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Marshall Bern

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Articles 71
Citations 1719
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Recent Articles
11.
Pegg C, Phung T, Caboche C, Niamsuphap S, Bern M, Howell K, et al.
Mol Cell Proteomics . 2020 Sep; 20:100020. PMID: 32938748
Sparkling wine is an alcoholic beverage enjoyed around the world. The sensory properties of sparkling wine depend on a complex interplay between the chemical and biochemical components in the final...
12.
van der Laarse S, van Gelder C, Bern M, Akeroyd M, Olsthoorn M, Heck A
FEBS J . 2019 Dec; 287(14):2979-2997. PMID: 31863553
Mass spectrometry-based proteomics experiments typically start with the digestion of proteins using trypsin, chosen because of its high specificity, availability, and ease of use. It has become apparent that the...
13.
Kreitzberg P, Bern M, Shu Q, Yang F, Serang O
J Proteome Res . 2019 Jul; 18(9):3268-3281. PMID: 31318211
In the metabolomics, glycomics, and mass spectrometry of structured small molecules, the combinatoric nature of the problem renders a database impossibly large, and thus de novo analysis is necessary. De...
14.
Campuzano I, Robinson J, Hui J, Shi S, Netirojjanakul C, Nshanian M, et al.
Anal Chem . 2019 Jun; 91(15):9472-9480. PMID: 31194911
Electrospray ionization mass spectrometry (ESI-MS) is a ubiquitously used analytical method applied across multiple departments in biopharma, ranging from early research discovery to process development. Accurate, efficient, and consistent protein...
15.
Zhu J, Chen Z, Zhang J, An M, Wu J, Yu Q, et al.
J Proteome Res . 2018 Oct; 18(1):359-371. PMID: 30370771
Intact N-glycopeptide analysis remains challenging due to the complexity of glycopeptide structures, low abundance of glycopeptides in protein digests, and difficulties in data interpretation/quantitation. Herein, we developed a workflow that...
16.
Busch F, VanAernum Z, Ju Y, Yan J, Gilbert J, Quintyn R, et al.
Anal Chem . 2018 Oct; 90(21):12796-12801. PMID: 30299922
Surface-induced dissociation (SID) is a powerful means of deciphering protein complex quaternary structures due to its capability of yielding dissociation products that reflect the native structures of protein complexes in...
17.
Vialaret J, Pierre-Olivier Schmit , Lehmann S, Gabelle A, Wood J, Bern M, et al.
Data Brief . 2018 Jun; 18:1013-1021. PMID: 29900270
Top-Down approaches have an extremely high biological relevance, especially when it comes to biomarker discovery, but the necessary pre-fractionation constraints are not easily compatible with the robustness requirements and the...
18.
Yang S, Wu W, Shen R, Bern M, Cipollo J
J Am Soc Mass Spectrom . 2018 Apr; 29(6):1273-1283. PMID: 29651731
Mass spectrometric analysis of intact glycopeptides can reveal detailed information about glycosite, glycan structural features, and their heterogeneity. Sialyl glycopeptides can be positively, negatively, or neutrally charged depending on pH...
19.
Greer S, Bern M, Becker C, Brodbelt J
J Proteome Res . 2018 Feb; 17(4):1340-1347. PMID: 29480007
To extend proteome coverage obtained from bottom-up mass spectrometry approaches, three complementary ion activation methods, higher energy collision dissociation (HCD), ultraviolet photodissociation (UVPD), and negative mode UVPD (NUVPD), are used...
20.
Bern M, Caval T, Kil Y, Tang W, Becker C, Carlson E, et al.
J Proteome Res . 2018 Jan; 17(3):1216-1226. PMID: 29376659
Charge deconvolution infers the mass from mass over charge (m/z) measurements in electrospray ionization mass spectra. When applied over a wide input m/z or broad target mass range, charge-deconvolution algorithms...