Abstract

Enzymes from psychrophiles catalyze the reactions at low temperatures with higher specific activity. Among all the psychrophilic enzymes produced, cold active β-galactosidase from marine psychrophiles revalorizes a new arena in numerous areas at industrial level. The hydrolysis of lactose in to glucose and galactose by cold active β-galactosidase offers a new promising approach in removal of lactose from milk to overcome the problem of lactose intolerance. Herein we propose, a 3D structure of cold active β-galactosidase enzyme sourced from Pseudoalteromonas haloplanktis by using Modeler 9v8 and best model was developed having 88% of favourable region in ramachandran plot. Modelling was followed by docking studies with the help of Auto dock 4.0 against the three substrates lactose, ONPG and PNPG. In addition, comparative docking studies were also performed for the 3D model of psychrophilic β-galactosidase with mesophilic and thermophilic enzymes. Docking studies revealed that binding affinity of enzyme towards the three different substrates is more for psychrophilic enzyme when compared with mesophilic and thermophilic enzymes. It indicates that the enzyme has high specific activity at low temperature when compared with mesophilic and thermophilic enzymes.

Highlights

  • Enzymes from Extremophiles can be used extensively at industrial scale due to their defying nature at various robust processing conditions

  • The present study is mainly focused on constructing a new 3D model of cold active β-Galactosidase enzyme from psychrophile by computational approach which can be used in comparing the relative affinities of enzyme towards different substrates by comparative docking studies against to its counter parts of mesophilic and thermophilic enzymes

  • From molecular Docking studies it was observed that the modeled enzyme has good affinity towards substrates like lactose, ONPG and para nitro phenyl-β-D-Galactopyranoside (PNPG) when compared with mesophilic and thermophilic counterparts

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Summary

Introduction

Enzymes from Extremophiles can be used extensively at industrial scale due to their defying nature at various robust processing conditions. The present study is mainly focused on constructing a new 3D model of cold active β-Galactosidase enzyme from psychrophile by computational approach which can be used in comparing the relative affinities of enzyme towards different substrates (lactose, ONPG and PNPG) by comparative docking studies against to its counter parts of mesophilic and thermophilic enzymes.

Results
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