Current prospective in using cold-active enzymes as eco-friendly detergent additive
AA Al-Ghanayem, B Joseph - Applied microbiology and biotechnology, 2020 - Springer
Advanced developments in the field of enzyme technology have increased the use of
enzymes in industrial applications, especially in detergents. Enzymes as detergent additives …
enzymes in industrial applications, especially in detergents. Enzymes as detergent additives …
Cold-active enzymes and their potential industrial applications—a review
More than 70% of our planet is covered by extremely cold environments, nourishing a broad
diversity of microbial life. Temperature is the most significant parameter that plays a key role …
diversity of microbial life. Temperature is the most significant parameter that plays a key role …
Adaptation, production, and biotechnological potential of cold-adapted proteases from psychrophiles and psychrotrophs: recent overview
J Furhan - Journal of Genetic Engineering and Biotechnology, 2020 - Elsevier
Background Proteases or peptidases are an imperative class of hydrolytic enzymes capable
of hydrolyzing large proteins into smaller peptides. The cold-adapted proteases show higher …
of hydrolyzing large proteins into smaller peptides. The cold-adapted proteases show higher …
Improving the catalytic activity of a detergent‐compatible serine protease by rational design
X Wang, X Qin, L Tong, J Zheng, T Dong… - Microbial …, 2023 - Wiley Online Library
Serine proteases are among the most important biological additives in various industries
such as detergents, leather, animal feed and food. A serine protease gene, Fgapt4, from …
such as detergents, leather, animal feed and food. A serine protease gene, Fgapt4, from …
Cold adaptation in bacteria with special focus on cellulase production and its potential application
Cold adapted bacteria undertake array of adaptive strategies and remain active with an
active temperature range of 0–40° C and activity in the acidic to neutral pH range (pH 4.5 …
active temperature range of 0–40° C and activity in the acidic to neutral pH range (pH 4.5 …
Biochemical Characterization and Functional Analysis of Heat Stable High Potential Protease of Bacillus amyloliquefaciens Strain HM48 from Soils of Dachigam …
A novel temperature stable alkaline protease yielding bacteria was isolated from the soils of
Dachigam National Park, which is known to be inhabited by a wide variety of endemic plant …
Dachigam National Park, which is known to be inhabited by a wide variety of endemic plant …
Industrial applications of cold-adapted enzymes: challenges, innovations and future perspective
Extreme cold environments are potential reservoirs of microorganisms producing unique
and novel enzymes in response to environmental stress conditions. Such cold-adapted …
and novel enzymes in response to environmental stress conditions. Such cold-adapted …
[HTML][HTML] Systematic functional analysis and potential application of a serine protease from cold-adapted Planococcus bacterium
W Leng, X Wu, X Qi, H Liu, L Yuan, R Gao - Food Science and Human …, 2023 - Elsevier
In this study, a gene encoding serine protease (PmSpr288) from cold-adapted bacterium,
namely Planococcus maritimus XJ11, was cloned and overexpressed in Escherichia coli …
namely Planococcus maritimus XJ11, was cloned and overexpressed in Escherichia coli …
An Updated review on production of food derived bioactive peptides; focus on the psychrotrophic bacterial proteases
H Ahangari, P Yazdani, V Ebrahimi… - Biocatalysis and …, 2021 - Elsevier
Psychrotrophs or psychrophiles are extremophilic microorganisms that have the maximum
temperature above 20° C for growth. Since around 70% of the earth's biosphere temperature …
temperature above 20° C for growth. Since around 70% of the earth's biosphere temperature …
Characteristics and biological mechanism of protein degradation by the black solider fly (Hermetia illucens L.) larvae gut strain Bacillus subtilis S4
B Gao, Y Ao, Z Zhao, Z Wang, C Yang, M Cai, C Yu - Food Chemistry, 2025 - Elsevier
The black solider fly larvae (BSFL) can efficiently convert nitrogen in organic waste into
insect protein. Bacillus subtilis S4, an efficient protein-degrading bacterium from the BSFL …
insect protein. Bacillus subtilis S4, an efficient protein-degrading bacterium from the BSFL …