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Chemistry

D-Index
63
Citations
11670
World Ranking
8592
National Ranking
2459

Overview

David N. Silverman is affiliated with the University of Florida in the United States. Their academic profile currently does not list recent papers, frequent coauthors, or specific publication venues, indicating limited publicly available bibliographic data at this time.

No detailed information is provided regarding their main fields or subfields of study, nor about particular topics they focus on in their research.

Similarly, there are no records of book publications or awards associated with David N. Silverman in the available data. The absence of these elements limits insight into the breadth and impact of their scholarly contributions.

This profile reflects current publicly accessible data and may not capture the full scope of their academic career or ongoing projects.

Best Publications

  • The catalytic mechanism of carbonic anhydrase: implications of a rate-limiting protolysis of water

    David N. Silverman;Sven Lindskog

  • Role of histidine 64 in the catalytic mechanism of human carbonic anhydrase II studied with a site-specific mutant

    Chingkuang Tu;David N. Silverman;Cecilia Forsman;Bengt Harald Jonsson

  • Carbonic anhydrase: oxygen-18 exchange catalyzed by an enzyme with rate-contributing proton-transfer steps.

    David N. Silverman

  • Entrapment of Carbon Dioxide in the Active Site of Carbonic Anhydrase II

    John F. Domsic;Balendu Sankara Avvaru;Chae Un Kim;Sol M. Gruner

  • Solvent-mediated proton transfer in catalysis by carbonic anhydrase.

    David N. Silverman;Robert McKenna

  • Structural and Kinetic Characterization of Active-Site Histidine as a Proton Shuttle in Catalysis by Human Carbonic Anhydrase II

    Zoë Fisher;Jose A. Hernandez Prada;Chingkuang Tu;David Duda

  • Catalytic Properties of Human Manganese Superoxide Dismutase

    Jan-Ling Hsu;Yunsheng Hsieh;Chingkuang Tu;Don O'Connor

  • Atomic crystal and molecular dynamics simulation structures of human carbonic anhydrase II: insights into the proton transfer mechanism

    S.Z Fisher;C.M Maupin;M Budayova-Spano;L Govindasamy

  • A Short, Strong Hydrogen Bond in the Active Site of Human Carbonic Anhydrase II †,‡

    Balendu Sankara Avvaru;Chae Un Kim;Katherine H. Sippel;Sol M. Gruner

  • Purification and characterization of carbonic anhydrase from the saliva of the rat.

    J B Feldstein;D N Silverman

  • Crystal structure of Y34F mutant human mitochondrial manganese superoxide dismutase and the functional role of tyrosine 34

    Yue Guan;Michael J. Hickey;Gloria E. O. Borgstahl;Robert A. Hallewell

  • Rate of exchange of water from the active site of human carbonic anhydrase C

    D. N. Silverman;C. K. Tu;S. Lindskog;G. C. Wynns

  • Detection of nitroxyl (HNO) by membrane inlet mass spectrometry.

    Meredith R. Cline;Chingkuang Tu;David N. Silverman;John P. Toscano

  • Marcus rate theory applied to enzymatic proton transfer.

    David N. Silverman

  • Structural and kinetic analysis of the chemical rescue of the proton transfer function of carbonic anhydrase II.

    David Duda;Chingkuang Tu;Minzhang Qian;Philip Laipis

  • Proton Transfer in the Catalytic Mechanism of Carbonic Anhydrase

    David N. Silverman;Styliani H. Vincent

  • Structure determination of murine mitochondrial carbonic anhydrase V at 2.45-A resolution: implications for catalytic proton transfer and inhibitor design.

    P A Boriack-Sjodin;R W Heck;P J Laipis;D N Silverman

  • Speeding Up Proton Transfer in a Fast Enzyme: Kinetic and Crystallographic Studies on the Effect of Hydrophobic Amino Acid Substitutions in the Active Site of Human Carbonic Anhydrase II.

    S.Z Fisher;C.K Tu;D Bhatt;L Govindasamy

  • Probing the active site of human manganese superoxide dismutase: the role of glutamine 143.

    Yunsheng Hsieh;Yue Guan;Chingkuang Tu;Peter J. Bratt

  • Crystal structure of nitrated human manganese superoxide dismutase: mechanism of inactivation.

    Patrick Quint;Robbie Reutzel;Rose Mikulski;Robert McKenna

Frequent Co-Authors

Chingkuang Tu
Chingkuang Tu University of Florida
Robert McKenna
Robert McKenna University of Florida
Harry S. Nick
Harry S. Nick University of Florida
Mavis Agbandje-McKenna
Mavis Agbandje-McKenna University of Florida
John A. Tainer
John A. Tainer The University of Texas MD Anderson Cancer Center
Diane E. Cabelli
Diane E. Cabelli Brookhaven National Laboratory
Ying Li
Ying Li Texas A&M University
Andrey Kovalevsky
Andrey Kovalevsky Oak Ridge National Laboratory
Xian Chen
Xian Chen University of North Carolina at Chapel Hill
David W. Christianson
David W. Christianson University of Pennsylvania

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