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Protein modelling of triterpene synthase genes from mangrove plants using Phyre2 and Swiss-model

Authors :
R Wati
Sumardi
Shigeyuki Baba
Hiroshi Sagami
N Sulistiyono
R. Hayati
Mohammad Basyuni
Hirosuke Oku
Source :
Journal of Physics: Conference Series. 978:012095
Publication Year :
2018
Publisher :
IOP Publishing, 2018.

Abstract

Molecular cloning of five oxidosqualene cyclases (OSC) genes from Bruguiera gymnorrhiza, Kandelia candel, and Rhizophora stylosa had previously been cloned, characterized, and encoded mono and -multi triterpene synthases. The present study analyzed protein modelling of triterpene synthase genes from mangrove using Phyre2 and Swiss-model. The diversity was noted within protein modelling of triterpene synthases using Phyre2 from sequence identity (38-43%) and residue (696-703). RsM2 was distinguishable from others for template structure; it used lanosterol synthase as a template (PDB ID: w6j.1.A). By contrast, other genes used human lanosterol synthase (1w6k.1.A). The predicted bind sites were correlated with the product of triterpene synthase, the product of BgbAS was β-amyrin, while RsM1 contained a significant amount of β-amyrin. Similarly BgLUS and KcMS, both main products was lupeol, on the other hand, RsM2 with the outcome of taraxerol. Homology modelling revealed that 696 residues of BgbAS, BgLUS, RsM1, and RsM2 (91-92% of the amino acid sequence) had been modelled with 100% confidence by the single highest scoring template using Phyre2. This coverage was higher than Swiss-model (85-90%). The present study suggested that molecular cloning of triterpene genes provides useful tools for studying the protein modelling related regulation of isoprenoids biosynthesis in mangrove forests.

Details

ISSN :
17426596 and 17426588
Volume :
978
Database :
OpenAIRE
Journal :
Journal of Physics: Conference Series
Accession number :
edsair.doi...........cc425183260fd8f0b13fc80c56e4384a
Full Text :
https://doi.org/10.1088/1742-6596/978/1/012095