Squalene Cyclases and Cycloartenol Synthases from Polystichum polyblepharum and Six Allied Ferns
Ferns are the most primitive of all vascular plants. One of the characteristics distinguishing them from flowering plants is its triterpene metabolism. Most cyclic triterpenes in ferns are hydrocarbons derived from the direct cyclization of squalene by squalene cyclases (SCs). Both ferns and more co...
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doaj-0782c43b8203491e92f2a5f457ff7e202020-11-24T23:42:44ZengMDPI AGMolecules1420-30492018-07-01238184310.3390/molecules23081843molecules23081843Squalene Cyclases and Cycloartenol Synthases from Polystichum polyblepharum and Six Allied FernsJunichi Shinozaki0Takahisa Nakene1Akihito Takano2Faculty of Pharmaceutical Sciences, Showa Pharmaceutical University, Machida, Tokyo 194-8543, JapanFaculty of Pharmaceutical Sciences, Showa Pharmaceutical University, Machida, Tokyo 194-8543, JapanFaculty of Pharmaceutical Sciences, Showa Pharmaceutical University, Machida, Tokyo 194-8543, JapanFerns are the most primitive of all vascular plants. One of the characteristics distinguishing them from flowering plants is its triterpene metabolism. Most cyclic triterpenes in ferns are hydrocarbons derived from the direct cyclization of squalene by squalene cyclases (SCs). Both ferns and more complex plants share sterols and biosynthetic enzymes, such as cycloartenol synthases (CASs). Polystichum belongs to Dryopteridaceae, and is one of the most species-rich of all fern genera. Several Polystichum ferns in Japan are classified as one of three possible chemotypes, based on their triterpene profiles. In this study, we describe the molecular cloning and functional characterization of cDNAs encoding a SC (PPH) and a CAS (PPX) from the type species Polystichum polyblepharum. Heterologous expression in Pichia pastoris revealed that PPH and PPX are hydroxyhopane synthase and CAS, respectively. By using the PPH and PPX sequences, we successfully isolated SC- and CAS-encoding cDNAs from six Polystichum ferns. Phylogenetic analysis, based on SCs and oxidosqualene cyclase sequences, suggested that the Polystichum subclade in the fern SC and CAS clades reflects the chemotype—but not the molecular phylogeny constructed using plastid molecular markers. These results show a possible relation between triterpenes and their biosynthetic enzymes in Polystichum.http://www.mdpi.com/1420-3049/23/8/1843squalene cyclasecycloartenol synthasetriterpenefernPolystichum |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Junichi Shinozaki Takahisa Nakene Akihito Takano |
spellingShingle |
Junichi Shinozaki Takahisa Nakene Akihito Takano Squalene Cyclases and Cycloartenol Synthases from Polystichum polyblepharum and Six Allied Ferns Molecules squalene cyclase cycloartenol synthase triterpene fern Polystichum |
author_facet |
Junichi Shinozaki Takahisa Nakene Akihito Takano |
author_sort |
Junichi Shinozaki |
title |
Squalene Cyclases and Cycloartenol Synthases from Polystichum polyblepharum and Six Allied Ferns |
title_short |
Squalene Cyclases and Cycloartenol Synthases from Polystichum polyblepharum and Six Allied Ferns |
title_full |
Squalene Cyclases and Cycloartenol Synthases from Polystichum polyblepharum and Six Allied Ferns |
title_fullStr |
Squalene Cyclases and Cycloartenol Synthases from Polystichum polyblepharum and Six Allied Ferns |
title_full_unstemmed |
Squalene Cyclases and Cycloartenol Synthases from Polystichum polyblepharum and Six Allied Ferns |
title_sort |
squalene cyclases and cycloartenol synthases from polystichum polyblepharum and six allied ferns |
publisher |
MDPI AG |
series |
Molecules |
issn |
1420-3049 |
publishDate |
2018-07-01 |
description |
Ferns are the most primitive of all vascular plants. One of the characteristics distinguishing them from flowering plants is its triterpene metabolism. Most cyclic triterpenes in ferns are hydrocarbons derived from the direct cyclization of squalene by squalene cyclases (SCs). Both ferns and more complex plants share sterols and biosynthetic enzymes, such as cycloartenol synthases (CASs). Polystichum belongs to Dryopteridaceae, and is one of the most species-rich of all fern genera. Several Polystichum ferns in Japan are classified as one of three possible chemotypes, based on their triterpene profiles. In this study, we describe the molecular cloning and functional characterization of cDNAs encoding a SC (PPH) and a CAS (PPX) from the type species Polystichum polyblepharum. Heterologous expression in Pichia pastoris revealed that PPH and PPX are hydroxyhopane synthase and CAS, respectively. By using the PPH and PPX sequences, we successfully isolated SC- and CAS-encoding cDNAs from six Polystichum ferns. Phylogenetic analysis, based on SCs and oxidosqualene cyclase sequences, suggested that the Polystichum subclade in the fern SC and CAS clades reflects the chemotype—but not the molecular phylogeny constructed using plastid molecular markers. These results show a possible relation between triterpenes and their biosynthetic enzymes in Polystichum. |
topic |
squalene cyclase cycloartenol synthase triterpene fern Polystichum |
url |
http://www.mdpi.com/1420-3049/23/8/1843 |
work_keys_str_mv |
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