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      Neutron crystallography of copper amine oxidase reveals keto/enolate interconversion of the quinone cofactor and unusual proton sharing

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          Abstract

          Recent advances in neutron crystallographic studies have provided structural bases for quantum behaviors of protons observed in enzymatic reactions. Thus, we resolved the neutron crystal structure of a bacterial copper (Cu) amine oxidase (CAO), which contains a prosthetic Cu ion and a protein-derived redox cofactor, topa quinone (TPQ). We solved hitherto unknown structures of the active site, including a keto/enolate equilibrium of the cofactor with a nonplanar quinone ring, unusual proton sharing between the cofactor and the catalytic base, and metal-induced deprotonation of a histidine residue that coordinates to the Cu. Our findings show a refined active-site structure that gives detailed information on the protonation state of dissociable groups, such as the quinone cofactor, which are critical for catalytic reactions.

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          Ab initio effective core potentials for molecular calculations. Potentials for the transition metal atoms Sc to Hg

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            Ab initio effective core potentials for molecular calculations. Potentials for main group elements Na to Bi

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              Proton Transfer, Acid-Base Catalysis, and Enzymatic Hydrolysis. Part I: ELEMENTARY PROCESSES

              M Eigen (1964)
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                Journal
                Proceedings of the National Academy of Sciences
                Proc Natl Acad Sci USA
                Proceedings of the National Academy of Sciences
                0027-8424
                1091-6490
                May 19 2020
                May 19 2020
                May 19 2020
                May 05 2020
                : 117
                : 20
                : 10818-10824
                Article
                10.1073/pnas.1922538117
                7245091
                32371483
                4e23f539-b9a8-4795-8cb3-b91e97c42a14
                © 2020

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                https://www.pnas.org/site/aboutpnas/licenses.xhtml

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