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Dive into the research topics where R. Derike Smiley is active.

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Featured researches published by R. Derike Smiley.


Proceedings of the National Academy of Sciences of the United States of America | 2007

Single-molecule measurements of the opening and closing of the DNA gate by eukaryotic topoisomerase II

R. Derike Smiley; Tammy R. L. Collins; Gordon G. Hammes; Tao-shih Hsieh

Type II DNA topoisomerases are essential and ubiquitous enzymes that perform important functions in chromosome condensation and segregation and in regulating intracellular DNA supercoiling. Topoisomerases carry out these DNA transactions by passing one segment of DNA through the other by using a reversible, enzyme-bridged double strand break. The transient enzyme/DNA adduct is mediated by a phosphodiester bond between the active-site tyrosine and a backbone phosphate of DNA. The opening and closing of the DNA gate, a critical step for strand passage during the catalytic cycle, is coupled to this cleavage/religation. We designed a unique oligonucleotide substrate with a pair of fluorophores straddling the topoisomerase II cleavage site, allowing the use of FRET to monitor the opening of the DNA gate. The DNA substrate undergoes an enzyme-mediated transition between a closed and open state in the presence of ATP, similar to the overall topoisomerase II catalyzed reaction. Single-molecule fluorescence microscopy measurements demonstrate that the transition has comparable rate constants for both the opening and closing reaction during steady-state ATP hydrolysis, with an apparent equilibrium constant near unity. In the presence of AMPPNP, a reduction in FRET occurs, suggesting an opening or partial opening of the DNA gate. However, the single-molecule experiments indicate that the open and closed states do not interconvert at a measurable rate.


Chemical Reviews | 2006

Single Molecule Studies of Enzyme Mechanisms

R. Derike Smiley; Gordon G. Hammes


Biochemistry | 2005

Conformation Coupled Enzyme Catalysis: Single-Molecule and Transient Kinetics Investigation of Dihydrofolate Reductase†

Nina M. Antikainen; R. Derike Smiley; Stephen J. Benkovic; Gordon G. Hammes


Biochemistry | 2006

Single-molecule investigation of the T4 bacteriophage DNA polymerase holoenzyme: multiple pathways of holoenzyme formation.

R. Derike Smiley; Zhihao Zhuang; Stephen J. Benkovic; Gordon G. Hammes


Biochemistry | 2003

Role of ionic interactions in ligand binding and catalysis of R67 dihydrofolate reductase.

Stephanie N. Hicks; R. Derike Smiley; and J. Bradley Hamilton; Elizabeth E. Howell


Biochemistry | 2001

Role of S65, Q67, I68, and Y69 Residues in Homotetrameric R67 Dihydrofolate Reductase†

Michael Brad Strader; R. Derike Smiley; Lori G. Stinnett; and Nathan C. VerBerkmoes; Elizabeth E. Howell


Biochemistry | 2002

Breaking symmetry: mutations engineered into R67 dihydrofolate reductase, a D2 symmetric homotetramer possessing a single active site pore.

R. Derike Smiley; Lori G. Stinnett; and Arnold M. Saxton; Elizabeth E. Howell


Biochemistry | 2005

Calorimetric studies of ligand binding in R67 dihydrofolate reductase.

Michael D. Jackson; Shaileja Chopra; R. Derike Smiley; Patrick O'neal Maynord; Andre Rosowsky; Robert E. London; Louis A. Levy; Thomas I. Kalman; Elizabeth E. Howell


Biochemistry | 2004

Defining the Binding Site of Homotetrameric R67 Dihydrofolate Reductase and Correlating Binding Enthalpy with Catalysis

Michael Brad Strader; Shaileja Chopra; Michael Jackson; R. Derike Smiley; Lori G. Stinnett; and Jun Wu; Elizabeth E. Howell


Journal of Computer-aided Molecular Design | 2001

One site fits both: A model for the ternary complex of folate + NADPH in R67 dihydrofolate reductase, a D2 symmetric enzyme

Elizabeth E. Howell; Ushma Shukla; Stephanie N. Hicks; R. Derike Smiley; Leslie A. Kuhn; Maria I. Zavodszky

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Stephen J. Benkovic

Pennsylvania State University

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Gregory B. Hurst

Oak Ridge National Laboratory

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Leslie A. Kuhn

Michigan State University

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