Kallio Johanna M, Linder Markus B, Rouvinen Juha
Department of Chemistry, University of Joensuu, P. O. Box 111, 80101 Joensuu, Finland.
VTT Technical Research Center of Finland, 02044 VTT, 2 Tietotie, Finland.
J Biol Chem. 2007 Sep 28;282(39):28733-28739. doi: 10.1074/jbc.M704238200. Epub 2007 Jul 18.
Hydrophobins are small, amphiphilic proteins secreted by filamentous fungi. Their functionality arises from a patch of hydrophobic residues on the protein surface. Spontaneous self-assembly of hydrophobins leads to the formation of an amphiphilic layer that remarkably reduces the surface tension of water. We have determined by x-ray diffraction two new crystal structures of Trichoderma reesei hydrophobin HFBII in the presence of a detergent. The monoclinic crystal structure (2.2A resolution, R = 22, R(free) = 28) is composed of layers of hydrophobin molecules where the hydrophobic surface areas of the molecules are aligned within the layer. Viewed perpendicular to the aligned hydrophobic surface areas, the molecules in the layer pack together to form six-membered rings, thus leaving small pores in the layer. Similar packing has been observed in the atomic force microscopy images of the self-assembled layers of class II hydrophobin, indicating that the crystal structure resembles that of natural hydrophobin film. The orthorhombic crystal structure (1.0 A resolution, R = 13, R(free) = 15) is composed of fiber-like arrays of protein molecules. Rodlet structures have been observed on amphiphilic layers formed by class I hydrophobins; fibrils of class II hydrophobins appear by vigorous shaking. We propose that the structure of the fibrils and/or rodlets is similar to that observed in the crystal structure.
疏水蛋白是丝状真菌分泌的小型两亲性蛋白质。它们的功能源于蛋白质表面的一片疏水残基。疏水蛋白的自发自组装导致形成一个两亲层,该层能显著降低水的表面张力。我们通过X射线衍射确定了里氏木霉疏水蛋白HFBII在去污剂存在下的两种新晶体结构。单斜晶体结构(分辨率为2.2埃,R = 22,R(自由)= 28)由疏水蛋白分子层组成,其中分子的疏水表面积在层内排列。垂直于排列的疏水表面积观察时,层中的分子聚集在一起形成六元环,从而在层中留下小孔。在II类疏水蛋白自组装层的原子力显微镜图像中也观察到了类似的堆积,表明晶体结构类似于天然疏水蛋白膜的结构。正交晶体结构(分辨率为1.0埃,R = 13,R(自由)= 15)由蛋白质分子的纤维状阵列组成。在I类疏水蛋白形成的两亲层上观察到了小杆状结构;II类疏水蛋白的原纤维通过剧烈摇晃出现。我们提出,原纤维和/或小杆状结构与晶体结构中观察到的结构相似。