Yamaguchi S, Takeuchi K, Mase T, Oikawa K, McMullen T, Derewenda U, McElhaney R N, Kay C M, Derewenda Z S
Tsukuba Research Laboratories, Amano Pharmaceutical Co. Ltd., Japan.
Protein Eng. 1996 Sep;9(9):789-95. doi: 10.1093/protein/9.9.789.
The extracellular lipase from Penicillium camembertii has unique substrate specificity restricted to mono- and diglycerides. The enzyme is a member of a homologous family of lipases from filamentous fungi. Four of these proteins, from the fungi Rhizomucor miehei, Humicola lanuginosa, Rhizopus delemar and P. camembertii, have had their structures elucidated by X-ray crystallography. In spite of pronounced sequence similarities the enzymes exhibit significant differences. For example, the thermostability of the P. camembertii lipase is considerably lower than that of the H. lanuginosa enzyme. Since only the P. camembertii enzyme lacks the characteristic long disulfide bridge, corresponding to Cys22-Cys268 in the H. lanuginosa lipase, we have engineered this disulfide into the former enzyme in the hope of obtaining a significantly more stable fold. The properties of the double mutant (Y22C and G269C) were assessed by a variety of biophysical techniques. The extra disulfide link was found to increase the melting temperature of the protein from 51 to 63 degrees C. However, no difference is observed under reducing conditions, indicating an intrinsic instability of the new disulfide. The optimal temperature for catalytic activity decreased by 10 degrees C and the optimum pH was shifted by 0.7 units to more acidic.
来自卡门柏青霉的胞外脂肪酶具有独特的底物特异性,仅作用于甘油单酯和甘油二酯。该酶是丝状真菌脂肪酶同源家族的成员。其中四种蛋白质,分别来自米黑根毛霉、疏棉状嗜热丝孢菌、德氏根霉和卡门柏青霉,它们的结构已通过X射线晶体学得以阐明。尽管序列有明显相似性,但这些酶仍存在显著差异。例如,卡门柏青霉脂肪酶的热稳定性远低于疏棉状嗜热丝孢菌的酶。由于只有卡门柏青霉的酶缺乏与疏棉状嗜热丝孢菌脂肪酶中Cys22 - Cys268相对应的特征性长二硫键,我们将此二硫键引入前一种酶中,期望获得一种稳定性显著更高的折叠结构。通过多种生物物理技术评估了双突变体(Y22C和G269C)的特性。发现额外的二硫键使蛋白质的解链温度从51℃提高到了63℃。然而,在还原条件下未观察到差异,这表明新二硫键存在内在不稳定性。催化活性的最适温度降低了10℃,最适pH值向更酸性方向偏移了0.7个单位。