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Intersubunit location of the active site of farnesyl diphosphate synthase: reconstruction of active enzymes by hybrid-type heteromeric dimers of site-directed mutants.

机译:法呢基二磷酸合酶活性位点的梭螺母位置:通过位点突变体的杂交型异统二聚体重建活性酶。

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Farnesyl diphosphate synthase is a homodimer of subunits having typically two aspartate-rich motifs with two sets of substrate binding sites for an allylic diphosphate and isopentenyl diphosphate per molecule of a homodimeric enzyme. To determine whether each subunit contains an independent active site or whether the active sites are created by intersubunit interaction, we constructed several expression plasmids that overproduce hybrid-type heterodimers of Bacillus stearothermophilus FPP synthases constituting different types of mutated monomers, which exhibit little catalytic activity as homodimers, by combining two tandem fps genes for the manipulated monomer subunit with a highly efficient promoter trc within an overexpression pTrc99A plasmid. A heterodimer of a combination of subunits of the wild type and of R98E, a mutant subunit which exhibits little enzymatic activity as a dimer form (R98E)(2), exhibited 78% of the activity of the wild-type homodimer enzyme, (WT)(2). Moreover, when a hybrid-type heterodimeric dimer of FPP synthase mutant subunits (R98E/F220A) was prepared, the FPP synthase activity was 18- and 390-fold of that of each of the almost inactive mutants as a dimeric enzymes, (R98E)(2) and (F220A)(2) [Koyama, T., et al. (1995) Biochem. Biophys. Res. Commun. 212, 681-686], respectively. These results suggest that the subunits of the FPP synthase interact with each other to form a shared active site in the homodimer structure rather than an independent active site in each subunit.
机译:法尼基二磷酸合酶是具有典型地与两组底物结合位点的两个富天冬氨酸基序为每一个同型二聚体酶的分子烯丙基二磷酸异戊烯基和二磷酸亚基的同型二聚体。为了确定各亚基是否含有独立的活性位点或者是否通过梭鲁氏相互作用产生活性位点,我们构建了几种表达质粒,其含有较少类型的突变单体的芽孢杆菌菌株合酶的杂交型异二聚体,其表现出很少的催化活性。通过在过表达PTRC99A质粒内用高效启动子TRC组合用于操纵单体亚基的两个串联FPS基因。野生型和R98e的亚基组合的异二聚体,突变亚基作为二聚体形式(R98E)(2)的酶活性很少(R98e)(2),其出现了野生型同型酶活性的78%(wt )(2)。此外,当制备FPP合酶突变亚基(R98E / F220A)的杂化型异二聚二聚物时,FPP合酶活性为18-和390倍,每种几乎无活性突变体作为二聚体酶,(R98E) (2)和(F220A)(2)[Koyama,T.等人。 (1995)Biochem。 Biophys。 res。安排。分别为212,681-686]。这些结果表明FPP合酶的亚基彼此相互作用,形成同源过二聚体结构中的共享活性位点,而不是每个亚单元中的独立活动位点。

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