Disulfide linkages in Plasmodium falciparum plasmepsin-i are essential elements for its processing activity and multi-milligram recombinant production yield.

Plasmodium falciparum plasmepsin-I (PM-I) has been considered a potential drug target for the parasite that causes fatal malaria in human. Determination of PM-I structures for rational design of its inhibitors is hindered by the difficulty in obtaining large quantity of soluble enzyme. Nearly all at...

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Main Authors: Sirisak Lolupiman, Pilaiwan Siripurkpong, Jirundon Yuvaniyama
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3930733?pdf=render
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spelling doaj-dfd3396d7d574d0e902cbd9a61daa6322020-11-25T00:12:40ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0192e8942410.1371/journal.pone.0089424Disulfide linkages in Plasmodium falciparum plasmepsin-i are essential elements for its processing activity and multi-milligram recombinant production yield.Sirisak LolupimanPilaiwan SiripurkpongJirundon YuvaniyamaPlasmodium falciparum plasmepsin-I (PM-I) has been considered a potential drug target for the parasite that causes fatal malaria in human. Determination of PM-I structures for rational design of its inhibitors is hindered by the difficulty in obtaining large quantity of soluble enzyme. Nearly all attempts for its heterologous expression in Escherichia coli result in the production of insoluble proteins in both semi-pro-PM-I and its truncated form, and thus require protein refolding. Moreover, the yields of purified, soluble PM-I from all reported studies are very limited. Exclusion of truncated semi-pro-PM-I expression in E. coli C41(DE3) is herein reported. We also show that the low preparation yield of purified semi-pro-PM-I with autoprocessing ability is mainly a result of structural instability of the refolded enzyme in acidic conditions due to incomplete formation of disulfide linkages. Upon formation of at least one of the two natural disulfide bonds, nearly all of the refolded semi-pro-PM-I could be activated to its mature form. A significantly improved yield of 10 mg of semi-pro-PM-I per liter of culture, which resulted in 6-8 mg of the mature PM-I, was routinely obtained using this strategy.http://europepmc.org/articles/PMC3930733?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Sirisak Lolupiman
Pilaiwan Siripurkpong
Jirundon Yuvaniyama
spellingShingle Sirisak Lolupiman
Pilaiwan Siripurkpong
Jirundon Yuvaniyama
Disulfide linkages in Plasmodium falciparum plasmepsin-i are essential elements for its processing activity and multi-milligram recombinant production yield.
PLoS ONE
author_facet Sirisak Lolupiman
Pilaiwan Siripurkpong
Jirundon Yuvaniyama
author_sort Sirisak Lolupiman
title Disulfide linkages in Plasmodium falciparum plasmepsin-i are essential elements for its processing activity and multi-milligram recombinant production yield.
title_short Disulfide linkages in Plasmodium falciparum plasmepsin-i are essential elements for its processing activity and multi-milligram recombinant production yield.
title_full Disulfide linkages in Plasmodium falciparum plasmepsin-i are essential elements for its processing activity and multi-milligram recombinant production yield.
title_fullStr Disulfide linkages in Plasmodium falciparum plasmepsin-i are essential elements for its processing activity and multi-milligram recombinant production yield.
title_full_unstemmed Disulfide linkages in Plasmodium falciparum plasmepsin-i are essential elements for its processing activity and multi-milligram recombinant production yield.
title_sort disulfide linkages in plasmodium falciparum plasmepsin-i are essential elements for its processing activity and multi-milligram recombinant production yield.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Plasmodium falciparum plasmepsin-I (PM-I) has been considered a potential drug target for the parasite that causes fatal malaria in human. Determination of PM-I structures for rational design of its inhibitors is hindered by the difficulty in obtaining large quantity of soluble enzyme. Nearly all attempts for its heterologous expression in Escherichia coli result in the production of insoluble proteins in both semi-pro-PM-I and its truncated form, and thus require protein refolding. Moreover, the yields of purified, soluble PM-I from all reported studies are very limited. Exclusion of truncated semi-pro-PM-I expression in E. coli C41(DE3) is herein reported. We also show that the low preparation yield of purified semi-pro-PM-I with autoprocessing ability is mainly a result of structural instability of the refolded enzyme in acidic conditions due to incomplete formation of disulfide linkages. Upon formation of at least one of the two natural disulfide bonds, nearly all of the refolded semi-pro-PM-I could be activated to its mature form. A significantly improved yield of 10 mg of semi-pro-PM-I per liter of culture, which resulted in 6-8 mg of the mature PM-I, was routinely obtained using this strategy.
url http://europepmc.org/articles/PMC3930733?pdf=render
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AT pilaiwansiripurkpong disulfidelinkagesinplasmodiumfalciparumplasmepsiniareessentialelementsforitsprocessingactivityandmultimilligramrecombinantproductionyield
AT jirundonyuvaniyama disulfidelinkagesinplasmodiumfalciparumplasmepsiniareessentialelementsforitsprocessingactivityandmultimilligramrecombinantproductionyield
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