<div><p>Yeast strain <i>Clavispora</i> NRRL Y-50464 is able to produce cellulosic ethanol from lignocellulosic materials without addition of external β-glucosidase by simultaneous saccharification and fermentation. A β-glucosidase BGL1 protein from this strain was recently reported supporting its cellobiose utilization capability. Here, we report two additional new β-glucosidase genes encoding enzymes designated as BGL2 and BGL3 from strain NRRL Y-50464. Quantitative gene expression was analyzed and the gene function of <i>BGL2</i> and <i>BGL3</i> was confirmed by heterologous expression using cellobiose as a sole carbon source. Each gene was cloned and partially purified protein obtained separately for direct enzyme assay using varied subs...
beta-Glucosidase genes of fungal origins were isolated and heterologously expressed in Saccharomyces...
Saccharomyces cerevisiae has been widely utilized as a platform microorganism for bioethanol produc...
Abstract Background The main technological impediment to widespread utilization of lignocellulose fo...
Yeast strain Clavispora NRRL Y-50464 is able to produce cellulosic ethanol from lignocellulosic mate...
<p>Specific activity of partially purified β-glucosidase BGL2 () and BGL3 (▲) from <i>Clavispora</i>...
<p>Comparison of cell growth on a medium containing 5% cellobiose and 100 μg/ml zeocin for strain <i...
<p>Specific activity of partially purified β-glucosidase BGL2 () and BGL3 (▲) from <i>Clavispora</i>...
Introduction. Ethanol is currently being produced mostly by fermentation of sugars obtained from com...
β-Glucosidase is an important enzyme for production of ethanol from lignocellulose. With hydrolytic ...
Production of biofuels from non-food-based materials, such as lignocellulose, provides a good altern...
BACKGROUND: Yarrowia lipolytica, one of the most widely studied "nonconventional" oleaginous yeast s...
Recently, cofermentation of cellobiose and xylose in yeasts has been reported. It is considered as o...
In recent years increasing attention has been devoted to the production of bioethanol from lignocell...
Abstract Background Cellulose, the most abundant biopolymer on earth, is an alternative for fossil f...
AbstractBackgroundβ-Glucosidases catalyze the hydrolysis of cellobiose and cellodextrins, releasing ...
beta-Glucosidase genes of fungal origins were isolated and heterologously expressed in Saccharomyces...
Saccharomyces cerevisiae has been widely utilized as a platform microorganism for bioethanol produc...
Abstract Background The main technological impediment to widespread utilization of lignocellulose fo...
Yeast strain Clavispora NRRL Y-50464 is able to produce cellulosic ethanol from lignocellulosic mate...
<p>Specific activity of partially purified β-glucosidase BGL2 () and BGL3 (▲) from <i>Clavispora</i>...
<p>Comparison of cell growth on a medium containing 5% cellobiose and 100 μg/ml zeocin for strain <i...
<p>Specific activity of partially purified β-glucosidase BGL2 () and BGL3 (▲) from <i>Clavispora</i>...
Introduction. Ethanol is currently being produced mostly by fermentation of sugars obtained from com...
β-Glucosidase is an important enzyme for production of ethanol from lignocellulose. With hydrolytic ...
Production of biofuels from non-food-based materials, such as lignocellulose, provides a good altern...
BACKGROUND: Yarrowia lipolytica, one of the most widely studied "nonconventional" oleaginous yeast s...
Recently, cofermentation of cellobiose and xylose in yeasts has been reported. It is considered as o...
In recent years increasing attention has been devoted to the production of bioethanol from lignocell...
Abstract Background Cellulose, the most abundant biopolymer on earth, is an alternative for fossil f...
AbstractBackgroundβ-Glucosidases catalyze the hydrolysis of cellobiose and cellodextrins, releasing ...
beta-Glucosidase genes of fungal origins were isolated and heterologously expressed in Saccharomyces...
Saccharomyces cerevisiae has been widely utilized as a platform microorganism for bioethanol produc...
Abstract Background The main technological impediment to widespread utilization of lignocellulose fo...