Kobayashi Keiichi, Hattori Takasumi, Honda Yuki, Kirimura Kohtaro
Department of Applied Chemistry, Faculty of Science and Engineering, Waseda University, Tokyo 169-8555, Japan.
Biosci Biotechnol Biochem. 2013;77(7):1492-8. doi: 10.1271/bbb.130139. Epub 2013 Jul 7.
Methylcitrate synthase (EC 2.3.3.5; MCS) is a key enzyme of the methylcitric acid cycle localized in the mitochondria of eukaryotic cells and related to propionic acid metabolism. In this study, cloning of the gene mcsA encoding MCS and heterologous expression of it in Escherichia coli were performed for functional analysis of the MCS of citric acid-producing Aspergillus niger WU-2223L. Only one copy of mcsA (1,495 bp) exists in the A. niger WU-2223L chromosome. It encodes a 51-kDa polypeptide consisting of 465 amino acids containing mitochondrial targeting signal peptides. Purified recombinant MCS showed not only MCS activity (27.6 U/mg) but also citrate synthase (EC 2.3.3.1; CS) activity (26.8 U/mg). For functional analysis of MCS, mcsA disruptant strain DMCS-1, derived from A. niger WU-2223L, was constructed. Although A. niger WU-2223L showed growth on propionate as sole carbon source, DMCS-1 showed no growth. These results suggest that MCS is an essential enzyme in propionic acid metabolism, and that the methylcitric acid cycle operates functionally in A. niger WU-2223L. To determine whether MCS makes a contribution to citric acid production, citric acid production tests on DMCS-1 were performed. The amount of citric acid produced from glucose consumed by DMCS-1 in citric acid production medium over 12 d of cultivation was on the same level to that by WU-2223L. Thus it was found that MCS made no contribution to citric acid production from glucose in A. niger WU-2223L, although MCS showed CS activity.
甲基柠檬酸合酶(EC 2.3.3.5;MCS)是甲基柠檬酸循环的关键酶,定位于真核细胞的线粒体中,与丙酸代谢相关。在本研究中,对编码MCS的基因mcsA进行了克隆,并在大肠杆菌中进行了异源表达,以对产柠檬酸黑曲霉WU-2223L的MCS进行功能分析。黑曲霉WU-2223L染色体中仅存在一个mcsA拷贝(1495 bp)。它编码一个由465个氨基酸组成的51 kDa多肽,含有线粒体靶向信号肽。纯化的重组MCS不仅显示出MCS活性(27.6 U/mg),还显示出柠檬酸合酶(EC 2.3.3.1;CS)活性(26.8 U/mg)。为了对MCS进行功能分析,构建了源自黑曲霉WU-2223L的mcsA缺失菌株DMCS-1。虽然黑曲霉WU-2223L能以丙酸盐作为唯一碳源生长,但DMCS-1却不能生长。这些结果表明,MCS是丙酸代谢中的一种必需酶,并且甲基柠檬酸循环在黑曲霉WU-2223L中具有功能活性。为了确定MCS是否对柠檬酸生产有贡献,对DMCS-1进行了柠檬酸生产测试。在柠檬酸生产培养基中,DMCS-1在12天培养过程中消耗葡萄糖产生的柠檬酸量与WU-2223L的相同。因此发现,尽管MCS显示出CS活性,但MCS对黑曲霉WU-2223L利用葡萄糖生产柠檬酸没有贡献。