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Molecular Structure of Hydrophobins Studied with Site-Directed Mutagenesisand Vibrational Sum-Frequency Generation Spectroscopy

机译:定点诱变研究疏水蛋白的分子结构和振动总和频率产生光谱

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摘要

Hydrophobins are surface-active fungal proteins that adsorb to the water–air interface and self-assemble into amphiphilic, water-repelling films that have a surface elasticity that is an order of magnitude higher than other molecular films. Here we use surface-specific sum-frequency generation spectroscopy (VSFG) and site-directed mutagenesis to study the properties of class I hydrophobin (HFBI) films from Trichoderma reesei at the molecular level. We identify protein specific HFBI signals in the frequency region 1200–1700 cm–1 that have not been observed in previous VSFG studies on proteins. We find evidence that the aspartic acid residue (D30) next to the hydrophobic patch is involved in lateral intermolecular protein interactions, while the two aspartic acid residues (D40, D43) opposite to the hydrophobic patch are primarily interacting with the water solvent.
机译:疏水蛋白是一种表面活性真菌蛋白,可吸附至水-空气界面,并自组装成两亲性憎水膜,其表面弹性比其他分子膜高一个数量级。在这里,我们使用表面特异性和频产生光谱(VSFG)和定点诱变来研究里氏木霉的I类疏水蛋白(HFBI)膜的分子水平性质。我们确定了在1200–1700 cm –1 频率区域中蛋白质特异的HFBI信号,这在以前的VSFG研究中没有观察到。我们发现证据表明,疏水性贴剂旁边的天冬氨酸残基(D30)参与侧向分子间蛋白质相互作用,而与疏水性贴剂相反的两个天冬氨酸残基(D40,D43)主要与水溶剂相互作用。

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