Biochemical Engineering and Pilot Plant Research and Development Unit, National Center for Genetic Engineering and Biotechnology. King Mongkut's University of Technology Thonburi, Bangkhuntien, Bangkok 10150, Thailand.
Pilot Plant Development and Training Institute, King Mongkut's University of Technology Thonburi, Bangkhuntien, Bangkok 10150, Thailand.
Microbiology (Reading). 2013 Dec;159(Pt 12):2548-2557. doi: 10.1099/mic.0.065342-0. Epub 2013 Sep 24.
Malic enzyme (ME) is one of the important enzymes for furnishing the cofactor NAD(P)H for the biosynthesis of fatty acids and sterols. Due to the existence of multiple ME isoforms in a range of oleaginous microbes, a molecular basis for the evolutionary relationships amongst the enzymes in oleaginous fungi was investigated using sequence analysis and structural modelling. Evolutionary distance and structural characteristics were used to discriminate the MEs of yeasts and fungi into several groups. Interestingly, the NADP(+)-dependent MEs of Mucoromycotina had an unusual insertion region (FLxxPG) that was not found in other fungi. However, the subcellular compartment of the Mucoromycotina enzyme could not be clearly identified by an analysis of signal peptide sequences. A constructed structural model of the ME of Mucor circinelloides suggested that the insertion region is located at the N-terminus of the enzyme (aa 159-163). In addition, it is presumably part of the dimer interface region of the enzyme, which might provide a continuously positively charged pocket for the efficient binding of negatively charged effector molecules. The discovery of the unique structure of the Mucoromycotina ME suggests the insertion region could be involved in particular kinetics of this enzyme, which may indicate its involvement in the lipogenesis of industrially important oleaginous microbes.
苹果酸酶(ME)是为脂肪酸和甾醇的生物合成提供辅助因子 NAD(P)H 的重要酶之一。由于多种油脂微生物中存在多种 ME 同工酶,因此使用序列分析和结构建模研究了油脂真菌中酶之间的进化关系的分子基础。进化距离和结构特征用于将酵母和真菌的 ME 区分成几个组。有趣的是,Mucoromycotina 的 NADP(+)依赖性 ME 具有不寻常的插入区域(FLxxPG),在其他真菌中未发现。然而,通过对信号肽序列的分析,无法清楚地确定 Mucoromycotina 酶的亚细胞隔室。构建的 Mucor circinelloides ME 的结构模型表明,插入区域位于酶的 N 端(aa 159-163)。此外,它可能是酶的二聚体界面区域的一部分,这可能为有效结合带负电荷的效应分子提供连续的正电荷口袋。Mucoromycotina ME 的独特结构的发现表明,插入区域可能参与该酶的特定动力学,这可能表明其参与了工业上重要的油脂微生物的脂生成。