← back to search

Devin K. Schweppe

California Institute for Regenerative Medicine · US
Area of research
Spectroscopy · Molecular Biology
Research interest
Research interests include Advanced Proteomics Techniques and Applications, Mass Spectrometry Techniques and Applications, Metabolomics and Mass Spectrometry Studies, and Advanced Biosensing Techniques and Applications.
h-index
34
citations
8,573
works
114
NIH funding
primary concept
Chemistry
email

Recent publications

Modulation of FGF pathway signaling and vascular differentiation using designed oligomeric assemblies
Cell 2024cited by 52position: middledoi
High-throughput identification of calcium-regulated proteins across diverse proteomes
Cell Reports 2024cited by 11position: lastdoi
Efficient and highly amplified imaging of nucleic acid targets in cellular and histopathological samples with pSABER
Nature Methods 2024cited by 9position: middledoi
CysDB: a human cysteine database based on experimental quantitative chemoproteomics
Cell chemical biology 2023cited by 97position: middledoi
Dual proteome-scale networks reveal cell-specific remodeling of the human interactome
Cell 2021cited by 982position: middledoi
Reimagining high-throughput profiling of reactive cysteines for cell-based screening of large electrophile libraries
Nature Biotechnology 2021cited by 326position: middledoi
Quantitative Proteomics of the Cancer Cell Line Encyclopedia
Cell 2020cited by 1,036position: middledoi
TMTpro reagents: a set of isobaric labeling mass tags enables simultaneous proteome-wide measurements across 16 samples
Nature Methods 2020cited by 479position: middledoi
A Quantitative Tissue-Specific Landscape of Protein Redox Regulation during Aging
Cell 2020cited by 404position: middledoi
Full-Featured, Real-Time Database Searching Platform Enables Fast and Accurate Multiplexed Quantitative Proteomics
Journal of Proteome Research 2020cited by 300position: firstdoi
Characterization and Optimization of Multiplexed Quantitative Analyses Using High-Field Asymmetric-Waveform Ion Mobility Mass Spectrometry
Analytical Chemistry 2019cited by 242position: firstdoi
Architecture of the human interactome defines protein communities and disease networks
Nature 2017cited by 1,541position: middledoi
Intrinsic disorder within AKAP79 fine-tunes anchored phosphatase activity toward substrates and drug sensitivity
eLife 2017cited by 28position: middledoi
The skeletal phenotype of achondrogenesis type 1A is caused exclusively by cartilage defects
Development 2017cited by 19position: middledoi
Author response: Intrinsic disorder within AKAP79 fine-tunes anchored phosphatase activity toward substrates and drug sensitivity
2017cited by 1position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Steven P. Gygi · Harvard University8 papers (2017–2021)João A. Paulo · Harvard University5 papers (2017–2020)Edward L. Huttlin · Harvard University4 papers (2017–2020)John Szpyt · Harvard University3 papers (2017–2020)Ramin Rad · Thermo Fisher Scientific (Germany)3 papers (2017–2020)Mark P. Jedrychowski · Harvard University3 papers (2019–2020)Brian K. Erickson · Digital Proteomics (United States)3 papers (2017–2020)Patrick J. Nygren · University of Washington2 papers (2017–2017)Sohum Mehta · La Jolla Bioengineering Institute2 papers (2017–2017)Jennifer L. Whiting · Howard Hughes Medical Institute2 papers (2017–2017)David Veesler · Howard Hughes Medical Institute2 papers (2017–2017)Derek J. Bailey · Wheaton College - Illinois2 papers (2019–2020)Jiaming Li · Jiangxi University of Traditional Chinese Medicine2 papers (2020–2020)Jin Zhang · Shanghai Medical College of Fudan University2 papers (2017–2017)John D. Scott · University of California, Davis2 papers (2017–2017)Chad R. Weisbrod · Florida State University2 papers (2017–2017)David M Shechner · Massachusetts Institute of Technology2 papers (2024–2024)Laura Pontano Vaites · Harvard University2 papers (2020–2020)José Navarrete-Perea · Merck & Co., Inc., Rahway, NJ, USA (United States)2 papers (2019–2020)James E. Bruce · University of Kansas2 papers (2017–2017)