Irradiated-state structure of sfgfp containing the unnatural amino acid p-azido-phenylalanine at residue 145 Deposition Author(s): Jones, D.D. , Reddington, S.C. , Rizkallah, P.J. , Tippmann, E.M.
Date: 2013-02-14 Method: X-RAY DIFFRACTION Resolution: 1.26 Å Organism(s): Aequorea Victoria Sequences Data: 4J8A_A
Genetically encoded phenyl azide photochemistry drive positive and negative functional modulation of a red fluorescent protein Deposition Author(s): Driezis, S. , Hartley, A.M. , Jones, D.D. , Reddington, S.C. , Rizkallah, P.J. , Watson, P.D.
Date: 2015-04-28 Method: X-RAY DIFFRACTION Resolution: 1.67 Å Organism(s): Anaplasma Marginale Sequences Data: 4ZIN_A , 4ZIN_B , 4ZIN_C
Irradiated state of mcherry143azf Deposition Author(s): Driezis, S. , Hartley, A.M. , Jones, D.D. , Reddington, S.C. , Rizkallah, P.J. , Watson, P.D.
Date: 2015-04-28 Method: X-RAY DIFFRACTION Resolution: 2 Å Organism(s): Discosoma Sequences Data: 4ZIO_A , 4ZIO_B , 4ZIO_C
Switching gfp fluorescence using genetically encoded phenyl azide chemistry through two different non-native post-translational modifications routes at the same position. Deposition Author(s): Hartley, A.M. , Jones, D.D. , Reddington, S.C. , Rizkallah, P.J. , Worthy, H.L.
Date: 2015-06-02 Method: X-RAY DIFFRACTION Resolution: 2.03 Å Organism(s): Aequorea Victoria Sequences Data: 5BT0_A , 5BT0_B
Switching gfp fluorescence using genetically encoded phenyl azide chemistry through two different non-native post-translational modifications routes at the same position. Deposition Author(s): Hartley, A.M. , Jones, D.D. , Reddington, S.C. , Rizkallah, P.J. , Worthy, H.L.
Date: 2015-06-03 Method: X-RAY DIFFRACTION Resolution: 2.14 Å Organism(s): Aequorea Victoria Sequences Data: 5BTT_A , 5BTT_B
Enhanced superfolder gfp with dbco at 148 Deposition Author(s): Jones, D.D. , Rizkallah, P.J. , Worthy, H.L.
Date: 2015-09-24 Method: X-RAY DIFFRACTION Resolution: 2.66 Å Organism(s): Aequorea Victoria Sequences Data: 5DY6_A , 5DY6_B
Venus 66 p-azido-l-phenylalanin (azf) variant, dark grown Deposition Author(s): Al Maslookhi, H.S. , Jones, D.D. , Rizkallah, P.J.
Date: 2019-08-21 Method: X-RAY DIFFRACTION Resolution: 1.91 Å Organism(s): Aequorea Victoria Sequences Data: 6SM0_A
Structure of a cold active hsl family esterase reveals mechanisms of low temperature adaptation and substrate specificity Deposition Author(s): Auhim, H. , Jones, D.D. , Noby, N. , Rizkallah, P.J.
Date: 2020-12-02 Method: X-RAY DIFFRACTION Resolution: 1.61 Å Organism(s): Bacillus Cohnii Nbrc 15565 Sequences Data: 7B4Q_A , 7B4Q_B
Sfgfp c148 f206 mutant Deposition Author(s): Ahmed, R.D. , Jones, D.D. , Rizkallah, P.J.
Date: 2022-12-09 Method: X-RAY DIFFRACTION Resolution: 1.79 Å Organism(s): Aequorea Victoria Sequences Data: 8BXP_A , 8BXP_B
Sfgfp c148 f206 mutant Deposition Author(s): Ahmed, R.D. , Jones, D.D. , Rizkallah, P.J.
Date: 2022-12-21 Method: X-RAY DIFFRACTION Resolution: 1.89 Å Organism(s): Aequorea Victoria Sequences Data: 8C1X_A , 8C1X_B , 8C1X_C , 8C1X_D