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J Feeney

Showing results (191-200 of 353) with videos related to

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Biochemistry|March 7, 1989
Dihydrofolate reductase: multiple conformations and alternative modes of substrate bindingB Birdsall, J Feeney, S J Tendler, et al.
Neuropsychological Rehabilitation|December 14, 2021
Clinical perspectives on delivering a Positive Behaviour Support intervention for challenging behaviours following acquired brain injuryPenelope Analytis, Amelia J Hicks, Kate Rachel Gould, et al.
Journal of Molecular Biology|March 5, 1986
Dihydrofolate reductase. 1H resonance assignments and coenzyme-induced conformational changesS J Hammond, B Birdsall, M S Searle, et al.
Reviews in Cardiovascular Medicine|January 12, 2026
Exploration of Spontaneous Coronary Artery Dissection: Pathophysiology, Diagnosis, Management, and Clinical ImplicationsAro Daniela Arockiam, Praveen Bharath Saravanan, Priyansha Singh, et al.
European Journal of Biochemistry|December 15, 1993
Conformational differences between complexes of elongation factor Tu studied 19F-NMR spectroscopyJ F Eccleston, D P Molloy, M G Hinds, et al.
Biochemistry|September 19, 1995
Solution structure of a brodimoprim analogue in its complex with Lactobacillus casei dihydrofolate reductaseW D Morgan, B Birdsall, V I Polshakov, et al.
Proceedings of the National Academy of Sciences of the United States of America|December 1, 1983
Intracellular calcium measurements by 19F NMR of fluorine-labeled chelatorsG A Smith, R T Hesketh, J C Metcalfe, et al.
Journal of the Chemical Society. Perkin Transactions 1|January 1, 1972
The structure of an amino-sugar from the antibiotic vancomycinW D Weringa, D H Williams, J Feeney, et al.
Biochemistry|December 31, 1997
Mapping the binding site for matrix metalloproteinase on the N-terminal domain of the tissue inhibitor of metalloproteinases-2 by NMR chemical shift perturbationR A Williamson, M D Carr, T A Frenkiel, et al.
Biochemistry|June 4, 1998
Ca2+ coordination to backbone carbonyl oxygen atoms in calmodulin and other EF-hand proteins: 15N chemical shifts as probes for monitoring individual-site Ca2+ coordinationR R Biekofsky, S R Martin, J P Browne, et al.
Pageof 36

Showing results (191-200 of 353) with videos related to

Sort By:
Pageof 36
Biochemistry|March 7, 1989
Dihydrofolate reductase: multiple conformations and alternative modes of substrate bindingB Birdsall, J Feeney, S J Tendler, et al.
Neuropsychological Rehabilitation|December 14, 2021
Clinical perspectives on delivering a Positive Behaviour Support intervention for challenging behaviours following acquired brain injuryPenelope Analytis, Amelia J Hicks, Kate Rachel Gould, et al.
Journal of Molecular Biology|March 5, 1986
Dihydrofolate reductase. 1H resonance assignments and coenzyme-induced conformational changesS J Hammond, B Birdsall, M S Searle, et al.
Reviews in Cardiovascular Medicine|January 12, 2026
Exploration of Spontaneous Coronary Artery Dissection: Pathophysiology, Diagnosis, Management, and Clinical ImplicationsAro Daniela Arockiam, Praveen Bharath Saravanan, Priyansha Singh, et al.
European Journal of Biochemistry|December 15, 1993
Conformational differences between complexes of elongation factor Tu studied 19F-NMR spectroscopyJ F Eccleston, D P Molloy, M G Hinds, et al.
Biochemistry|September 19, 1995
Solution structure of a brodimoprim analogue in its complex with Lactobacillus casei dihydrofolate reductaseW D Morgan, B Birdsall, V I Polshakov, et al.
Proceedings of the National Academy of Sciences of the United States of America|December 1, 1983
Intracellular calcium measurements by 19F NMR of fluorine-labeled chelatorsG A Smith, R T Hesketh, J C Metcalfe, et al.
Journal of the Chemical Society. Perkin Transactions 1|January 1, 1972
The structure of an amino-sugar from the antibiotic vancomycinW D Weringa, D H Williams, J Feeney, et al.
Biochemistry|December 31, 1997
Mapping the binding site for matrix metalloproteinase on the N-terminal domain of the tissue inhibitor of metalloproteinases-2 by NMR chemical shift perturbationR A Williamson, M D Carr, T A Frenkiel, et al.
Biochemistry|June 4, 1998
Ca2+ coordination to backbone carbonyl oxygen atoms in calmodulin and other EF-hand proteins: 15N chemical shifts as probes for monitoring individual-site Ca2+ coordinationR R Biekofsky, S R Martin, J P Browne, et al.
Pageof 36