Department of Organic Chemistry and Biochemistry, University of Naples "Federico II", Via Cintia 4, 80126, Naples, Italy.
Glycobiology. 2010 May;20(5):594-602. doi: 10.1093/glycob/cwq009. Epub 2010 Jan 24.
Hydrophobins are small self-assembling proteins produced by fungi. A class I hydrophobin secreted by the basidiomycete fungus Pleurotus ostreatus was purified and identified. The pure protein is not water soluble, whereas complexes formed between the protein and glycans, produced in culture broth containing amylose, are soluble in water. Glycan structure matched to cyclic structures of alpha-(1-4) linked glucose containing from six to 16 monomers (cyclodextrins). Moreover, it was verified that not only pure cyclodextrins but also a linear oligosaccharide and even the simple glucose monomer are able to solubilize the hydrophobin in water. The aqueous solution of the protein-in the presence of the cyclic glucans-showed propensity to self-assembly, and conformational changes towards beta structure were observed on vortexing the solution. On the other hand, the pure protein dissolved in less polar solvent (60% ethanol) is not prone to self assembly, and no conformational change was observed. When the pure protein was deposited on a hydrophobic surface, it formed a very stable biofilm whose thickness was about 3 nm, whereas the biofilm was not detected on a hydrophilic surface. When the water-soluble protein-in the presence of the cyclic glucans-was used, thicker (up to 10-fold) biofilms were obtained on either hydrophilic or hydrophobic surfaces.
水蛋白是由真菌产生的小型自组装蛋白质。一种由担子菌真菌糙皮侧耳(Pleurotus ostreatus)分泌的 I 类水蛋白被纯化并鉴定。该纯蛋白不溶于水,而在含有直链淀粉的发酵液中形成的与糖结合的蛋白复合物则可溶于水。糖的结构与含有 6 到 16 个单体的α-(1-4)连接葡萄糖的环状结构(环糊精)相匹配。此外,还验证了不仅纯环糊精,而且线性低聚糖甚至简单的葡萄糖单体都能够将水蛋白溶解在水中。在存在环状葡聚糖的情况下,该蛋白的水溶液显示出自组装的趋势,并且在涡旋溶液时观察到向β结构的构象变化。另一方面,溶解在极性较小的溶剂(60%乙醇)中的纯蛋白不易自组装,也没有观察到构象变化。当纯蛋白沉积在疏水面上时,它形成了非常稳定的生物膜,其厚度约为 3nm,而在亲水面上则未检测到生物膜。当使用水溶性蛋白-存在环状葡聚糖时-在亲水或疏水表面上获得了更厚的(高达 10 倍)生物膜。