Yeast and fungal cell-wall polysaccharides can self-assemble in vitro into an ultrastructure resembling in vivo yeast cell walls
Jazyk angličtina Země Velká Británie, Anglie Médium print-electronic
Typ dokumentu časopisecké články
PubMed
23160360
DOI
10.1093/jmicro/dfs076
PII: dfs076
Knihovny.cz E-zdroje
- Klíčová slova
- Saccharomyces cerevisiae, cell-wall polysaccharides, fungi, self-assembly, yeast,
- MeSH
- beta-glukany chemie metabolismus MeSH
- buněčná stěna ultrastruktura MeSH
- elektronová mikroskopie MeSH
- fungální polysacharidy biosyntéza metabolismus MeSH
- mannany chemie metabolismus MeSH
- mikrofibrily metabolismus MeSH
- Saccharomyces cerevisiae metabolismus MeSH
- Publikační typ
- časopisecké články MeSH
- Názvy látek
- beta-1,3-glucan MeSH Prohlížeč
- beta-1,6-glucan MeSH Prohlížeč
- beta-glukany MeSH
- fungální polysacharidy MeSH
- mannany MeSH
Polysaccharides account for more than 90% of the content of fungal cell walls, but the mechanism underlying the formation of the architecture of the cell walls, which consist of microfibrils embedded in an amorphous wall matrix, remains unknown. We used electron microscopy to investigate ten different fungal cell-wall polysaccharides to determine whether they could self-assemble into the fibrillar or amorphous component of fungal cell walls in a test tube without enzymes. The ultrastructures formed by precipitating β-1,3-glucan and β-1,6-glucan are different depending on the existence of branching in the molecule. Linear β-1,3-glucan and linear β-1,6-glucan precipitate into a fibrillar ultrastructure. Branched β-1,6-glucan, mannan and glycogen precipitates are amorphous. Branched β-1,3-glucan forms a fibrillar plus amorphous ultrastructure. Self-assembly among combinations of different linear and branched cell-wall polysaccharides results in an ultrastructure that resembles that of a yeast cell wall, which suggests that self-assembly of polysaccharides may participate in the development of the three-dimensional architecture of the yeast cell wall.
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