Consumption of long-chain omega-3 fatty acids is known to decrease the risk of major cardiovascular events. Lipases, a class of triacylglycerol hydrolases, have been extensively tested to concentrate omega-3 fatty acids from fish oils, under mild enzymatic conditions. However, no lipases with preference for omega-3 fatty acids selectivity have yet been discovered or developed. In this study we performed an exhaustive computational study of substrate-lipase interactions by docking, both covalent and non-covalent, for 38 lipases with a large number of structured triacylglycerols containing omega-3 fatty acids. We identified some lipases that have potential to preferentially hydrolyze omega-3 fatty acids from structured triacylglycerols. Howev...
Elucidation of lipase–substrate interactions will guide the proper industrial use and applicability ...
This thesis focused on the use of enzyme "lipase" rather than chemicals to produce concent...
Contact: villeneuve@cirad.frInternational audienceLipases (triacylglycerol ester hydrolases, EC 3.1....
Enrichment of omega-3 fatty acids (ɷ-3 FAs) in natural oils is important to realize their health ben...
Omega fatty acids are recognized as key nutrients for healthier ageing. Lipases are used to release ...
Lipases have applications for the industrial processing of lipids, including concentrating and...
The fatty acid specificity of five lipases towards eicosapentaenoic acid (EPA) and docosahexaenoic a...
Lipases with different structures were investigated for their catalytic ability to hydrolyse sunflow...
One of the indispensable applications of lipases in modification of oils and fats is the possibility...
Several lipases from microbial and plant, i.e Rhizomucor miehei, Pseudomonas sp., Candida antartica,...
Docosahexaenoic acid (DHA) and eicosapentaenoic acid (EPA) are omega-3 fatty acids, which have healt...
In this article, a survey of recent lipase research, with special emphasis on molecular structure-fu...
peer reviewedDue to their kinetic and substrate specificities, triacylglycerol acyl-hydrolases or li...
A novel three-liquid-phase system which contained fish oil as the nonpolar phase was developed for t...
Lipases belong to the α/β-hydrolase fold family and naturally catalyze the hydrolysis of fats and oi...
Elucidation of lipase–substrate interactions will guide the proper industrial use and applicability ...
This thesis focused on the use of enzyme "lipase" rather than chemicals to produce concent...
Contact: villeneuve@cirad.frInternational audienceLipases (triacylglycerol ester hydrolases, EC 3.1....
Enrichment of omega-3 fatty acids (ɷ-3 FAs) in natural oils is important to realize their health ben...
Omega fatty acids are recognized as key nutrients for healthier ageing. Lipases are used to release ...
Lipases have applications for the industrial processing of lipids, including concentrating and...
The fatty acid specificity of five lipases towards eicosapentaenoic acid (EPA) and docosahexaenoic a...
Lipases with different structures were investigated for their catalytic ability to hydrolyse sunflow...
One of the indispensable applications of lipases in modification of oils and fats is the possibility...
Several lipases from microbial and plant, i.e Rhizomucor miehei, Pseudomonas sp., Candida antartica,...
Docosahexaenoic acid (DHA) and eicosapentaenoic acid (EPA) are omega-3 fatty acids, which have healt...
In this article, a survey of recent lipase research, with special emphasis on molecular structure-fu...
peer reviewedDue to their kinetic and substrate specificities, triacylglycerol acyl-hydrolases or li...
A novel three-liquid-phase system which contained fish oil as the nonpolar phase was developed for t...
Lipases belong to the α/β-hydrolase fold family and naturally catalyze the hydrolysis of fats and oi...
Elucidation of lipase–substrate interactions will guide the proper industrial use and applicability ...
This thesis focused on the use of enzyme "lipase" rather than chemicals to produce concent...
Contact: villeneuve@cirad.frInternational audienceLipases (triacylglycerol ester hydrolases, EC 3.1....