision induced dissociation in a quadrupole time-of-
81
:7984 e 91.
41. Roth MJ, Plymire DA, Chang AN, et al. Sensitive and
reproducible intact mass analysis of complex protein
mixtures with super
79
flight mass spectrometer. J Am Soc Mass Spectrom 2004;
15
:1478 e 86.
55. Reid GE, McLuckey SA.
protein charac-
terization via tandem mass spectrometry.
Top down
cially porous capillary reversed-
phase liquid chromatography mass spectrometry.
Anal Chem 2011;
J Mass
:663 e 75.
56. Abzalimov RR, Kaltashov IA. Electrospray ionization
mass spectrometry of highly heterogeneous protein
systems: protein ion charge state assignment via incom-
plete charge reduction. Anal Chem 2010;
Spectrom 2002;
37
:9586 e 92.
42. Marshall AG, Hendrickson CL. High-resolution mass
spectrometers. Ann Rev Anal Chem 2008;
83
:579 e 99.
43. Glish GL, Burinsky DJ. Hybrid mass spectrometers for
tandem mass spectrometry. J Am Soc Mass Spectrom
2008;
1
:7523 e 6.
57. Hassell KM, LeBlanc YC, McLuckey SA. Chemical
noise reduction via mass spectrometry and ion/ion
charge inversion: amino acids. Anal Chem 2011;
82
:161 e 72.
44. Xian F, Hendrickson CL, Marshall AG. High resolu-
tion mass spectrometry. Anal Chem 2012;
19
83
:
:708 e 19.
45. Carini M, Regazzoni L, Aldini G. Mass spectrometric
strategies and their applications for molecular mass
determination of recombinant therapeutic proteins.
Curr Pharm Biotechnol 2011;
84
3252 e 5.
58. Liu J, Huang TY, McLuckey SA. Simultaneous trans-
mission mode collision-induced dissociation and
ion/ion reactions for top-down protein identi
cation/
characterization using a quadrupole/time-of-
:1548 e 57.
46. Zhou M, Veenstra T. Mass
12
ight
spectrometry: m/z
tandem mass
spectrometer. Anal Chem 2009;
81
:
:667 e 8. 70.
47. Valeja SG, Kaiser NK, Xian F, Hendrickson CL,
Rouse JC, Marshall AG. Unit mass baseline resolution
for an intact 148 kDa therapeutic monoclonal antibody
1983 e 2008. BioTechniques 2008;
44
2159 e 67.
59. Mikesh LM, Ueberheide B, Chi A, et al. The utility
of ETD mass spectrometry in proteomic analysis.
Biochimica et biophysica acta 2006;
1764
:1811 e 22.
Search WWH ::




Custom Search