Dubey Vinod Shanker, Bhalla Ritu, Luthra Rajesh
Neurobiotechnology Center, The Ohio State University, Columbus, Ohio 43210, USA.
J Biosci. 2003 Sep;28(5):637-46. doi: 10.1007/BF02703339.
Terpenoids are known to have many important biological and physiological functions. Some of them are also known for their pharmaceutical significance. In the late nineties after the discovery of a novel non-mevalonate (non-MVA) pathway, the whole concept of terpenoid biosynthesis has changed. In higher plants, the conventional acetate-mevalonate (Ac-MVA) pathway operates mainly in the cytoplasm and mitochondria and synthesizes sterols, sesquiterpenes and ubiquinones predominantly. The plastidic non-MVA pathway however synthesizes hemi-, mono-, sesqui- and di-terpenes, along with carotenoids and phytol chain of chlorophyll. In this paper, recent developments on terpenoids biosynthesis are reviewed with respect to the non-MVA pathway.
已知萜类化合物具有许多重要的生物学和生理学功能。其中一些还因其药学意义而闻名。在九十年代后期发现一种新的非甲羟戊酸(non-MVA)途径后,萜类生物合成的整个概念发生了变化。在高等植物中,传统的乙酸-甲羟戊酸(Ac-MVA)途径主要在细胞质和线粒体中起作用,主要合成甾醇、倍半萜和泛醌。然而,质体非MVA途径合成半萜、单萜、倍半萜和二萜,以及类胡萝卜素和叶绿素的植醇链。本文就非MVA途径对萜类生物合成的最新进展进行了综述。