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Titlebook: Gas Enzymology; Proceedings of a Sym H. Degn,R. P. Cox,H. Toftlund Conference proceedings 1985 D. Reidel Publishing Company, Dordrecht, Hol

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https://doi.org/10.1007/978-3-476-05175-2 of CO. catalyzed by carbonic anhydrase II. First, the rate of interconversion of CO. and ., R., occurs without rate-limiting proton transfer. Second, the rate of release from the enzyme of water bearing substrate oxygen R. occurs with rate-limiting proton transfer. The effects of three types of inh
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https://doi.org/10.1007/978-1-4615-1953-9eria are carboxydotrophs, methanotrophs, dinitrogen-fixers, acetogens, methanogens, phototrophs and sulfate- reducers. Some can use CO as sole carbon and energy source for growth (utilitarian CO-oxidizers) whereas the gas is only co-oxidized by others (non-utilitarian CO-oxidizers). Enzymes that Cat
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The Structure of the Soviet Acronyms, data are converging to indicate that the prosthetic site (probably Mo in ‘FeMoco’) forms a dihydride which is the N.-binding site, that the N. residue remains bound to that site during reduction and that a bound hydrazide (2-) species is formed transiently. Reduction follows a sequence of electron
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Direct Mass-Spectrometric Monitoring of the Metabolism and Isotope Exchange in Enzymic and Microbio gases concentration related to enzyme activity or to bacterial metabolism. This technique, eventually associated with the use of stable isotopes allows very sensitive, accurate and fast-responding kinetic measurements to be made with a broad variety of gases. Particular care has been taken to maint
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