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Articles with public access mandates - Judith P. KLINMANLearn more
Not available anywhere: 5
A new model for the origin of kinetic hydrogen isotope effects
JP Klinman
Journal of Physical Organic Chemistry 23 (7), 606-612, 2010
Mandates: US National Institutes of Health
Nuclear magnetic resonance structure and binding studies of PqqD, a chaperone required in the biosynthesis of the bacterial dehydrogenase cofactor pyrroloquinoline quinone
RL Evans III, JA Latham, Y Xia, JP Klinman, CM Wilmot
Biochemistry 56 (21), 2735-2746, 2017
Mandates: US National Science Foundation, US National Institutes of Health
Hydroxylase activity of Met471Cys tyramine β-monooxygenase
CR Hess, Z Wu, A Ng, EE Gray, MA McGuirl, JP Klinman
Journal of the American Chemical Society 130 (36), 11939-11944, 2008
Mandates: US National Institutes of Health
Structural studies of mutant forms of the PQQ‐forming enzyme PqqC in the presence of product and substrate
S Puehringer, J RoseFigura, M Metlitzky, H Toyama, JP Klinman, ...
Proteins: Structure, Function, and Bioinformatics 78 (11), 2554-2562, 2010
Mandates: US National Institutes of Health, Austrian Science Fund
Facile synthesis of 1, 1-[2H2]-2-methylaminoethane-1-sulfonic acid as a substrate for taurine α ketoglutarate dioxygenase (TauD)
KP McCusker, JP Klinman
Tetrahedron Letters 50 (6), 611-613, 2009
Mandates: US National Institutes of Health
Available somewhere: 91
Ribosomally synthesized and post-translationally modified peptide natural products: overview and recommendations for a universal nomenclature
PG Arnison, MJ Bibb, G Bierbaum, AA Bowers, TS Bugni, G Bulaj, ...
Natural product reports 30 (1), 108-160, 2013
Mandates: US National Institutes of Health
Recommendations for performing, interpreting and reporting hydrogen deuterium exchange mass spectrometry (HDX-MS) experiments
GR Masson, JE Burke, NG Ahn, GS Anand, C Borchers, S Brier, ...
Nature methods 16 (7), 595-602, 2019
Mandates: US National Institutes of Health, Villum Foundation, UK Medical Research …
Hydrogen tunneling links protein dynamics to enzyme catalysis
JP Klinman, A Kohen
Annual review of biochemistry 82, 471-496, 2013
Mandates: US National Institutes of Health
Climate change and the integrity of science
PH Gleick, RM Adams, RM Amasino, E Anders, DJ Anderson, ...
Science 328 (5979), 689-690, 2010
Mandates: US National Institutes of Health, Howard Hughes Medical Institute
How Large Should the QM Region Be in QM/MM Calculations? The Case of Catechol O-Methyltransferase
HJ Kulik, J Zhang, JP Klinman, TJ Martínez
The Journal of Physical Chemistry B 120 (44), 11381-11394, 2016
Mandates: US Department of Energy, US National Institutes of Health
Intrigues and intricacies of the biosynthetic pathways for the enzymatic quinocofactors: PQQ, TTQ, CTQ, TPQ, and LTQ
JP Klinman, F Bonnot
Chemical reviews 114 (8), 4343-4365, 2014
Mandates: US National Institutes of Health
An integrated model for enzyme catalysis emerges from studies of hydrogen tunneling
JP Klinman
Chemical physics letters 471 (4-6), 179-193, 2009
Mandates: US National Institutes of Health
Update 1 of: Tunneling and dynamics in enzymatic hydride transfer
ZD Nagel, JP Klinman
Chemical reviews 110 (12), PR41, 2010
Mandates: US National Institutes of Health
Distribution and properties of the genes encoding the biosynthesis of the bacterial cofactor, pyrroloquinoline quinone
YQ Shen, F Bonnot, EM Imsand, JM RoseFigura, K Sjölander, ...
Biochemistry 51 (11), 2265-2275, 2012
Mandates: US National Institutes of Health
Understanding biological hydrogen transfer through the lens of temperature dependent kinetic isotope effects
JP Klinman, AR Offenbacher
Accounts of chemical research 51 (9), 1966-1974, 2018
Mandates: US Department of Defense, US National Institutes of Health
Demonstration That the Radical S-Adenosylmethionine (SAM) Enzyme PqqE Catalyzes de Novo Carbon-Carbon Cross-linking within a Peptide Substrate PqqA in the Presence of the …
I Barr, JA Latham, AT Iavarone, T Chantarojsiri, JD Hwang, JP Klinman
Journal of Biological Chemistry 291 (17), 8877-8884, 2016
Mandates: US National Institutes of Health
Enzymatic methyl transfer: Role of an active site residue in generating active site compaction that correlates with catalytic efficiency
J Zhang, JP Klinman
Journal of the American Chemical Society 133 (43), 17134-17137, 2011
Mandates: US National Institutes of Health
Dynamically achieved active site precision in enzyme catalysis
JP Klinman
Accounts of Chemical Research 48 (2), 449-456, 2015
Mandates: US National Institutes of Health
Pyrroloquinoline Quinone Biogenesis: Demonstration That PqqE from Klebsiella pneumoniae Is a Radical S-Adenosyl-l-methionine Enzyme
SR Wecksler, S Stoll, H Tran, OT Magnusson, S Wu, D King, RD Britt, ...
Biochemistry 48 (42), 10151-10161, 2009
Mandates: US National Institutes of Health, Howard Hughes Medical Institute
Extremely elevated room-temperature kinetic isotope effects quantify the critical role of barrier width in enzymatic C–H activation
S Hu, SC Sharma, AD Scouras, AV Soudackov, CAM Carr, ...
Journal of the American Chemical Society 136 (23), 8157-8160, 2014
Mandates: US National Institutes of Health
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