New Cysteine-Rich Ice-Binding Protein Secreted from Antarctic Microalga, Chloromonas sp.

Many microorganisms in Antarctica survive in the cold environment there by producing ice-binding proteins (IBPs) to control the growth of ice around them. An IBP from the Antarctic freshwater microalga, Chloromonas sp., was identified and characterized. The length of the Chloromonas sp. IBP (ChloroI...

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Main Authors: Woongsic Jung, Robert L Campbell, Yunho Gwak, Jong Im Kim, Peter L Davies, EonSeon Jin
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4838330?pdf=render
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spelling doaj-bc8bf4e2a0c940be98900563f411176b2020-11-25T02:34:58ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-01114e015405610.1371/journal.pone.0154056New Cysteine-Rich Ice-Binding Protein Secreted from Antarctic Microalga, Chloromonas sp.Woongsic JungRobert L CampbellYunho GwakJong Im KimPeter L DaviesEonSeon JinMany microorganisms in Antarctica survive in the cold environment there by producing ice-binding proteins (IBPs) to control the growth of ice around them. An IBP from the Antarctic freshwater microalga, Chloromonas sp., was identified and characterized. The length of the Chloromonas sp. IBP (ChloroIBP) gene was 3.2 kb with 12 exons, and the molecular weight of the protein deduced from the ChloroIBP cDNA was 34.0 kDa. Expression of the ChloroIBP gene was up- and down-regulated by freezing and warming conditions, respectively. Western blot analysis revealed that native ChloroIBP was secreted into the culture medium. This protein has fifteen cysteines and is extensively disulfide bonded as shown by in-gel mobility shifts between oxidizing and reducing conditions. The open-reading frame of ChloroIBP was cloned and over-expressed in Escherichia coli to investigate the IBP's biochemical characteristics. Recombinant ChloroIBP produced as a fusion protein with thioredoxin was purified by affinity chromatography and formed single ice crystals of a dendritic shape with a thermal hysteresis activity of 0.4±0.02°C at a concentration of 5 mg/ml. In silico structural modeling indicated that the three-dimensional structure of ChloroIBP was that of a right-handed β-helix. Site-directed mutagenesis of ChloroIBP showed that a conserved region of six parallel T-X-T motifs on the β-2 face was the ice-binding region, as predicted from the model. In addition to disulfide bonding, hydrophobic interactions between inward-pointing residues on the β-1 and β-2 faces, in the region of ice-binding motifs, were crucial to maintaining the structural conformation of ice-binding site and the ice-binding activity of ChloroIBP.http://europepmc.org/articles/PMC4838330?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Woongsic Jung
Robert L Campbell
Yunho Gwak
Jong Im Kim
Peter L Davies
EonSeon Jin
spellingShingle Woongsic Jung
Robert L Campbell
Yunho Gwak
Jong Im Kim
Peter L Davies
EonSeon Jin
New Cysteine-Rich Ice-Binding Protein Secreted from Antarctic Microalga, Chloromonas sp.
PLoS ONE
author_facet Woongsic Jung
Robert L Campbell
Yunho Gwak
Jong Im Kim
Peter L Davies
EonSeon Jin
author_sort Woongsic Jung
title New Cysteine-Rich Ice-Binding Protein Secreted from Antarctic Microalga, Chloromonas sp.
title_short New Cysteine-Rich Ice-Binding Protein Secreted from Antarctic Microalga, Chloromonas sp.
title_full New Cysteine-Rich Ice-Binding Protein Secreted from Antarctic Microalga, Chloromonas sp.
title_fullStr New Cysteine-Rich Ice-Binding Protein Secreted from Antarctic Microalga, Chloromonas sp.
title_full_unstemmed New Cysteine-Rich Ice-Binding Protein Secreted from Antarctic Microalga, Chloromonas sp.
title_sort new cysteine-rich ice-binding protein secreted from antarctic microalga, chloromonas sp.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2016-01-01
description Many microorganisms in Antarctica survive in the cold environment there by producing ice-binding proteins (IBPs) to control the growth of ice around them. An IBP from the Antarctic freshwater microalga, Chloromonas sp., was identified and characterized. The length of the Chloromonas sp. IBP (ChloroIBP) gene was 3.2 kb with 12 exons, and the molecular weight of the protein deduced from the ChloroIBP cDNA was 34.0 kDa. Expression of the ChloroIBP gene was up- and down-regulated by freezing and warming conditions, respectively. Western blot analysis revealed that native ChloroIBP was secreted into the culture medium. This protein has fifteen cysteines and is extensively disulfide bonded as shown by in-gel mobility shifts between oxidizing and reducing conditions. The open-reading frame of ChloroIBP was cloned and over-expressed in Escherichia coli to investigate the IBP's biochemical characteristics. Recombinant ChloroIBP produced as a fusion protein with thioredoxin was purified by affinity chromatography and formed single ice crystals of a dendritic shape with a thermal hysteresis activity of 0.4±0.02°C at a concentration of 5 mg/ml. In silico structural modeling indicated that the three-dimensional structure of ChloroIBP was that of a right-handed β-helix. Site-directed mutagenesis of ChloroIBP showed that a conserved region of six parallel T-X-T motifs on the β-2 face was the ice-binding region, as predicted from the model. In addition to disulfide bonding, hydrophobic interactions between inward-pointing residues on the β-1 and β-2 faces, in the region of ice-binding motifs, were crucial to maintaining the structural conformation of ice-binding site and the ice-binding activity of ChloroIBP.
url http://europepmc.org/articles/PMC4838330?pdf=render
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