1.
A cross-platform toolkit for mass spectrometry and proteomics
by Chambers, Matthew C
Nature biotechnology, 2012-10, Vol.30 (10), p.918-920

2.
Mass Spectrometry-Based Proteomics and Network Biology
by Bensimon, Ariel
Annual review of biochemistry, 2012-07-07, Vol.81 (1), p.379-405

3.
Characterizing Protein–Protein Interactions Using Mass Spectrometry: Challenges and Opportunities
by Smits, Arne H
Trends in biotechnology (Regular ed.), 2016, Vol.34 (10), p.825-834

4.
Role of spectral counting in quantitative proteomics
by Lundgren, Deborah H
Expert review of proteomics, 2010-02-01, Vol.7 (1), p.39-53

5.
A large synthetic peptide and phosphopeptide reference library for mass spectrometry–based proteomics
by Marx, H
Nature biotechnology, 2013, Vol.31 (6), p.557-564

6.
OpenSWATH enables automated, targeted analysis of data-independent acquisition MS data
by Röst, Hannes L
Nature biotechnology, 2014-03, Vol.32 (3), p.219-223

7.
Metabolomics activity screening for identifying metabolites that modulate phenotype
by Guijas, Carlos
Nature biotechnology, 2018-04-05, Vol.36 (4), p.316-320

8.
It is time for top-down venomics
by Melani, Rafael D
The journal of venomous animals and toxins including tropical diseases, 2017, Vol.23 (1), p.44-44

9.
A mass-tolerant database search identifies a large proportion of unassigned spectra in shotgun proteomics as modified peptides
by Chick, Joel M
Nature biotechnology, 2015-07, Vol.33 (7), p.743-749

10.
Neural Circuit-Specialized Astrocytes: Transcriptomic, Proteomic, Morphological, and Functional Evidence
by Chai, Hua
Neuron (Cambridge, Mass.), 2017-08-02, Vol.95 (3), p.531-549.e9

11.
From genomics to proteomics
by Tyers, Mike
Nature (London), 2003-03-13, Vol.422 (6928), p.193-197

12.
Quantitation in mass-spectrometry-based proteomics
by Schulze, Waltraud X
Annual review of plant biology, 2010, Vol.61 (1), p.491-516

13.
Rapid mass spectrometric conversion of tissue biopsy samples into permanent quantitative digital proteome maps
by Guo, Tiannan
Nature medicine, 2015-04, Vol.21 (4), p.407-413

14.
Some Prospective Strategies for Improving Crop Salt Tolerance
by Ashraf, M
Advances in Agronomy, 2008, Vol.97, p.45-110

15.
Large-scale proteomic analysis of Alzheimer's disease brain and cerebrospinal fluid reveals early changes in energy metabolism associated with microglia and astrocyte activation
by Johnson, Erik C B
Nature medicine, 2020-05, Vol.26 (5), p.769-780

16.
Proteomic identification of turkey (Meleagris gallopavo) seminal plasma proteins1,21This work was supported by project IP2011 050571 of the Ministry of Science and Higher Education...
by Słowińska, M
Poultry science, 2017-09-01, Vol.96 (9), p.3422-3435

17.
Quantitative, High-Resolution Proteomics for Data-Driven Systems Biology
by Cox, Jürgen
Annual review of biochemistry, 2011-07-07, Vol.80 (1), p.273-299

18.
Proteomics for prediction of disease progression and response to therapy in diabetic kidney disease
by Pena, Michelle J
Diabetologia, 2016-09, Vol.59 (9), p.1819-1831

19.
Enzyme Inhibitor Discovery by Activity-Based Protein Profiling
by Niphakis, Micah J
Annual review of biochemistry, 2014-06-02, Vol.83 (1), p.341-377

20.
Chemoproteomics profiling of HDAC inhibitors reveals selective targeting of HDAC complexes
by Bantscheff, Marcus
Nature biotechnology, 2011-03, Vol.29 (3), p.255-265
