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Stomach Chitinase from Japanese Sardine Sardinops melanostictus: Purification, Characterization, and Molecular Cloning of Chitinase Isozymes with a Long Linker

Fish express two different chitinases, acidic fish chitinase-1 (AFCase-1) and acidic fish chitinase-2 (AFCase-2), in the stomach. AFCase-1 and AFCase-2 have different degradation patterns, as fish efficiently degrade chitin ingested as food. For a comparison with the enzymatic properties and the pri...

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Autores principales: Kawashima, Satoshi, Ikehata, Hiroki, Tada, Chihiro, Ogino, Tomohiro, Kakizaki, Hiromi, Ikeda, Mana, Fukushima, Hideto, Matsumiya, Masahiro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4728518/
https://www.ncbi.nlm.nih.gov/pubmed/26805857
http://dx.doi.org/10.3390/md14010022
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author Kawashima, Satoshi
Ikehata, Hiroki
Tada, Chihiro
Ogino, Tomohiro
Kakizaki, Hiromi
Ikeda, Mana
Fukushima, Hideto
Matsumiya, Masahiro
author_facet Kawashima, Satoshi
Ikehata, Hiroki
Tada, Chihiro
Ogino, Tomohiro
Kakizaki, Hiromi
Ikeda, Mana
Fukushima, Hideto
Matsumiya, Masahiro
author_sort Kawashima, Satoshi
collection PubMed
description Fish express two different chitinases, acidic fish chitinase-1 (AFCase-1) and acidic fish chitinase-2 (AFCase-2), in the stomach. AFCase-1 and AFCase-2 have different degradation patterns, as fish efficiently degrade chitin ingested as food. For a comparison with the enzymatic properties and the primary structures of chitinase isozymes obtained previously from the stomach of demersal fish, in this study, we purified chitinase isozymes from the stomach of Japanese sardine Sardinops melanostictus, a surface fish that feeds on plankton, characterized the properties of these isozymes, and cloned the cDNAs encoding chitinases. We also predicted 3D structure models using the primary structures of S. melanostictus stomach chitinases. Two chitinase isozymes, SmeChiA (45 kDa) and SmeChiB (56 kDa), were purified from the stomach of S. melanostictus. Moreover, two cDNAs, SmeChi-1 encoding SmeChiA, and SmeChi-2 encoding SmeChiB were cloned. The linker regions of the deduced amino acid sequences of SmeChi-1 and SmeChi-2 (SmeChi-1 and SmeChi-2) are the longest among the fish stomach chitinases. In the cleavage pattern groups toward short substrates and the phylogenetic tree analysis, SmeChi-1 and SmeChi-2 were classified into AFCase-1 and AFCase-2, respectively. SmeChi-1 and SmeChi-2 had catalytic domains that consisted of a TIM-barrel (β/α)(8)–fold structure and a deep substrate-binding cleft. This is the first study showing the 3D structure models of fish stomach chitinases.
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spelling pubmed-47285182016-02-08 Stomach Chitinase from Japanese Sardine Sardinops melanostictus: Purification, Characterization, and Molecular Cloning of Chitinase Isozymes with a Long Linker Kawashima, Satoshi Ikehata, Hiroki Tada, Chihiro Ogino, Tomohiro Kakizaki, Hiromi Ikeda, Mana Fukushima, Hideto Matsumiya, Masahiro Mar Drugs Article Fish express two different chitinases, acidic fish chitinase-1 (AFCase-1) and acidic fish chitinase-2 (AFCase-2), in the stomach. AFCase-1 and AFCase-2 have different degradation patterns, as fish efficiently degrade chitin ingested as food. For a comparison with the enzymatic properties and the primary structures of chitinase isozymes obtained previously from the stomach of demersal fish, in this study, we purified chitinase isozymes from the stomach of Japanese sardine Sardinops melanostictus, a surface fish that feeds on plankton, characterized the properties of these isozymes, and cloned the cDNAs encoding chitinases. We also predicted 3D structure models using the primary structures of S. melanostictus stomach chitinases. Two chitinase isozymes, SmeChiA (45 kDa) and SmeChiB (56 kDa), were purified from the stomach of S. melanostictus. Moreover, two cDNAs, SmeChi-1 encoding SmeChiA, and SmeChi-2 encoding SmeChiB were cloned. The linker regions of the deduced amino acid sequences of SmeChi-1 and SmeChi-2 (SmeChi-1 and SmeChi-2) are the longest among the fish stomach chitinases. In the cleavage pattern groups toward short substrates and the phylogenetic tree analysis, SmeChi-1 and SmeChi-2 were classified into AFCase-1 and AFCase-2, respectively. SmeChi-1 and SmeChi-2 had catalytic domains that consisted of a TIM-barrel (β/α)(8)–fold structure and a deep substrate-binding cleft. This is the first study showing the 3D structure models of fish stomach chitinases. MDPI 2016-01-20 /pmc/articles/PMC4728518/ /pubmed/26805857 http://dx.doi.org/10.3390/md14010022 Text en © 2016 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons by Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kawashima, Satoshi
Ikehata, Hiroki
Tada, Chihiro
Ogino, Tomohiro
Kakizaki, Hiromi
Ikeda, Mana
Fukushima, Hideto
Matsumiya, Masahiro
Stomach Chitinase from Japanese Sardine Sardinops melanostictus: Purification, Characterization, and Molecular Cloning of Chitinase Isozymes with a Long Linker
title Stomach Chitinase from Japanese Sardine Sardinops melanostictus: Purification, Characterization, and Molecular Cloning of Chitinase Isozymes with a Long Linker
title_full Stomach Chitinase from Japanese Sardine Sardinops melanostictus: Purification, Characterization, and Molecular Cloning of Chitinase Isozymes with a Long Linker
title_fullStr Stomach Chitinase from Japanese Sardine Sardinops melanostictus: Purification, Characterization, and Molecular Cloning of Chitinase Isozymes with a Long Linker
title_full_unstemmed Stomach Chitinase from Japanese Sardine Sardinops melanostictus: Purification, Characterization, and Molecular Cloning of Chitinase Isozymes with a Long Linker
title_short Stomach Chitinase from Japanese Sardine Sardinops melanostictus: Purification, Characterization, and Molecular Cloning of Chitinase Isozymes with a Long Linker
title_sort stomach chitinase from japanese sardine sardinops melanostictus: purification, characterization, and molecular cloning of chitinase isozymes with a long linker
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4728518/
https://www.ncbi.nlm.nih.gov/pubmed/26805857
http://dx.doi.org/10.3390/md14010022
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