Adam K P, Crock J, Croteau R
Institute of Biological Chemistry, Washington State University, Pullman 99164-6340, USA.
Arch Biochem Biophys. 1996 Aug 15;332(2):352-6. doi: 10.1006/abbi.1996.0352.
4S-(-)-limonene is the major monoterpene accumulated by the liverwort Ricciocarpos natans, and a cell-free extract from this nonvascular plant cultured in vitro catalyzes the cyclization of geranyl diphosphate to limonene. The time course of limonene synthase activity parallels cultured growth but shows a maximum in specific activity in the lag phase following transfer to fresh medium. The operationally soluble enzyme was partially purified by combination of anion-exchange and hydroxylapatite chromatography. The limonene synthase from R. natans possesses a molecular weight of about 51,000, exhibits a pH optimum at 6.5, a pI at 5.3, and a requirement for either Mg2+ or Mn2+ as cofactor, and appears to employ 3S-linalyl disphosphate as a bound intermediate in the cyclization of the geranyl substrate (Km approximately 1.25 microM). In stereochemistry of the coupled isomerization-cyclization reaction and in general properties, the limonene synthase from this bryophyte resembles the corresponding monoterpene cyclases from gymnosperm and angiosperm species.
4S-(-)-柠檬烯是苔类植物浮苔积累的主要单萜,这种非维管植物的体外培养无细胞提取物催化香叶基二磷酸环化生成柠檬烯。柠檬烯合酶活性的时间进程与培养生长平行,但在转移到新鲜培养基后的延迟期比活性最高。通过阴离子交换和羟基磷灰石色谱相结合的方法对可操作溶解的酶进行了部分纯化。浮苔的柠檬烯合酶分子量约为51,000,最适pH为6.5,pI为5.3,需要Mg2+或Mn2+作为辅因子,并且在香叶基底物环化过程中似乎以3S-芳樟基二磷酸作为结合中间体(Km约为1.25 microM)。在偶联异构化-环化反应的立体化学和一般性质方面,这种苔藓植物的柠檬烯合酶类似于裸子植物和被子植物物种中的相应单萜环化酶。