Literature DB >> 17921350

Expression and characterization of the flocculin Flo11/Muc1, a Saccharomyces cerevisiae mannoprotein with homotypic properties of adhesion.

Lois M Douglas1, Li Li, Yang Yang, A M Dranginis.   

Abstract

The Flo11/Muc1 flocculin has diverse phenotypic effects. Saccharomyces cerevisiae cells of strain background Sigma1278b require Flo11p to form pseudohyphae, invade agar, adhere to plastic, and develop biofilms, but they do not flocculate. We show that S. cerevisiae var. diastaticus strains, on the other hand, exhibit Flo11-dependent flocculation and biofilm formation but do not invade agar or form pseudohyphae. In order to study the nature of the Flo11p proteins produced by these two types of strains, we examined secreted Flo11p, encoded by a plasmid-borne gene, in which the glycosylphosphatidylinositol anchor sequences had been replaced by a histidine tag. A protein of approximately 196 kDa was secreted from both strains, which upon purification and concentration, aggregated into a form with a very high molecular mass. When secreted Flo11p was covalently attached to microscopic beads, it conferred the ability to specifically bind to S. cerevisiae var. diastaticus cells, which flocculate, but not to Sigma1278b cells, which do not flocculate. This was true for the 196-kDa form as well as the high-molecular-weight form of Flo11p, regardless of the strain source. The coated beads bound to S. cerevisiae var. diastaticus cells expressing FLO11 and failed to bind to cells with a deletion of FLO11, demonstrating a homotypic adhesive mechanism. Flo11p was shown to be a mannoprotein. Bead-to-cell adhesion was inhibited by mannose, which also inhibits Flo11-dependent flocculation in vivo, further suggesting that this in vitro system is a useful model for the study of fungal adhesion.

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Year:  2007        PMID: 17921350      PMCID: PMC2168249          DOI: 10.1128/EC.00284-06

Source DB:  PubMed          Journal:  Eukaryot Cell        ISSN: 1535-9786


  45 in total

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Journal:  Eukaryot Cell       Date:  2006-08-25

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Authors:  A M Dranginis
Journal:  Mol Cell Biol       Date:  1989-09       Impact factor: 4.272

5.  Electrophoretic characterization of a detergent-treated plasma membrane fraction from corn roots.

Authors:  S R Gallagher; R T Leonard
Journal:  Plant Physiol       Date:  1987-02       Impact factor: 8.340

6.  Snf1 protein kinase and the repressors Nrg1 and Nrg2 regulate FLO11, haploid invasive growth, and diploid pseudohyphal differentiation.

Authors:  Sergei Kuchin; Valmik K Vyas; Marian Carlson
Journal:  Mol Cell Biol       Date:  2002-06       Impact factor: 4.272

7.  MAP kinase and cAMP filamentation signaling pathways converge on the unusually large promoter of the yeast FLO11 gene.

Authors:  S Rupp; E Summers; H J Lo; H Madhani; G Fink
Journal:  EMBO J       Date:  1999-03-01       Impact factor: 11.598

8.  Isolation and partial purification of mannose-specific agglutinin from brewer's yeast involved in flocculation.

Authors:  M H Straver; V M Traas; G Smit; J W Kijne
Journal:  Yeast       Date:  1994-09       Impact factor: 3.239

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Authors:  F Winston; C Dollard; S L Ricupero-Hovasse
Journal:  Yeast       Date:  1995-01       Impact factor: 3.239

10.  Localization and cell surface anchoring of the Saccharomyces cerevisiae flocculation protein Flo1p.

Authors:  M Bony; D Thines-Sempoux; P Barre; B Blondin
Journal:  J Bacteriol       Date:  1997-08       Impact factor: 3.490

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  30 in total

1.  Shedding of the mucin-like flocculin Flo11p reveals a new aspect of fungal adhesion regulation.

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Journal:  Curr Biol       Date:  2010-07-08       Impact factor: 10.834

2.  The N-terminal domain of the Flo1 flocculation protein from Saccharomyces cerevisiae binds specifically to mannose carbohydrates.

Authors:  Katty V Y Goossens; Catherine Stassen; Ingeborg Stals; Dagmara S Donohue; Bart Devreese; Henri De Greve; Ronnie G Willaert
Journal:  Eukaryot Cell       Date:  2010-11-12

3.  The impact of protein glycosylation on Flo11-dependent adherence in Saccharomyces cerevisiae.

Authors:  Mahbuba H Meem; Paul J Cullen
Journal:  FEMS Yeast Res       Date:  2012-08-20       Impact factor: 2.796

4.  Accessibility and contribution to glucan masking of natural and genetically tagged versions of yeast wall protein 1 of Candida albicans.

Authors:  Bruce L Granger
Journal:  PLoS One       Date:  2018-01-12       Impact factor: 3.240

5.  A profile of differentially abundant proteins at the yeast cell periphery during pseudohyphal growth.

Authors:  Tao Xu; Christian A Shively; Rui Jin; Matthew J Eckwahl; Craig J Dobry; Qingxuan Song; Anuj Kumar
Journal:  J Biol Chem       Date:  2010-03-12       Impact factor: 5.157

6.  Identification and functional study of a new FLO10-derivative gene from the industrial flocculating yeast SPSC01.

Authors:  Lei-Yu He; Xin-Qing Zhao; Xu-Meng Ge; Feng-Wu Bai
Journal:  J Ind Microbiol Biotechnol       Date:  2012-03-31       Impact factor: 3.346

7.  Conserved WCPL and CX4C domains mediate several mating adhesin interactions in Saccharomyces cerevisiae.

Authors:  Guohong Huang; Stephen D Dougherty; Scott E Erdman
Journal:  Genetics       Date:  2009-03-18       Impact factor: 4.562

8.  FLO11 Gene Is Involved in the Interaction of Flor Strains of Saccharomyces cerevisiae with a Biofilm-Promoting Synthetic Hexapeptide.

Authors:  Marc Bou Zeidan; Lourdes Carmona; Severino Zara; Jose F Marcos
Journal:  Appl Environ Microbiol       Date:  2013-07-26       Impact factor: 4.792

9.  Rare variants in hypermutable genes underlie common morphology and growth traits in wild Saccharomyces paradoxus.

Authors:  Jeremy I Roop; Rachel B Brem
Journal:  Genetics       Date:  2013-08-09       Impact factor: 4.562

10.  Nutrient depletion modifies cell wall adsorption activity of wine yeast.

Authors:  R Sidari; A Caridi
Journal:  World J Microbiol Biotechnol       Date:  2016-04-27       Impact factor: 3.312

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