Cold and Hot Extremozymes: Industrial Relevance and Current Trends
Холодо- и термоэкстремозимы: промышленное значение и современные тенденции
2015-10-20
SCID: 54.1/h2jhbqd5
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extremozymeshyperthermophilic enzymesindustrial biocatalysispsychrophilic enzymesthermophilic enzymes
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Abstract (AI)
The development of enzymes for industrial applications relies heavily on the use of microorganisms. The intrinsic properties of microbial enzymes, e.g., consistency, reproducibility, and high yields along with many others, have pushed their introduction into a wide range of products and industrial processes. Extremophilic microorganisms represent an underutilized and innovative source of novel enzymes. These microorganisms have developed unique mechanisms and molecular means to cope with extreme temperatures, acidic and basic pH, high salinity, high radiation, low water activity, and high metal concentrations among other environmental conditions. Extremophile-derived enzymes, or extremozymes, are able to catalyze chemical reactions under harsh conditions, like those found in industrial processes, which were previously not thought to be conducive for enzymatic activity. Due to their optimal activity and stability under extreme conditions, extremozymes offer new catalytic alternatives for current industrial applications. These extremozymes also represent the cornerstone for the development of environmentally friendly, efficient, and sustainable industrial technologies. Many advances in industrial biocatalysis have been achieved in recent years; however, the potential of biocatalysis through the use of extremozymes is far from being fully realized. In this article, the adaptations and significance of psychrophilic, thermophilic, and hyperthermophilic enzymes, and their applications in selected industrial markets will be reviewed. Also, the current challenges in the development and mass production of extremozymes as well as future prospects and trends for their biotechnological application will be discussed.
Key Findings
1
Despite recent advances, extremozymes remain underexploited, with development and large-scale production challenges limiting their broader biotechnological application.
2
Extremophilic microorganisms provide an underutilized source of extremozymes adapted to extreme temperatures, pH, salinity, radiation, water activity, and metal concentrations.
3
Extremozymes catalyze reactions under harsh industrial conditions where conventional enzymes may be inactive, creating new catalytic alternatives.
4
Microbial enzymes offer consistent, reproducible production and high yields, supporting their broad adoption across industrial products and processes.
5
Psychrophilic, thermophilic, and hyperthermophilic enzymes have significant potential for environmentally friendly, efficient, and sustainable industrial biocatalysis.
Research Object
Extremophile-derived enzymes (extremozymes), particularly psychrophilic, thermophilic, and hyperthermophilic enzymes
Research Subject
The adaptations, catalytic activity, stability, industrial applications, production challenges, and biotechnological prospects of extremozymes under extreme conditions
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2015-10-20
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