Plant Biotechnology Institute, National Research Council of Canada, 110 Gymnasium Place, Saskatoon SK S7N 0W9, Canada.
Biochemistry. 2009 Dec 29;48(51):12298-304. doi: 10.1021/bi901605d.
The FAD2-like desaturases comprise a group of membrane-bound oxygenases involved in the modification of fatty acyl groups in plants and fungi. This group includes typical oleate desaturases which introduce a Delta12 cis double bond and more unusual enzymes such as Crep1, an acetylenase from the plant Crepis alpina, which introduces a triple bond in linoleate at the Delta12 position. In this study, the structure-function relationship between FAD2-like acetylenases and desaturases was examined through site-directed mutagenesis and heterologous expression. Eleven amino acid positions were identified that show complete evolutionary conservation within acetylenases or desaturases but have different amino acids in the other class of enzyme. Point mutants in Crep1 were constructed and expressed in yeast to test the role in fatty acid modification of the amino acids at the 11 positions. Results indicate the importance of five amino acid positions within Crep1 with regard to desaturase and acetylenase chemoselectivity, stereoselectivity, and substrate recognition. For example, relative to wild-type Crep1, the Y150F, F259L, and H266Q mutations all favored desaturation over acetylenation. The data indicate that small changes in primary sequence, particularly in the vicinity of the active site, can have profound changes on chemoselectivity and other aspects of the function of membrane-bound desaturase-like enzymes.
FAD2 类似去饱和酶包括一组参与植物和真菌中脂肪酸酰基修饰的膜结合加氧酶。该组包括典型的油酸去饱和酶,其引入 Delta12 cis 双键,以及更不寻常的酶,如 Crep1,一种来自植物 Crepis alpina 的炔酶,其在亚油酸的 Delta12 位置引入三键。在这项研究中,通过定点突变和异源表达研究了 FAD2 类似炔酶和去饱和酶之间的结构-功能关系。确定了 11 个氨基酸位置,这些位置在炔酶或去饱和酶中完全进化保守,但在另一种酶中具有不同的氨基酸。在酵母中构建并表达了 Crep1 的点突变体,以测试 11 个位置的氨基酸在脂肪酸修饰中的作用。结果表明,在 Crep1 中,有五个氨基酸位置对于去饱和酶和炔酶的化学选择性、立体选择性和底物识别具有重要意义。例如,与野生型 Crep1 相比,Y150F、F259L 和 H266Q 突变都有利于去饱和而不是炔化。数据表明,一级序列的微小变化,特别是在活性位点附近,会对膜结合去饱和酶样酶的化学选择性和其他功能方面产生深远的影响。