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Current Opinion in Chemical Biology
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August 28, 2014
Genetic code expansion and bioorthogonal labelling enables cell specific proteomics in an animal
Thomas S Elliott, Ambra Bianco, Jason W Chin
Genes & Development
|
February 18, 2022
RBBP6 activates the pre-mRNA 3' end processing machinery in humans
Vytaute Boreikaite, Thomas S Elliott, Jason W Chin, et al.
Cell Chemical Biology
|
July 23, 2016
Tagging and Enriching Proteins Enables Cell-Specific Proteomics
Thomas S Elliott, Ambra Bianco, Fiona M Townsley, et al.
Nature Chemistry
|
December 22, 2022
Genetically programmed cell-based synthesis of non-natural peptide and depsipeptide macrocycles
Martin Spinck, Carlos Piedrafita, Wesley E Robertson, et al.
Science (New York, N.Y.)
|
October 20, 2022
Refactored genetic codes enable bidirectional genetic isolation
Jérôme F Zürcher, Wesley E Robertson, Tomás Kappes, et al.
PNAS Nexus
|
April 24, 2023
Cell-of-origin-specific proteomics of extracellular vesicles
Sebastian Kehrloesser, Oliver Cast, Thomas S Elliott, et al.
Nature
|
January 10, 2024
Adding α,α-disubstituted and β-linked monomers to the genetic code of an organism
Daniel L Dunkelmann, Carlos Piedrafita, Alexandre Dickson, et al.
Nature Chemical Biology
|
August 30, 2016
Genetic code expansion in the mouse brain
Russell J Ernst, Toke P Krogager, Elizabeth S Maywood, et al.
Nature Biotechnology
|
December 19, 2017
Labeling and identifying cell-specific proteomes in the mouse brain
Toke P Krogager, Russell J Ernst, Thomas S Elliott, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
November 30, 2018
Translational switching of Cry1 protein expression confers reversible control of circadian behavior in arrhythmic Cry-deficient mice
Elizabeth S Maywood, Thomas S Elliott, Andrew P Patton, et al.
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Search research articles
Search
Showing results (1-10 of 13) with videos related to
Sort By:
Page
of 2
Current Opinion in Chemical Biology
|
August 28, 2014
Genetic code expansion and bioorthogonal labelling enables cell specific proteomics in an animal
Thomas S Elliott, Ambra Bianco, Jason W Chin
Genes & Development
|
February 18, 2022
RBBP6 activates the pre-mRNA 3' end processing machinery in humans
Vytaute Boreikaite, Thomas S Elliott, Jason W Chin, et al.
Cell Chemical Biology
|
July 23, 2016
Tagging and Enriching Proteins Enables Cell-Specific Proteomics
Thomas S Elliott, Ambra Bianco, Fiona M Townsley, et al.
Nature Chemistry
|
December 22, 2022
Genetically programmed cell-based synthesis of non-natural peptide and depsipeptide macrocycles
Martin Spinck, Carlos Piedrafita, Wesley E Robertson, et al.
Science (New York, N.Y.)
|
October 20, 2022
Refactored genetic codes enable bidirectional genetic isolation
Jérôme F Zürcher, Wesley E Robertson, Tomás Kappes, et al.
PNAS Nexus
|
April 24, 2023
Cell-of-origin-specific proteomics of extracellular vesicles
Sebastian Kehrloesser, Oliver Cast, Thomas S Elliott, et al.
Nature
|
January 10, 2024
Adding α,α-disubstituted and β-linked monomers to the genetic code of an organism
Daniel L Dunkelmann, Carlos Piedrafita, Alexandre Dickson, et al.
Nature Chemical Biology
|
August 30, 2016
Genetic code expansion in the mouse brain
Russell J Ernst, Toke P Krogager, Elizabeth S Maywood, et al.
Nature Biotechnology
|
December 19, 2017
Labeling and identifying cell-specific proteomes in the mouse brain
Toke P Krogager, Russell J Ernst, Thomas S Elliott, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
November 30, 2018
Translational switching of Cry1 protein expression confers reversible control of circadian behavior in arrhythmic Cry-deficient mice
Elizabeth S Maywood, Thomas S Elliott, Andrew P Patton, et al.
Page
of 2