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The sequencing of the human genome marked the beginning of a collective scientific expedition to understand complex organisms. Genes, of course, merely contain the instructions for which proteins will populate the cell. Untangling the multi-faceted networks that regulate complex organisms and their diseases will require innovative technologies to globally monitor many classes of biomolecules, including nucleic acids, proteins, and metabolites. High-throughput technologies for gene and transcript measurement are well-developed and broadly accessible, and, as such, have had a fantastic and transformative impact on modern biology and medicine. For numerous reasons, methods for global analysis of proteins and metabolites – crucial biological effector molecules – are less evolved and markedly less accessible.
The overarching mission of my program is to (1) facilitate expedient, comprehensive analysis of proteins and metabolites by innovating new mass spectrometric technologies and (2) apply these techniques to advance biomedical research.
The sequencing of the human genome marked the beginning of a collective scientific expedition to understand complex organisms. Genes, of course, merely contain the instructions for which proteins will populate the cell. Untangling the multi-faceted networks that regulate complex organisms and their diseases will require innovative technologies to globally monitor many classes of biomolecules, including nucleic acids, proteins, and metabolites. High-throughput technologies for gene and transcript measurement are well-developed and broadly accessible, and, as such, have had a fantastic and transformative impact on modern biology and medicine. For numerous reasons, methods for global analysis of proteins and metabolites – crucial biological effector molecules – are less evolved and markedly less accessible.
The overarching mission of my program is to (1) facilitate expedient, comprehensive analysis of proteins and metabolites by innovating new mass spectrometric technologies and (2) apply these techniques to advance biomedical research.
研究兴趣
论文共 452 篇作者统计合作学者相似作者
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Nicholas Banahene,Trenton M Peters-Clarke,Kyle J Biegas,Evgenia Shishkova,Elizabeth M Hart, Amelia C McKitterick, Nikolas H Kambitsis, Ulysses G Johnson,Thomas G Bernhardt,Joshua J Coon,Benjamin M Swarts
Journal of the American Chemical Society (2024)
J Wade Harper,Felix Kraus,Yuchen He,Sharan Swarup,Katherine A Overmyer, Johann Brenner,Cristina Capitanio,Anna Bieber,Annie Jen, Nicole M Nightingale, Benton J Anderson, Chan Lee,
crossref(2024)
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Molecular Metabolism (2024): 101916-101916
Julio Rivera Vazquez,Edna Trujillo, Jonathan Williams, Fukang She, Fitsum Getahun,Melanie M. Callaghan,Joshua J. Coon,Daniel Amador-Noguez
Biotechnology for Biofuels and Bioproductsno. 1 (2024): 1-23
Thomas K. Anderson, Peter J. Hoferle, Kennan J. Chojnacki,Kenneth W. Lee,Joshua J. Coon,Robert N. Kirchdoerfer
Analytical Chemistry (2024)
Lia R. Serrano,Trenton M. Peters-Clarke,Tabiwang N. Arrey, Nicolaie E. Damoc, Margaret Lea Robinson, Noah M. Lancaster,Evgenia Shishkova, Corinne Moss,Anna Pashkova,Pavel Sinitcyn,Dain R. Brademan, Scott T. Quarmby,
Molecular & Cellular Proteomicspp.100760-100760, (2024)
Felix Kraus,Yuchen He,Sharan Swarup,Katherine A Overmyer,Yizhi Jiang, Johann Brenner,Cristina Capitanio,Anna Bieber,Annie Jen, Nicole M Nightingale, Benton J Anderson, Chan Lee,
bioRxiv : the preprint server for biology (2024)
Trenton M. Peters-Clarke, Qiuwen Quan, Benton J. Anderson,William M. McGee, Emily Lohr, Alexander S. Hebert,Michael S. Westphall,John E.P. Syka, James L. Stephenson,Joshua J. Coon
Molecular & Cellular Proteomicspp.100742-100742, (2024)
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