Hakanpää Johanna, Szilvay Géza R, Kaljunen Heidi, Maksimainen Mirko, Linder Markus, Rouvinen Juha
Department of Chemistry, University of Joensuu, Finland.
Protein Sci. 2006 Sep;15(9):2129-40. doi: 10.1110/ps.062326706. Epub 2006 Aug 1.
Hydrophobins are small fungal proteins that are highly surface active and possess a unique ability to form amphiphilic membranes through spontaneous self-assembly. The first crystal structure of a hydrophobin, Trichoderma reesei HFBII, revealed the structural basis for the function of this amphiphilic protein--a patch consisting of hydrophobic side chains on the protein surface. Here, the crystal structures of a native and a variant T. reesei hydrophobin HFBI are presented, revealing the same overall structure and functional hydrophobic patch as in the HFBII structure. However, some structural flexibility was found in the native HFBI structure: The asymmetric unit contained four molecules, and, in two of these, an area of seven residues was displaced as compared to the two other HFBI molecules and the previously determined HFBII structure. This structural change is most probably induced by multimer formation. Both the native and the N-Cys-variant of HFBI were crystallized in the presence of detergents, but an association between the protein and a detergent was only detected in the variant structure. There, the molecules were arranged into an extraordinary detergent-associated octamer and the solvent content of the crystals was 75%. This study highlights the conservation of the fold of class II hydrophobins in spite of the low sequence identity and supports our previous suggestion that concealment of the hydrophobic surface areas of the protein is the driving force in the formation of multimers and monolayers in the self-assembly process.
疏水蛋白是一类小型真菌蛋白,具有高度的表面活性,能够通过自发自组装形成两亲性膜。首个疏水蛋白——里氏木霉HFBII的晶体结构,揭示了这种两亲性蛋白功能的结构基础,即蛋白质表面由疏水侧链组成的区域。本文展示了里氏木霉天然疏水蛋白HFBI及其变体的晶体结构,其总体结构和功能性疏水区域与HFBII结构相同。然而,在天然HFBI结构中发现了一些结构灵活性:不对称单元包含四个分子,其中两个分子中,有七个残基的区域相对于另外两个HFBI分子以及先前确定的HFBII结构发生了位移。这种结构变化很可能是由多聚体形成引起的。HFBI的天然形式和N - Cys变体均在洗涤剂存在的情况下结晶,但仅在变体结构中检测到蛋白质与洗涤剂之间的结合。在该结构中,分子排列成一种特殊的与洗涤剂相关的八聚体,晶体的溶剂含量为75%。这项研究强调了尽管二级疏水蛋白的序列同一性较低,但它们的折叠结构具有保守性,并支持了我们之前的观点,即蛋白质疏水表面区域的隐藏是自组装过程中多聚体和单分子层形成的驱动力。