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Membrane-bound geranylgeranyl diphosphate phosphatases: Purification and characterization from Croton stellatopilosus leaves

机译:膜结合的香叶基香叶基香叶基磷酸二磷酸酯酶:巴豆金合欢叶的纯化和表征

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Geranylgeranyl diphosphate phosphatase is an enzyme catalyzing the dephosphorylation of geranylgeranyl diphosphate (GGPP) to form geranylgeraniol (GGOH). The enzyme activity of GGPP phosphatase was detected in leaves of Croton stellatopilosus, a Thai medicinal plant containing plaunotol, a commercial anti-peptic acyclic diterpenoid. Enzymological studies of GGPP phosphatase in C. stellatopilosis leaves revealed that the enzyme is a membrane-bound protein that could be removed from 20,000g pellet by 0.1% Triton X-100 without significant loss of enzyme activity. The solubilized enzyme preparation was separated into two activity peaks, PI and PII, by BioGel A gel filtration chromatography. PI and PII were both partially purified and characterized. PI appeared to be a tetrameric enzyme with its native molecular mass of 232kDa and subunit size of 58kDa, whereas PII was a monomeric enzyme with a molecular mass of 30-34kDa. Both phosphatases utilized GGPP as the preferred substrate over farnesyl and geranyl diphosphates. The apparent K(m) values for GGPP of PI and PII appeared to be 0.2 and 0.1mM, respectively. Both activities were Mg(2+) independent and exhibited slightly acidic pH optima, 6.0-6.5 for PI and 6.5-7.0 for PII. The catalytic activities of PII was strongly inhibited by 1.0mM of Zn(2+), Mn(2+) and Co(2+), whereas that of PI was not affected. Both enzyme preparations were very stable upon storage at -20 degrees C for 45 days without significant loss of phosphatase activity. The presence of GGPP phosphatase enzymes in C. stellatopilosus is consistent with its putative involvement in the biosynthetic pathway of plaunotol although whether PI or PII is the actual enzyme involved in the pathway remains to be clarified.
机译:香叶基香叶基二磷酸磷酸酶是催化香叶基香叶基二磷酸(GGPP)脱磷酸形成香叶基香叶醇(GGOH)的酶。在含有巴龙酚(一种商业性抗消化性无环二萜)的泰国药用植物巴豆金缕梅的叶子中检测到GGPP磷酸酶的酶活性。对C. stellatopilosis叶片中GGPP磷酸酶的酶学研究表明,该酶是一种膜结合蛋白,可通过0.1%Triton X-100从20,000 g沉淀物中除去,而不会显着降低酶的活性。通过BioGel A凝胶过滤色谱将溶解的酶制剂分成两个活性峰PI和PII。 PI和PII均被部分纯化和表征。 PI似乎是一种四聚体酶,其天然分子量为232kDa,亚基大小为58kDa,而PII是一种单体酶,分子量为30-34kDa。与法呢基和香叶基二磷酸酯相比,两种磷酸酯酶均利用GGPP作为优选底物。 PI和PII的GGPP的表观K(m)值分别为0.2和0.1mM。两种活性都是Mg(2+)独立的,并且显示出略酸性的pH最佳值,PI为6.0-6.5,PII为6.5-7.0。 1.0 mM的Zn(2 +),Mn(2+)和Co(2+)强烈抑制PII的催化活性,而PI则不受影响。两种酶制剂在-20℃下储存45天时都非常稳定,而磷酸酶活性没有明显损失。尽管PI或PII是实际参与该酶的酶,但在C. stellatopilosus中存在GGPP磷酸酶与推测参与了plaunotol的生物合成途径是一致的。

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