Identification and Characterization of a 25 kDa Protein That Is Indispensable for the Efficient Saccharification of Eisenia bicyclis in the Digestive Fluid of Aplysia kurodai.

The digestive fluid of the sea hare Aplysia kurodai can liberate approximately 2.5 mg of glucose from 10 mg of dried Eisenia bicyclis powder. Although laminaran, a major storage polysaccharide in E. bicyclis, is easily digested to glucose by the synergistic action of the 110 and 210 kDa A. kurodai β...

Full description

Bibliographic Details
Main Authors: Akihiko Tsuji, Shuji Kuwamura, Akihiro Shirai, Keizo Yuasa
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5271319?pdf=render
id doaj-703e006c0e984968bba0ae894f507e6e
record_format Article
spelling doaj-703e006c0e984968bba0ae894f507e6e2020-11-24T22:03:19ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01121e017066910.1371/journal.pone.0170669Identification and Characterization of a 25 kDa Protein That Is Indispensable for the Efficient Saccharification of Eisenia bicyclis in the Digestive Fluid of Aplysia kurodai.Akihiko TsujiShuji KuwamuraAkihiro ShiraiKeizo YuasaThe digestive fluid of the sea hare Aplysia kurodai can liberate approximately 2.5 mg of glucose from 10 mg of dried Eisenia bicyclis powder. Although laminaran, a major storage polysaccharide in E. bicyclis, is easily digested to glucose by the synergistic action of the 110 and 210 kDa A. kurodai β-glucosidases (BGLs), glucose is not liberated from E. bicyclis by direct incubation with these BGLs. To clarify this discrepancy, we searched for an Eisenia hydrolysis enhancing protein (EHEP) in the digestive fluid of A. kurodai. A novel 25 kDa protein that enhances E. bicyclis saccharification by β-glucosidases was purified to a homogeneous state from the digestive fluid of A. kurodai, and its cDNA was cloned from total cDNAs reverse-transcribed from hepatopancreas total RNA. The E. bicyclis extract strongly inhibited BGLs, suggesting some compound within this brown alga functioned as a feeding deterrent. However, when E. bicyclis was incubated with BGLs in the presence of EHEP, glucose production was markedly increased. As E. bicyclis is rich in phlorotannin, which are only found in brown algae, our study suggested that these compounds are the main BGL inhibitors in E. bicyclis extract. EHEP protects BGLs from phlorotannin inhibition by binding to phlorotannins and forming an insoluble complex with phloroglucinol and phlorotannins. These findings indicated that EHEP plays a key role in the saccharification of brown seaweeds containing phlorotannins in the digestive fluid of A. kurodai. This is the first report of EHEP as a phlorotannin-binding protein that protects BGLs from inhibition.http://europepmc.org/articles/PMC5271319?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Akihiko Tsuji
Shuji Kuwamura
Akihiro Shirai
Keizo Yuasa
spellingShingle Akihiko Tsuji
Shuji Kuwamura
Akihiro Shirai
Keizo Yuasa
Identification and Characterization of a 25 kDa Protein That Is Indispensable for the Efficient Saccharification of Eisenia bicyclis in the Digestive Fluid of Aplysia kurodai.
PLoS ONE
author_facet Akihiko Tsuji
Shuji Kuwamura
Akihiro Shirai
Keizo Yuasa
author_sort Akihiko Tsuji
title Identification and Characterization of a 25 kDa Protein That Is Indispensable for the Efficient Saccharification of Eisenia bicyclis in the Digestive Fluid of Aplysia kurodai.
title_short Identification and Characterization of a 25 kDa Protein That Is Indispensable for the Efficient Saccharification of Eisenia bicyclis in the Digestive Fluid of Aplysia kurodai.
title_full Identification and Characterization of a 25 kDa Protein That Is Indispensable for the Efficient Saccharification of Eisenia bicyclis in the Digestive Fluid of Aplysia kurodai.
title_fullStr Identification and Characterization of a 25 kDa Protein That Is Indispensable for the Efficient Saccharification of Eisenia bicyclis in the Digestive Fluid of Aplysia kurodai.
title_full_unstemmed Identification and Characterization of a 25 kDa Protein That Is Indispensable for the Efficient Saccharification of Eisenia bicyclis in the Digestive Fluid of Aplysia kurodai.
title_sort identification and characterization of a 25 kda protein that is indispensable for the efficient saccharification of eisenia bicyclis in the digestive fluid of aplysia kurodai.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description The digestive fluid of the sea hare Aplysia kurodai can liberate approximately 2.5 mg of glucose from 10 mg of dried Eisenia bicyclis powder. Although laminaran, a major storage polysaccharide in E. bicyclis, is easily digested to glucose by the synergistic action of the 110 and 210 kDa A. kurodai β-glucosidases (BGLs), glucose is not liberated from E. bicyclis by direct incubation with these BGLs. To clarify this discrepancy, we searched for an Eisenia hydrolysis enhancing protein (EHEP) in the digestive fluid of A. kurodai. A novel 25 kDa protein that enhances E. bicyclis saccharification by β-glucosidases was purified to a homogeneous state from the digestive fluid of A. kurodai, and its cDNA was cloned from total cDNAs reverse-transcribed from hepatopancreas total RNA. The E. bicyclis extract strongly inhibited BGLs, suggesting some compound within this brown alga functioned as a feeding deterrent. However, when E. bicyclis was incubated with BGLs in the presence of EHEP, glucose production was markedly increased. As E. bicyclis is rich in phlorotannin, which are only found in brown algae, our study suggested that these compounds are the main BGL inhibitors in E. bicyclis extract. EHEP protects BGLs from phlorotannin inhibition by binding to phlorotannins and forming an insoluble complex with phloroglucinol and phlorotannins. These findings indicated that EHEP plays a key role in the saccharification of brown seaweeds containing phlorotannins in the digestive fluid of A. kurodai. This is the first report of EHEP as a phlorotannin-binding protein that protects BGLs from inhibition.
url http://europepmc.org/articles/PMC5271319?pdf=render
work_keys_str_mv AT akihikotsuji identificationandcharacterizationofa25kdaproteinthatisindispensablefortheefficientsaccharificationofeiseniabicyclisinthedigestivefluidofaplysiakurodai
AT shujikuwamura identificationandcharacterizationofa25kdaproteinthatisindispensablefortheefficientsaccharificationofeiseniabicyclisinthedigestivefluidofaplysiakurodai
AT akihiroshirai identificationandcharacterizationofa25kdaproteinthatisindispensablefortheefficientsaccharificationofeiseniabicyclisinthedigestivefluidofaplysiakurodai
AT keizoyuasa identificationandcharacterizationofa25kdaproteinthatisindispensablefortheefficientsaccharificationofeiseniabicyclisinthedigestivefluidofaplysiakurodai
_version_ 1725832104369979392