By Michael W. W. Adams, Robert M. Kelly
content material: Biocatalysis close to and above 100°C : an outline / Michael W.W. Adams and Robert M. Kelly --
Metabolic enzymes from sulfur-dependent, super thermophilic organisms / Michael W.W. Adams ... [et al.] --Characterization of enzymes from high-temperature micro organism / Robert M. Kelly ... [et al.] --
Thermally solid urease from thermophilic micro organism / Kenneth Runnion, Joan Combie, and Michael Williamson --
breathing electron-transport parts in hyperthermophilic micro organism / R.J. Maier, L. Black, T. Pihl, and B. Schulman --
Key enzymes within the fundamental nitrogen metabolism of a hyperthermophile / Frank T. Robb .. [et al.] --
Biocatalysis in natural media / Don A. Cowan and Adrian R. Plant --
strain dependence of enzyme catalysis / Peter C. Michels and Douglass S. Clark --
Thermodynamic innovations for protein layout : elevated temperature balance / Martin Straume, Kenneth P. Murphy, and Ernesto Freire --
balance of extreme temperature enzymes : improvement and checking out of a brand new predictive version / Bruce E. Dale and John P. McBennett --
Computational methods to modeling and reading thermostability in proteins / John E. Wampler ... [et al.] --
DNA-binding proteins and genome topology in thermophilic prokaryotes / D.R. Musgrave ... [et al.] --
functions of thermostable DNA polymerases in molecular biology / E.J. Mather.
Read Online or Download Biocatalysis at Extreme Temperatures. Enzyme Systems Near and Above 100 °C PDF
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Extra info for Biocatalysis at Extreme Temperatures. Enzyme Systems Near and Above 100 °C
Under some conditions, no significant stationary phase may occur and extensive lysis will take place at the end of exponential phase (4). The reasons for this behavior are not clear. No phages have yet been identified in association with a high temperature bacterium, although there is some evidence that these might exist (5). The potential for lysis, of course, presents difficulties in the recovery of cellular material and complicates recovery of intracellular and extracellular enzymes. In addition to cell lysis, biomass yields on a large-scale are often unpredictable.
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