Unit of Naples, Institute for Microelectronics and Microsystems, National Council of Research, Via Pietro Castellino 111, 80131 Naples, Italy.
J R Soc Interface. 2012 Oct 7;9(75):2450-6. doi: 10.1098/rsif.2012.0217. Epub 2012 May 9.
Hydrophobins are small proteins secreted by fungi, which self-assemble into amphipathic membranes at air-liquid or liquid-solid interfaces. The physical and chemical properties of some hydrophobins, both in solution and as a biofilm, are affected by poly or oligosaccharides. We have studied the interaction between glucose and the hydrophobin Vmh2 from Pleurotus ostreatus by spectroscopic ellipsometry (SE), atomic force microscopy (AFM) and water contact angle (WCA). We have found that Vmh2-glucose complexes forms a chemically stable biofilm, obtained by drop deposition on silicon, 1.6 nm thick and containing 35 per cent of glucose, quantified by SE. AFM highlighted the presence of nanometric rodlet-like aggregates (average height, width and length being equal to 3.6, 23.8 and 40 nm, respectively) on the biofilm surface, slightly different from those obtained in the absence of glucose (4.11, 23.9 and 64 nm). The wettability of a silicon surface, covered by the organic layer of Vmh2-glucose, strongly changed: WCA decreased from 90° down to 17°.
疏水蛋白是由真菌分泌的小蛋白,在气液或液固界面自组装成两亲性膜。一些疏水蛋白的物理和化学性质,无论是在溶液中还是在生物膜中,都会受到多糖或寡糖的影响。我们通过光谱椭圆术(SE)、原子力显微镜(AFM)和水接触角(WCA)研究了葡萄糖与来自糙皮侧耳(Pleurotus ostreatus)的疏水蛋白 Vmh2 之间的相互作用。我们发现 Vmh2-葡萄糖复合物形成了一种化学稳定的生物膜,通过在硅上滴涂沉积获得,厚度为 1.6nm,通过 SE 定量含有 35%的葡萄糖。AFM 突出显示在生物膜表面存在纳米级棒状聚集体(平均高度、宽度和长度分别为 3.6nm、23.8nm 和 40nm),与在没有葡萄糖的情况下获得的聚集体略有不同(4.11nm、23.9nm 和 64nm)。由 Vmh2-葡萄糖的有机层覆盖的硅表面的润湿性发生了强烈变化:水接触角从 90°下降到 17°。