National Research Council Canada, Saskatoon, Canada.
Department of Food & Bioproduct Sciences, University of Saskatchewan, Saskatoon, Canada.
Plant Mol Biol. 2024 Aug 22;114(5):90. doi: 10.1007/s11103-024-01490-5.
ELO-like elongase is a condensing enzyme elongating long chain fatty acids in eukaryotes. Eranthis hyemalis ELO-like elongase (EhELO1) is the first higher plant ELO-type elongase that is highly active in elongating a wide range of polyunsaturated fatty acids (PUFAs) and some monounsaturated fatty acids (MUFAs). This study attempted using domain swapping and site-directed mutagenesis of EhELO1 and EhELO2, a close homologue of EhELO1 but with no apparent elongase activity, to elucidate the structural determinants critical for catalytic activity and substrate specificity. Domain swapping analysis of the two showed that subdomain B in the C-terminal half of EhELO1 is essential for MUFA elongation while subdomain C in the C-terminal half of EhELO1 is essential for both PUFA and MUFA elongations, implying these regions are critical in defining the architecture of the substrate tunnel for substrate specificity. Site-directed mutagenesis showed that the glycine at position 220 in the subdomain C plays a key role in differentiating the function of the two elongases. In addition, valine at 161 and cysteine at 165 in subdomain A also play critical roles in defining the architecture of the deep substrate tunnel, thereby contributing significantly to the acceptance of, and interaction with primer substrates.
类 ELO 延长酶是一种在真核生物中延长长链脂肪酸的缩合酶。雪兔子类 ELO 延长酶(EhELO1)是第一个在延长多种多不饱和脂肪酸(PUFA)和一些单不饱和脂肪酸(MUFAs)方面具有高活性的高等植物 ELO 型延长酶。本研究试图通过对 EhELO1 和 EhELO2(EhELO1 的密切同源物,但没有明显的延长酶活性)进行结构域交换和定点突变,阐明对催化活性和底物特异性至关重要的结构决定因素。对这两种酶的结构域交换分析表明,EhELO1 羧基端的亚结构域 B 对于 MUFA 的延长是必需的,而 EhELO1 羧基端的亚结构域 C 对于 PUFA 和 MUFA 的延长都是必需的,这表明这些区域在定义底物特异性的底物隧道结构方面起着关键作用。定点突变显示,亚结构域 C 中第 220 位的甘氨酸在区分这两种延长酶的功能方面起着关键作用。此外,亚结构域 A 中的 161 位缬氨酸和 165 位半胱氨酸在定义深底物隧道的结构方面也起着关键作用,从而显著有助于接受和与引物底物相互作用。