Physiological function of Flo11p domains and the particular role of amyloid core sequences of this adhesin in Saccharomyces cerevisiae
Bouyx, C.; Schiavone, M.; Teste, M.-A.; Dague, E.; Sieczkowski, N.; Julien, A.; Francois, J. M.
Show abstract
Flocculins are a family of glycosylated proteins that provide yeast cells with several properties such as biofilm formation, flocculation, invasive growth or formation of velum. These proteins are similarly organised with a N-terminal (adhesion) domain, a stalk-like central B-domain with several repeats and a C-terminal sequence carrying a cell wall anchor site. They also contain amyloid {beta}-aggregation-prone sequences whose functional role is still unclear. In this work, we show that Flo11p differs from other flocculins by the presence of unique amyloid-forming sequences, whose the number is critical in the formation of adhesion nanodomains under a physical shear force. Using a genome editing approach to identify the function of domains in Flo11p phenotypes, we show that the formation of cellular aggregates whose density increases with the number of amyloid sequences cannot be attributed to a specific domain of Flo11p. The same is true for plastic adhesion and surface hydrophobicity the intensity of which depends mainly on the abundance of Flo11p on the cell surface. In contrast, the N and C domains of Flo11p are essential for invasive growth in agar, whereas a reduction in the number of repeats of the B domain weakens this phenotype. However, expression of FLO11 alone is not sufficient to trigger this invasion phenotype. Finally, we show that this flocculin contributes to the integrity of the cell wall.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- How to characterize a strain? The neglected influence of clonal heterogeneity on the phenotypes of industrial Saccharomyces 94%
- A key role of the EMC complex for mitochondrial respiration and quiescence in fission yeasts 94%
- Characterization of the nanomechanical properties of the fission yeast (Schizosaccharomyces pombe) cell surface by atomic force microscopy 93%
Similar papers in this journal
- Let it bud: an ultrastructural study of Cryptococcus neoformans surface during budding events 95%
- Polycistronic gene expression in the model microorganism Ustilago maydis 94%
- Methylotrophic yeast Candida boidinii enhances the colonization of plant growth-promoting yeast Papiliotrema laurentii in the phyllosphere 93%
Similar papers in this journal
- Altered N-glycan composition impacts flagella mediated adhesion in Chlamydomonas reinhardtii 93%
- Deletion of sulfate transporter SUL1 extends yeast replicative lifespan via reduced PKA signaling instead of decreased sulfate uptake 93%
- HetL provides immunity to HetR against PatS inhibition, and promotes pattern formation in the cyanobacterium Nostoc PCC 7120 92%
Similar papers in this journal
- Removing auto-activators from yeast-two-hybrid assays by conditional negative selection 93%
- Physicochemical properties of the vacuolar membrane and cellular factors determine formation of vacuolar invaginations 92%
- Comparison of endogenously expressed fluorescent protein fusions behaviour for protein quality control and cellular aging research 92%
Similar papers in this journal
- Perchlorate-Specific Proteomic Stress Responses of Debaryomyces hansenii Could Enable Microbial Survival in Martian Brines 91%
- The Wsp intermembrane complex mediates metabolic control of the swim-attach decision of Pseudomonas putida 91%
- An updated structural model of the A domain of the Pseudomonas putida XylR regulator exposes a distinct interplay with aromatic effectors 91%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.