Effect of a PMR1 disruption on the processing of heterologous glycoproteins secreted in the yeast Saccharomyces cerevisiae

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dc.contributor.authorMoo Woong Kim-
dc.contributor.authorSu Min Ko-
dc.contributor.authorJeong Yoon Kim-
dc.contributor.authorJung Hoon Sohn-
dc.contributor.authorEui Sung Choi-
dc.contributor.authorHyun Ah Kang-
dc.contributor.authorSang Ki Rhee-
dc.date.accessioned2017-04-19T08:57:09Z-
dc.date.available2017-04-19T08:57:09Z-
dc.date.issued2000-
dc.identifier.issn1226-8372-
dc.identifier.urihttps://oak.kribb.re.kr/handle/201005/5131-
dc.description.abstractThe Saccharomyces cerevisiae PMR1 gene encodes a Ca2+-ATPase localized in the Golgi. We have investigated the effects of PMR1 disruption in S. cerevisiae on the glycosylation and secretion of three heterologous glycoproteins, human α1-antitrypsin (α1,-AT), human antithrombin III (ATHIII), and Aspergillus niger glucose oxidase (GOD). The pmr1 null mutant strain secreted larger amounts of ATHIII and GOD proteins per a unit cell mass than the wild type strain. Despite a lower growth rate of the pmr1 mutant, two-fold higher level of human ATHIII was detected in the culture supernatant from the pmr1 mutant compared to that of the wild-type strain. The pmr1 mutant strain secreted α1-AT and the GOD proteins mostly as core-glycosylated forms, in contrast to the hyperglycosylated proteins secreted in the wild-type strain. Furthermore, the core-glycosylated forms secreted in the pmr1 mutant migrated slightly faster on SDS-PAGE than those secreted in the mnn9 deletion mutant and the wild type strains. Analysis of the recombinant GOD with anti-α,3-mannose antibody revealed that GOD secreted in the pmr1 mutant did not have terminal α1,3-linked mannoses unlike those secreted in the mnn9 mutant and the wild type strains. The present results indicate that the pmr1 mutant, with the super-secretion phenotype, is useful as a host system to produce recombinant glycoproteins lacking high-mannose outer chains.-
dc.publisherSpringer-
dc.titleEffect of a PMR1 disruption on the processing of heterologous glycoproteins secreted in the yeast Saccharomyces cerevisiae-
dc.title.alternativeEffect of a PMR1 disruption on the processing of heterologous glycoproteins secreted in the yeast Saccharomyces cerevisiae-
dc.typeArticle-
dc.citation.titleBiotechnology and Bioprocess Engineering-
dc.citation.number0-
dc.citation.endPage241-
dc.citation.startPage234-
dc.citation.volume5-
dc.contributor.affiliatedAuthorMoo Woong Kim-
dc.contributor.affiliatedAuthorJung Hoon Sohn-
dc.contributor.affiliatedAuthorEui Sung Choi-
dc.contributor.affiliatedAuthorHyun Ah Kang-
dc.contributor.affiliatedAuthorSang Ki Rhee-
dc.contributor.alternativeName김무웅-
dc.contributor.alternativeName고수민-
dc.contributor.alternativeName김정윤-
dc.contributor.alternativeName손정훈-
dc.contributor.alternativeName최의성-
dc.contributor.alternativeName강현아-
dc.contributor.alternativeName이상기-
dc.identifier.bibliographicCitationBiotechnology and Bioprocess Engineering, vol. 5, pp. 234-241-
dc.identifier.doi10.1007/BF02942179-
dc.subject.keywordPMR1-
dc.subject.keywordSaccharomyces cerevisiae-
dc.subject.keywordsecretion-
dc.subject.keywordglycosylation-
dc.subject.keywordheterologous protein-
dc.subject.localPMR1-
dc.subject.localSaccharomyces cerevisiae-
dc.subject.localsaccharomyces cerevisiae-
dc.subject.localSecretion-
dc.subject.localsecretion-
dc.subject.localGlycosylation-
dc.subject.localglycosylation-
dc.subject.localHeterologous protein-
dc.subject.localheterologous protein-
dc.description.journalClassY-
Appears in Collections:
Synthetic Biology and Bioengineering Research Institute > Synthetic Biology Research Center > 1. Journal Articles
Division of Bio Technology Innovation > BioProcess Engineering Center > 1. Journal Articles
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