Yamada Takashi, Hida Hiroyuki, Yamada Yasuhiro
Department of Applied Biological Science, Faculty of Life Science and Biotechnology, Fukuyama University, Gakuen-cho, Fukuyama, Hiroshima, 729-0292, Japan.
Appl Microbiol Biotechnol. 2007 Jul;75(5):977-82. doi: 10.1007/s00253-007-0962-4. Epub 2007 May 3.
The tropical plants Garcinia cambogia and Hibiscus subdariffa produce hydroxycitric acid (HCA), of which the absolute configurations are (2S,3S) and (2S,3R), respectively. (2S,3S)-HCA is an inhibitor of ATP-citrate lyase, which is involved in fatty acid synthesis. (2S,3R)-HCA inhibits pancreatic alpha-amylase and intestinal alpha-glucosidase, leading to a reduction in carbohydrate metabolism. In this study, we review current knowledge on the structure, biological occurrence, and physiological properties of HCA. The availability of HCA is limited by the restricted habitat of its source plants and the difficulty of stereoselective organic synthesis. Hence, in our recent study, thousands of microbial strains were screened and finally two bacterial strains were, for the first time, found to produce trace amounts of HCA. The HCA variants produced were the Hibiscus-type (2S,3R) enantiomer. Subsequent genome shuffling rapidly generated a mutant population with improved HCA yield relative to the parent strain of bacteria. These bacteria are a potential alternative source of natural HCA.
热带植物藤黄果和玫瑰茄可产生羟基柠檬酸(HCA),其绝对构型分别为(2S,3S)和(2S,3R)。(2S,3S)-HCA是ATP-柠檬酸裂解酶的抑制剂,该酶参与脂肪酸合成。(2S,3R)-HCA抑制胰腺α-淀粉酶和肠道α-葡萄糖苷酶,从而导致碳水化合物代谢减少。在本研究中,我们综述了目前关于HCA的结构、生物学存在及生理特性的知识。HCA的可得性受到其源植物有限生境以及立体选择性有机合成困难的限制。因此,在我们最近的研究中,筛选了数千株微生物菌株,最终首次发现两株细菌菌株可产生痕量的HCA。所产生的HCA变体为玫瑰茄型(2S,3R)对映体。随后的基因组改组迅速产生了一个相对于细菌亲本菌株HCA产量有所提高的突变群体。这些细菌是天然HCA的潜在替代来源。