Purification and characterization of a highly efficient calcium-independent α-amylase from Talaromyces pinophilus 1-95.

Alpha-amylase is a very important enzyme in the starch conversion process. Most of the α-amylases are calcium-dependent and exhibit poor performance in the simultaneous saccharification and fermentation process of industrial bioethanol production that uses starch as feedstock. In this study, an extr...

Full description

Bibliographic Details
Main Authors: Liang Xian, Fei Wang, Xiang Luo, Yu-Liang Feng, Jia-Xun Feng
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4374950?pdf=render
id doaj-903baac153b84219ab84c0a70ed2a5fd
record_format Article
spelling doaj-903baac153b84219ab84c0a70ed2a5fd2020-11-25T01:35:58ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01103e012153110.1371/journal.pone.0121531Purification and characterization of a highly efficient calcium-independent α-amylase from Talaromyces pinophilus 1-95.Liang XianFei WangXiang LuoYu-Liang FengJia-Xun FengAlpha-amylase is a very important enzyme in the starch conversion process. Most of the α-amylases are calcium-dependent and exhibit poor performance in the simultaneous saccharification and fermentation process of industrial bioethanol production that uses starch as feedstock. In this study, an extracellular amylolytic enzyme was purified from the culture broth of newly isolated Talaromyces pinophilus strain 1-95. The purified amylolytic enzyme, with an apparent molecular weight of 58 kDa on SDS-PAGE, hydrolyzed maltopentaose, maltohexaose, and maltoheptaose into mainly maltose and maltotriose and minor amount of glucose, confirming the endo-acting mode of the enzyme, and hence, was named Talaromyces pinophilus α-amylase (TpAA). TpAA was most active at pH 4.0-5.0 (with the temperature held at 37°C) and 55°C (at pH 5.0), and stable within the pH range of 5.0-9.5 (at 4°C) and below 45°C (at pH 5.0). Interestingly, the Ca2+ did not improve its enzymatic activity, optimal temperature, or thermostability of the enzyme, indicating that the TpAA was Ca2+-independent. TpAA displayed higher enzyme activity toward malto-oligosaccharides and dextrin than other previously reported α-amylases. This highly active Ca2+-independent α-amylase may have potential applications in starch-to-ethanol conversion process.http://europepmc.org/articles/PMC4374950?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Liang Xian
Fei Wang
Xiang Luo
Yu-Liang Feng
Jia-Xun Feng
spellingShingle Liang Xian
Fei Wang
Xiang Luo
Yu-Liang Feng
Jia-Xun Feng
Purification and characterization of a highly efficient calcium-independent α-amylase from Talaromyces pinophilus 1-95.
PLoS ONE
author_facet Liang Xian
Fei Wang
Xiang Luo
Yu-Liang Feng
Jia-Xun Feng
author_sort Liang Xian
title Purification and characterization of a highly efficient calcium-independent α-amylase from Talaromyces pinophilus 1-95.
title_short Purification and characterization of a highly efficient calcium-independent α-amylase from Talaromyces pinophilus 1-95.
title_full Purification and characterization of a highly efficient calcium-independent α-amylase from Talaromyces pinophilus 1-95.
title_fullStr Purification and characterization of a highly efficient calcium-independent α-amylase from Talaromyces pinophilus 1-95.
title_full_unstemmed Purification and characterization of a highly efficient calcium-independent α-amylase from Talaromyces pinophilus 1-95.
title_sort purification and characterization of a highly efficient calcium-independent α-amylase from talaromyces pinophilus 1-95.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description Alpha-amylase is a very important enzyme in the starch conversion process. Most of the α-amylases are calcium-dependent and exhibit poor performance in the simultaneous saccharification and fermentation process of industrial bioethanol production that uses starch as feedstock. In this study, an extracellular amylolytic enzyme was purified from the culture broth of newly isolated Talaromyces pinophilus strain 1-95. The purified amylolytic enzyme, with an apparent molecular weight of 58 kDa on SDS-PAGE, hydrolyzed maltopentaose, maltohexaose, and maltoheptaose into mainly maltose and maltotriose and minor amount of glucose, confirming the endo-acting mode of the enzyme, and hence, was named Talaromyces pinophilus α-amylase (TpAA). TpAA was most active at pH 4.0-5.0 (with the temperature held at 37°C) and 55°C (at pH 5.0), and stable within the pH range of 5.0-9.5 (at 4°C) and below 45°C (at pH 5.0). Interestingly, the Ca2+ did not improve its enzymatic activity, optimal temperature, or thermostability of the enzyme, indicating that the TpAA was Ca2+-independent. TpAA displayed higher enzyme activity toward malto-oligosaccharides and dextrin than other previously reported α-amylases. This highly active Ca2+-independent α-amylase may have potential applications in starch-to-ethanol conversion process.
url http://europepmc.org/articles/PMC4374950?pdf=render
work_keys_str_mv AT liangxian purificationandcharacterizationofahighlyefficientcalciumindependentaamylasefromtalaromycespinophilus195
AT feiwang purificationandcharacterizationofahighlyefficientcalciumindependentaamylasefromtalaromycespinophilus195
AT xiangluo purificationandcharacterizationofahighlyefficientcalciumindependentaamylasefromtalaromycespinophilus195
AT yuliangfeng purificationandcharacterizationofahighlyefficientcalciumindependentaamylasefromtalaromycespinophilus195
AT jiaxunfeng purificationandcharacterizationofahighlyefficientcalciumindependentaamylasefromtalaromycespinophilus195
_version_ 1725065011278118912