Molecular Biology of Archaea, Max Planck Institute for Terrestrial Microbiology, Karl-von-Frisch-Strasse, Marburg, Germany.
Extremophiles. 2012 Jan;16(1):115-25. doi: 10.1007/s00792-011-0411-2. Epub 2011 Nov 18.
Compared to Sulfolobus solfataricus P2, the S. solfataricus mutant PBL2025 misses 50 genes (SSO3004-3050), including genes coding for a multitude of enzymes possibly involved in sugar degradation or metabolism. We complemented PBL2025 with two of the missing proteins, the α-mannosidase (SSO3006, Ssα-man) and the β-galactosidase LacS (SSO3019), and performed comparative fluorescence microscopy and confocal laser scanning microscopy to analyze the recombinant strains. We demonstrated that the Ssα-man complemented strain resembled the S. solfataricus P2 behavior with respect to attachment of cells to glass and growth of cells in static biofilms. During expression of the Ssα-man, but not LacS, glucose and mannose-containing extracellular polymeric substance (EPS) levels changed in the recombinant strain during surface attachment and biofilm formation. These results suggest that the Ssα-man might be involved in the modulation of the EPS composition and/or in the de-mannosylation of the glycan tree, which is attached to extracellular glycosylated proteins in S. solfataricus. On the other hand, LacS expression in PBL2025 reduced the carbohydrate content of the isolated total EPS implying a role in the modulation of the produced EPS during static biofilm formation. These are the first enzymes identified as playing a role in archaeal EPS formation.
与 Sulfolobus solfataricus P2 相比,S. solfataricus 突变体 PBL2025 缺失了 50 个基因(SSO3004-3050),其中包括可能参与糖降解或代谢的多种酶的编码基因。我们用缺失的两种蛋白质中的两种(α-甘露糖苷酶(SSO3006,Ssα-man)和β-半乳糖苷酶 LacS(SSO3019))对 PBL2025 进行了补充,并进行了比较荧光显微镜和共焦激光扫描显微镜分析重组菌株。我们证明,Ssα-man 互补菌株在细胞附着在玻璃上和细胞在静态生物膜中生长方面类似于 Sulfolobus solfataricus P2 的行为。在 Ssα-man 的表达过程中,但不是 LacS,在重组菌株附着在表面和形成生物膜期间,含有葡萄糖和甘露糖的细胞外多聚物(EPS)水平发生了变化。这些结果表明,Ssα-man 可能参与 EPS 组成的调节和/或聚糖树的去甘露糖化,这与 Sulfolobus solfataricus 中附着在细胞外糖基化蛋白上的聚糖有关。另一方面,LacS 在 PBL2025 中的表达降低了分离的总 EPS 的碳水化合物含量,这意味着在静态生物膜形成过程中在调节产生的 EPS 方面发挥作用。这些是首次被确定为在古菌 EPS 形成中发挥作用的酶。