Enzymes from hyperthermophiles exhibit elevated thermostability and among them, cellulases, amylases, xylanases, proteases, pectinases, lipases and esterases represent extremozymes with great potential for application in various biotechnological processes. Currently, among the microorganisms commercially exploited, there are only a few examples of extremophiles. However, the interest towards their biocatalysts that is continuously increasing as a result of new developments in cultivation of extremophiles and success in the cloning and expression of their genes in mesophilic hosts, will increase their spread. In this review, special attention has been dedicated to the major classes of enzymes of potential interest in biotechnological applications

Hyperthermophilic enzymes: their potential in biotechnology

L Maurelli;A Morana
2013

Abstract

Enzymes from hyperthermophiles exhibit elevated thermostability and among them, cellulases, amylases, xylanases, proteases, pectinases, lipases and esterases represent extremozymes with great potential for application in various biotechnological processes. Currently, among the microorganisms commercially exploited, there are only a few examples of extremophiles. However, the interest towards their biocatalysts that is continuously increasing as a result of new developments in cultivation of extremophiles and success in the cloning and expression of their genes in mesophilic hosts, will increase their spread. In this review, special attention has been dedicated to the major classes of enzymes of potential interest in biotechnological applications
2013
alpha-amylase
cellulase
esterase
hyperthermophilic enzymes
lipase
pullulanase
xylanase
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/271960
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