2081 - 2081 |
Introduction: Radical enzymology Banerjee R |
2083 - 2094 |
Radical carbon skeleton rearrangements: Catalysis by coenzyme B-12-dependent mutases Banerjee R |
2095 - 2127 |
Radical catalysis in coenzyme B-12-dependent isomerization (eliminating) reactions Toraya T |
2129 - 2148 |
S-Adenosylmethionine: A wolf in sheep's clothing, or a rich man's adenosylcobalamin? Frey PA, Magnusson OT |
2149 - 2166 |
Biological radical sulfur insertion reactions Fontecave M, Ollagnier-de-Choudens S, Mulliez E |
2167 - 2201 |
Radical initiation in the class I ribonucleotide reductase: Long-range proton-coupled electron transfer? Stubbe J, Nocera DG, Yee CS, Chang MCY |
2203 - 2237 |
Structure and function of DNA photolyase and cryptochrome blue-light photoreceptors Sancar A |
2239 - 2304 |
Mechanism of free radical oxygenation of polyunsaturated fatty acids by cyclooxygenases Rouzer CA, Marnett LJ |
2305 - 2332 |
Autocatalytic radical reactions in physiological prosthetic heme modification Colas C, de Montellano PRO |
2333 - 2346 |
Pyruvate ferredoxin oxidoreductase and its radical intermediate Ragsdale SW |
2347 - 2363 |
Free radical catalysis by galactose oxidase Whittaker JW |
2365 - 2383 |
Tetrahydrobiopterin radical enzymology Wei CC, Crane BR, Stuehr DJ |
2385 - 2419 |
Mechanistic studies on the hydroxylation of methane by methane monooxygenase Baik MH, Newcomb M, Friesner RA, Lippard SJ |
2421 - 2456 |
Quantum chemical studies of radical-containing enzymes Himo F, Siegbahn PEM |