Javascript must be enabled to continue!
Functional metagenomics uncovers nitrile-hydrolysing enzymes in a coal metagenome
View through CrossRef
Introduction:
Nitriles are the most toxic compounds that can lead to serious human illness through inhalation and consumption due to environmental pollution. Nitrilases can highly degrade nitriles isolated from the natural ecosystem. In the current study, we focused on the discovery of novel nitrilases from a coal metagenome using
in silico
mining.
Methods:
Coal metagenomic DNA was isolated and sequenced on the Illumina platform. Quality reads were assembled using MEGAHIT, and statistics were checked using QUAST. Annotation was performed using the automated tool SqueezeMeta. The annotated amino acid sequences were mined for nitrilase from the unclassified organism. Sequence alignment and phylogenetic analyses were carried out using ClustalW and MEGA11. Conserved regions of the amino acid sequences were identified using InterProScan and NCBI-CDD servers. The physicochemical properties of the amino acids were measured using ExPASy’s ProtParam. Furthermore, NetSurfP was used for 2D structure prediction, while AlphaFold2 in Chimera X 1.4 was used for 3D structure prediction. To check the solvation of the predicted protein, a dynamic simulation was conducted on the WebGRO server. Ligands were extracted from the Protein Data Bank (PDB) for molecular docking upon active site prediction using the CASTp server.
Results and discussion:
In silico
mining of annotated metagenomic data revealed nitrilase from unclassified
Alphaproteobacteria
. By using the artificial intelligence program AlphaFold2, the 3D structure was predicted with a per-residue confidence statistic score of about 95.8%, and the stability of the predicted model was verified with molecular dynamics for a 100-ns simulation. Molecular docking analysis determined the binding affinity of a novel nitrilase with nitriles. The binding scores produced by the novel nitrilase were approximately similar to those of the other prokaryotic nitrilase crystal structures, with a deviation of ±0.5.
Title: Functional metagenomics uncovers nitrile-hydrolysing enzymes in a coal metagenome
Description:
Introduction:
Nitriles are the most toxic compounds that can lead to serious human illness through inhalation and consumption due to environmental pollution.
Nitrilases can highly degrade nitriles isolated from the natural ecosystem.
In the current study, we focused on the discovery of novel nitrilases from a coal metagenome using
in silico
mining.
Methods:
Coal metagenomic DNA was isolated and sequenced on the Illumina platform.
Quality reads were assembled using MEGAHIT, and statistics were checked using QUAST.
Annotation was performed using the automated tool SqueezeMeta.
The annotated amino acid sequences were mined for nitrilase from the unclassified organism.
Sequence alignment and phylogenetic analyses were carried out using ClustalW and MEGA11.
Conserved regions of the amino acid sequences were identified using InterProScan and NCBI-CDD servers.
The physicochemical properties of the amino acids were measured using ExPASy’s ProtParam.
Furthermore, NetSurfP was used for 2D structure prediction, while AlphaFold2 in Chimera X 1.
4 was used for 3D structure prediction.
To check the solvation of the predicted protein, a dynamic simulation was conducted on the WebGRO server.
Ligands were extracted from the Protein Data Bank (PDB) for molecular docking upon active site prediction using the CASTp server.
Results and discussion:
In silico
mining of annotated metagenomic data revealed nitrilase from unclassified
Alphaproteobacteria
.
By using the artificial intelligence program AlphaFold2, the 3D structure was predicted with a per-residue confidence statistic score of about 95.
8%, and the stability of the predicted model was verified with molecular dynamics for a 100-ns simulation.
Molecular docking analysis determined the binding affinity of a novel nitrilase with nitriles.
The binding scores produced by the novel nitrilase were approximately similar to those of the other prokaryotic nitrilase crystal structures, with a deviation of ±0.
5.
Related Results
Research on water immersion damage characteristics and equivalent width of coal pillar
Research on water immersion damage characteristics and equivalent width of coal pillar
Abstract
Affected by weakening effect of water in the goaf, the bearing capacity of coal pillar reduced, and coal pillar rock burst is prone to occur, which is a serious th...
The CO2 storage in coal seams at the influence of coal fines migration
The CO2 storage in coal seams at the influence of coal fines migration
Abstract: the pressure of the coal seam decays to a certain value due to the production of CH4, the production wells are switched to CO2 injection wells. The injection of CO2 can i...
Practical Aspects Of Coal Degasification
Practical Aspects Of Coal Degasification
Abstract
The increase in value of energy resources has generated serious interest in so-called "unconventional energy resource developments", Coal and coal gas re...
Adaption of Theoretical Adsorption Model on Coal: Physical Structure
Adaption of Theoretical Adsorption Model on Coal: Physical Structure
With the motivation to investigate the role of coal physical structure on the adsorption performance of coal reservoir, 18 different types of coal samples with different coal struc...
The development of the market of qualified coal fuels in Poland
The development of the market of qualified coal fuels in Poland
Abstract
The aim of this article is to discuss the changes that have been observed on the market of qualified coal fuels (the so-called eco-pea coal) over the last few years. T...
Coal and Coal Byproducts as Potential Sources of Rare Earth Elements (REE) in Indiana
Coal and Coal Byproducts as Potential Sources of Rare Earth Elements (REE) in Indiana
The purpose of this study is to evaluate coal and coal byproducts (coal waste, coal ash, and acid mine drainage) in Indiana as potential sources of rare earth elements (REE). On a ...
On determining coal classification indicators for establishing dangerous properties of mines
On determining coal classification indicators for establishing dangerous properties of mines
Currently, more than 20 qualification indicators are known by which degree of metamorphic coal transformations are established. Most of these indicators are designed for determinin...

