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Adam T Beattie

Showing results (1-10 of 4) with videos related to

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Nature Chemistry|June 15, 2023
Quintuply orthogonal pyrrolysyl-tRNA synthetase/tRNA<sup>Pyl</sup> pairsAdam T Beattie, Daniel L Dunkelmann, Jason W Chin
Nature Chemistry|August 24, 2021
A 68-codon genetic code to incorporate four distinct non-canonical amino acids enabled by automated orthogonal mRNA designDaniel L Dunkelmann, Sebastian B Oehm, Adam T Beattie, et al.
Nature Chemistry|May 31, 2020
Engineered triply orthogonal pyrrolysyl-tRNA synthetase/tRNA pairs enable the genetic encoding of three distinct non-canonical amino acidsDaniel L Dunkelmann, Julian C W Willis, Adam T Beattie, et al.
Nature|February 17, 2022
Mechanism-based traps enable protease and hydrolase substrate discoveryShan Tang, Adam T Beattie, Lucie Kafkova, et al.
Pageof 1

Showing results (1-10 of 4) with videos related to

Sort By:
Pageof 1
Nature Chemistry|June 15, 2023
Quintuply orthogonal pyrrolysyl-tRNA synthetase/tRNA<sup>Pyl</sup> pairsAdam T Beattie, Daniel L Dunkelmann, Jason W Chin
Nature Chemistry|August 24, 2021
A 68-codon genetic code to incorporate four distinct non-canonical amino acids enabled by automated orthogonal mRNA designDaniel L Dunkelmann, Sebastian B Oehm, Adam T Beattie, et al.
Nature Chemistry|May 31, 2020
Engineered triply orthogonal pyrrolysyl-tRNA synthetase/tRNA pairs enable the genetic encoding of three distinct non-canonical amino acidsDaniel L Dunkelmann, Julian C W Willis, Adam T Beattie, et al.
Nature|February 17, 2022
Mechanism-based traps enable protease and hydrolase substrate discoveryShan Tang, Adam T Beattie, Lucie Kafkova, et al.
Pageof 1