Javascript must be enabled to continue!
Function and biotechnology of extremophilic enzymes in low water activity
View through CrossRef
Abstract
Enzymes from extremophilic microorganisms usually catalyze chemical reactions in non-standard conditions. Such conditions promote aggregation, precipitation, and denaturation, reducing the activity of most non-extremophilic enzymes, frequently due to the absence of sufficient hydration. Some extremophilic enzymes maintain a tight hydration shell and remain active in solution even when liquid water is limiting, e.g. in the presence of high ionic concentrations, or at cold temperature when water is close to the freezing point. Extremophilic enzymes are able to compete for hydration via alterations especially to their surface through greater surface charges and increased molecular motion. These properties have enabled some extremophilic enzymes to function in the presence of non-aqueous organic solvents, with potential for design of useful catalysts. In this review, we summarize the current state of knowledge of extremophilic enzymes functioning in high salinity and cold temperatures, focusing on their strategy for function at low water activity. We discuss how the understanding of extremophilic enzyme function is leading to the design of a new generation of enzyme catalysts and their applications to biotechnology.
Springer Science and Business Media LLC
Title: Function and biotechnology of extremophilic enzymes in low water activity
Description:
Abstract
Enzymes from extremophilic microorganisms usually catalyze chemical reactions in non-standard conditions.
Such conditions promote aggregation, precipitation, and denaturation, reducing the activity of most non-extremophilic enzymes, frequently due to the absence of sufficient hydration.
Some extremophilic enzymes maintain a tight hydration shell and remain active in solution even when liquid water is limiting, e.
g.
in the presence of high ionic concentrations, or at cold temperature when water is close to the freezing point.
Extremophilic enzymes are able to compete for hydration via alterations especially to their surface through greater surface charges and increased molecular motion.
These properties have enabled some extremophilic enzymes to function in the presence of non-aqueous organic solvents, with potential for design of useful catalysts.
In this review, we summarize the current state of knowledge of extremophilic enzymes functioning in high salinity and cold temperatures, focusing on their strategy for function at low water activity.
We discuss how the understanding of extremophilic enzyme function is leading to the design of a new generation of enzyme catalysts and their applications to biotechnology.
Related Results
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Abstract
The Physical Activity Guidelines for Americans (Guidelines) advises older adults to be as active as possible. Yet, despite the well documented benefits of physical a...
Use of Formation Water and Associated Gases and their Simultaneous Utilization for Obtaining Microelement Concentrates Fresh Water and Drinking Water
Use of Formation Water and Associated Gases and their Simultaneous Utilization for Obtaining Microelement Concentrates Fresh Water and Drinking Water
Abstract Purpose: The invention relates to the oil industry, inorganic chemistry, in particular, to the methods of complex processing of formation water, using flare gas of oil and...
Enzyme Activity: Allosteric Regulation
Enzyme Activity: Allosteric Regulation
Abstract
Cells can respond to changes in their environment by altering the flow through special, regulated metabolic steps perfor...
Overview of Key Zonal Water Injection Technologies in China
Overview of Key Zonal Water Injection Technologies in China
Abstract
Separated layer water injection is the important technology to realize the oilfield long-term high and stable yield. Through continuous researches and te...
THE CONTRIBUTION OF BIOTECHNOLOGY TO THE ADVANCEMENT OF SCIENTIFIC AND TECHNOLOGY RESEARCH
THE CONTRIBUTION OF BIOTECHNOLOGY TO THE ADVANCEMENT OF SCIENTIFIC AND TECHNOLOGY RESEARCH
Development in biotechnology is defined as the advancement of technology for use in biological processes and the creation of goods with therapeutic applications. The term "biotechn...
STUDIES ON INDUSTRIAL APPLICATIONS OF EXTREMOPHILIC HALOPHILIC FUNGI
STUDIES ON INDUSTRIAL APPLICATIONS OF EXTREMOPHILIC HALOPHILIC FUNGI
Marine ecosystems, covering 71% of Earth’s surface, harbor diverse life forms, including extremophilic halophilic fungi that thrive in hypersaline environments. Despite their ecolo...
Three in One: Systemic Lupus Erythematosus, HELLP Syndrome, and Antiphospholipid Syndrome: A Case Report and Literature Review
Three in One: Systemic Lupus Erythematosus, HELLP Syndrome, and Antiphospholipid Syndrome: A Case Report and Literature Review
Abstract
Introduction
Systemic lupus erythematosus (SLE) is a multisystem autoimmune disease commonly affecting women of reproductive age. Its overlap with HELLP syndrome (Hemolysi...
Sustainable Reuse of Produced Water Treatment Waste in Drilling Operations
Sustainable Reuse of Produced Water Treatment Waste in Drilling Operations
Abstract
In oil and gas explorations, produced water is generated from subsurface reservoirs along with crude oil and gas. The produced water gets separated from hyd...

