Analysis of Comparative Sequence and Genomic Data to Verify Phylogenetic Relationship and Explore a New Subfamily of Bacterial Lipases.

Thermostable and organic solvent-tolerant enzymes have significant potential in a wide range of synthetic reactions in industry due to their inherent stability at high temperatures and their ability to endure harsh organic solvents. In this study, a novel gene encoding a true lipase was isolated by...

Full description

Bibliographic Details
Main Authors: Malihe Masomian, Raja Noor Zaliha Raja Abd Rahman, Abu Bakar Salleh, Mahiran Basri
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4774917?pdf=render
id doaj-50a0e88de59949178cfc45c9ac812e22
record_format Article
spelling doaj-50a0e88de59949178cfc45c9ac812e222020-11-24T21:39:33ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-01113e014985110.1371/journal.pone.0149851Analysis of Comparative Sequence and Genomic Data to Verify Phylogenetic Relationship and Explore a New Subfamily of Bacterial Lipases.Malihe MasomianRaja Noor Zaliha Raja Abd RahmanAbu Bakar SallehMahiran BasriThermostable and organic solvent-tolerant enzymes have significant potential in a wide range of synthetic reactions in industry due to their inherent stability at high temperatures and their ability to endure harsh organic solvents. In this study, a novel gene encoding a true lipase was isolated by construction of a genomic DNA library of thermophilic Aneurinibacillus thermoaerophilus strain HZ into Escherichia coli plasmid vector. Sequence analysis revealed that HZ lipase had 62% identity to putative lipase from Bacillus pseudomycoides. The closely characterized lipases to the HZ lipase gene are from thermostable Bacillus and Geobacillus lipases belonging to the subfamily I.5 with ≤ 57% identity. The amino acid sequence analysis of HZ lipase determined a conserved pentapeptide containing the active serine, GHSMG and a Ca(2+)-binding motif, GCYGSD in the enzyme. Protein structure modeling showed that HZ lipase consisted of an α/β hydrolase fold and a lid domain. Protein sequence alignment, conserved regions analysis, clustal distance matrix and amino acid composition illustrated differences between HZ lipase and other thermostable lipases. Phylogenetic analysis revealed that this lipase represented a new subfamily of family I of bacterial true lipases, classified as family I.9. The HZ lipase was expressed under promoter Plac using IPTG and was characterized. The recombinant enzyme showed optimal activity at 65 °C and retained ≥ 97% activity after incubation at 50 °C for 1h. The HZ lipase was stable in various polar and non-polar organic solvents.http://europepmc.org/articles/PMC4774917?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Malihe Masomian
Raja Noor Zaliha Raja Abd Rahman
Abu Bakar Salleh
Mahiran Basri
spellingShingle Malihe Masomian
Raja Noor Zaliha Raja Abd Rahman
Abu Bakar Salleh
Mahiran Basri
Analysis of Comparative Sequence and Genomic Data to Verify Phylogenetic Relationship and Explore a New Subfamily of Bacterial Lipases.
PLoS ONE
author_facet Malihe Masomian
Raja Noor Zaliha Raja Abd Rahman
Abu Bakar Salleh
Mahiran Basri
author_sort Malihe Masomian
title Analysis of Comparative Sequence and Genomic Data to Verify Phylogenetic Relationship and Explore a New Subfamily of Bacterial Lipases.
title_short Analysis of Comparative Sequence and Genomic Data to Verify Phylogenetic Relationship and Explore a New Subfamily of Bacterial Lipases.
title_full Analysis of Comparative Sequence and Genomic Data to Verify Phylogenetic Relationship and Explore a New Subfamily of Bacterial Lipases.
title_fullStr Analysis of Comparative Sequence and Genomic Data to Verify Phylogenetic Relationship and Explore a New Subfamily of Bacterial Lipases.
title_full_unstemmed Analysis of Comparative Sequence and Genomic Data to Verify Phylogenetic Relationship and Explore a New Subfamily of Bacterial Lipases.
title_sort analysis of comparative sequence and genomic data to verify phylogenetic relationship and explore a new subfamily of bacterial lipases.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2016-01-01
description Thermostable and organic solvent-tolerant enzymes have significant potential in a wide range of synthetic reactions in industry due to their inherent stability at high temperatures and their ability to endure harsh organic solvents. In this study, a novel gene encoding a true lipase was isolated by construction of a genomic DNA library of thermophilic Aneurinibacillus thermoaerophilus strain HZ into Escherichia coli plasmid vector. Sequence analysis revealed that HZ lipase had 62% identity to putative lipase from Bacillus pseudomycoides. The closely characterized lipases to the HZ lipase gene are from thermostable Bacillus and Geobacillus lipases belonging to the subfamily I.5 with ≤ 57% identity. The amino acid sequence analysis of HZ lipase determined a conserved pentapeptide containing the active serine, GHSMG and a Ca(2+)-binding motif, GCYGSD in the enzyme. Protein structure modeling showed that HZ lipase consisted of an α/β hydrolase fold and a lid domain. Protein sequence alignment, conserved regions analysis, clustal distance matrix and amino acid composition illustrated differences between HZ lipase and other thermostable lipases. Phylogenetic analysis revealed that this lipase represented a new subfamily of family I of bacterial true lipases, classified as family I.9. The HZ lipase was expressed under promoter Plac using IPTG and was characterized. The recombinant enzyme showed optimal activity at 65 °C and retained ≥ 97% activity after incubation at 50 °C for 1h. The HZ lipase was stable in various polar and non-polar organic solvents.
url http://europepmc.org/articles/PMC4774917?pdf=render
work_keys_str_mv AT malihemasomian analysisofcomparativesequenceandgenomicdatatoverifyphylogeneticrelationshipandexploreanewsubfamilyofbacteriallipases
AT rajanoorzaliharajaabdrahman analysisofcomparativesequenceandgenomicdatatoverifyphylogeneticrelationshipandexploreanewsubfamilyofbacteriallipases
AT abubakarsalleh analysisofcomparativesequenceandgenomicdatatoverifyphylogeneticrelationshipandexploreanewsubfamilyofbacteriallipases
AT mahiranbasri analysisofcomparativesequenceandgenomicdatatoverifyphylogeneticrelationshipandexploreanewsubfamilyofbacteriallipases
_version_ 1725930616043601920