Abstract Background Improving the hydrolytic performance of hemicellulases to degrade lignocellulosic biomass is of considerable importance for second-generation biorefinery. Xylanase, as the crucial hemicellulase, must be thermostable and have high activity for its potential use in the bioethanol industry. To obtain excellent xylanase candidates, it is necessary to understand the structure–function relationships to provide a meaningful reference to improve the enzyme properties. This study aimed to investigate the catalytic mechanism of a highly active hyperthermophilic xylanase variant, XYL10C-ΔN, for hemicellulose degradation. Results By removing the N-terminal 66 amino acids, the variant XYL10C-ΔN showed a 1.8-fold improvement in cataly...
The biotransformation of lignocellulose biomasses into fermentable sugars is a very complex procedur...
Abstract Background Xylanases have been widely employed in many industrial processes, and thermophil...
Biotechnologies that aim to produce renewable fuels, chemicals, and bioproducts from residual ligno(...
Abstract Background Cellulose and hemicellulose are the two largest components in lignocellulosic bi...
Additional file 1: Table S1. X-Ray data collection and structure refinement statistics. Table S2. Te...
Lignocellulosic biomass is the most abundantly available raw material in the world. Converting all m...
Lignocellulosic biomass is the most abundantly available raw material in the world. Converting all m...
Efficient heteroxylan degradation in the context of economically feasible lignocellulosic biomass bi...
Background: Improving the hydrolytic performance of hemicellulases on lignocellulosic biomass is of ...
Bifunctional glycoside hydrolases have potential for cost-savings in enzymatic decomposition of plan...
Background: Replacing fossil fuel with renewable sources such as lignocellulosic biomass is currentl...
Hemicellulolytic microorganisms play a significant role in nature by recycling hemicellulose, one of...
Abstract Xylanase with a high thermostability will satisfy the needs of raising the temperature of h...
Extremophilic xylanases have attracted great scientific and industrial interest. In this study, a GH...
The biotransformation of lignocellulose biomasses into fermentable sugars is a very complex procedur...
The biotransformation of lignocellulose biomasses into fermentable sugars is a very complex procedur...
Abstract Background Xylanases have been widely employed in many industrial processes, and thermophil...
Biotechnologies that aim to produce renewable fuels, chemicals, and bioproducts from residual ligno(...
Abstract Background Cellulose and hemicellulose are the two largest components in lignocellulosic bi...
Additional file 1: Table S1. X-Ray data collection and structure refinement statistics. Table S2. Te...
Lignocellulosic biomass is the most abundantly available raw material in the world. Converting all m...
Lignocellulosic biomass is the most abundantly available raw material in the world. Converting all m...
Efficient heteroxylan degradation in the context of economically feasible lignocellulosic biomass bi...
Background: Improving the hydrolytic performance of hemicellulases on lignocellulosic biomass is of ...
Bifunctional glycoside hydrolases have potential for cost-savings in enzymatic decomposition of plan...
Background: Replacing fossil fuel with renewable sources such as lignocellulosic biomass is currentl...
Hemicellulolytic microorganisms play a significant role in nature by recycling hemicellulose, one of...
Abstract Xylanase with a high thermostability will satisfy the needs of raising the temperature of h...
Extremophilic xylanases have attracted great scientific and industrial interest. In this study, a GH...
The biotransformation of lignocellulose biomasses into fermentable sugars is a very complex procedur...
The biotransformation of lignocellulose biomasses into fermentable sugars is a very complex procedur...
Abstract Background Xylanases have been widely employed in many industrial processes, and thermophil...
Biotechnologies that aim to produce renewable fuels, chemicals, and bioproducts from residual ligno(...