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Biosynthesis of the Macrocyclic Diterpene Casbene in Castor Bean (Ricinus communis L.) Seedlings

机译:蓖麻子大环二萜卡宾烯的生物合成

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摘要

Farnesyl transferase (farnesyl pyrophosphate: isopentenyl pyrophosphate farnesyl transferase; geranylgeranyl pyrophosphate synthetase) was purified at least 400-fold from extracts of castor bean (Ricinus communis L.) seedlings that were elicited by exposure for 10 h to Rhizopus stolonifer spores. The purified enzyme was free of isopentenyl pyrophosphate isomerase and phosphatase activities which interfere with prenyl transferase assays. The purified enzyme showed a broad optimum for farnesyl transfer between pH 8 and 9. The molecular weight of the enzyme was estimated to be 72,000 ± 3,000 from its behavior on a calibrated G-100 Sephadex molecular sieving column. Mg2+ ion at 4 millimolar gave the greatest stimulation of activity; Mn2+ ion gave a small stimulation at 0.5 millimolar, but was inhibitory at higher concentrations. Farnesyl pyrophosphate (Km = 0.5 micromolar) in combination with isopentenyl pyrophosphate (Km = 3.5 micromolar) was the most effective substrate for the production of geranylgeranyl pyrophosphate. Geranyl pyrophosphate (Km = 24 micromolar) could replace farnesyl pyrophosphate as the allylic pyrophosphate substrate, but dimethylallyl pyrophosphate was not utilized by the enzyme. One peak of farnesyl transferase activity (geranylgeranyl pyrophosphate synthetase) and two peaks of geranyl transferase activity (farnesyl pyrophosphate synthetases) from extracts of whole elicited seedlings were resolved by DEAE A-25 Sephadex sievorptive ion exchange chromatography. These results suggest that the pathway for geranylgeranyl pyrophosphate synthesis in elicited castor bean seedlings involves the successive actions of two enzymes—a geranyl transferase which utilizes dimethylallypyrophosphate and isopentenyl pyrophosphate as substrates and a farnesyl transferase which utilizes the farnesyl pyrophosphate produced in the first step and isopentenyl pyrophosphate as substrates.
机译:从蓖麻籽(Ricinus communis L.)幼苗提取物中纯化法呢基转移酶(法呢基焦磷酸:异戊烯基焦磷酸法呢基转移酶;香叶基香叶基焦磷酸焦磷酸合成酶)至少400倍。纯化的酶不含异戊烯基焦磷酸异构酶和磷酸酶活性,这些活性会干扰异戊二烯基转移酶的测定。纯化的酶显示出在pH 8到9之间的法呢基转移的最佳范围。从在校准的G-100 Sephadex分子筛柱上的行为估计,该酶的分子量为72,000±3,000。 Mg 2 + 离子在4毫摩尔下对活性的刺激最大。 Mn 2 + 离子在0.5毫摩尔下产生小的刺激,但在较高浓度下具有抑制作用。法呢基焦磷酸酯(Km = 0.5微摩尔)与异戊烯基焦磷酸酯(Km = 3.5微摩尔)组合是生产香叶基香叶基香叶基最有效的底物。香叶基焦磷酸酯(Km = 24微摩尔)可以代替法呢基焦磷酸酯作为烯丙基焦磷酸酯的底物,但该酶未利用二甲基烯丙基焦磷酸酯。通过DEAE A-25 Sephadex离子交换色谱法分离了整个诱导幼苗提取物中的法呢基转移酶活性的一个峰(香叶基香叶基焦磷酸合成酶)和两个香叶基转移酶活性的峰(法呢基焦磷酸合成酶)。这些结果表明,诱导的蓖麻籽幼苗中香叶基香叶基香叶基磷酸合成的途径涉及两种酶的连续作用:一种以二甲基烯丙基焦磷酸和异戊烯基焦磷酸为底物的香叶基转移酶,以及利用第一步中产生的法呢基焦磷酸和异戊烯基法伦基转移酶。焦磷酸盐为底物。

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