Satoh Yasuharu, Minamoto Norimasa, Tajima Kenji, Munekata Masanobu
Division of Molecular Chemistry, Graduate School of Engineering, Hokkaido University, Sapporo 060-8628, Japan.
J Biosci Bioeng. 2002;94(4):343-50. doi: 10.1263/jbb.94.343.
A polyhydroxyalkanoate (PHA) biosynthesis gene locus from Bacillus sp. INT005 strain, which had been isolated from a gas field, was cloned and analyzed at the molecular level. We found that a 3.8-kbp DraI-digested fragment of genomic DNA of Bacillus sp. INT005 conferred PHA-producing ability to Escherichia coli, which was PHA-negative. The DNA fragment contained three genes, phaR, -B and -C. The activity of 3-ketoacyl-CoA reductase with NADPH was detected in the lysate from recombinant E. coli carrying the phaB gene. Although PHA synthase activity could be detected in the extract from E. coli carrying phaR, -B and -C genes, no such activity could be detected in that from E. coli carrying only the phaC gene. However, the mixture of the crude extracts of E. coli expressing phaR or phaC revealed very high PHA synthase activity. Furthermore, when His-tagged PhaC was purified by Ni-affinity chromatography from the mixture of crude extracts containing His-tagged PhaC or native PhaR, the eluate contained His-tagged PhaC and native PhaR. On the other hand, PhaR did not bind to the column directly. This purified PhaC with PhaR had 160-fold higher specific activity of PHA synthase than that without PhaR. In addition, the kinetics of the purified PhaC with PhaR revealed a lag phase that preceded the linear phase. It has been known that class III PHA synthase is composed of two different subunits, PhaC and PhaE, and phaC and phaE genes are directly linked in the genomes. Furthermore, the PHA synthase has no lag phase. We hence concluded that the PHA synthase of Bacillus sp. INT005 consists of PhaC and PhaR, and has characteristics different from class III PHA synthase.
从一个气田分离得到的芽孢杆菌属INT005菌株的聚羟基链烷酸酯(PHA)生物合成基因位点,在分子水平上进行了克隆和分析。我们发现,芽孢杆菌属INT005基因组DNA经DraI酶切得到的一个3.8千碱基对的片段赋予了原本不产PHA的大肠杆菌产PHA的能力。该DNA片段包含三个基因,phaR、phaB和phaC。在携带phaB基因的重组大肠杆菌裂解物中检测到了以NADPH为辅酶的3-酮酰基辅酶A还原酶的活性。虽然在携带phaR、phaB和phaC基因的大肠杆菌提取物中能检测到PHA合酶活性,但在仅携带phaC基因的大肠杆菌提取物中未检测到该活性。然而,表达phaR或phaC的大肠杆菌粗提物混合物显示出非常高的PHA合酶活性。此外,当通过镍亲和层析从含有His标签的PhaC或天然PhaR的粗提物混合物中纯化His标签的PhaC时,洗脱液中含有His标签的PhaC和天然PhaR。另一方面,PhaR不直接与柱子结合。这种与PhaR结合的纯化PhaC的PHA合酶比活性比不与PhaR结合的高160倍。此外,这种与PhaR结合的纯化PhaC的动力学显示在线性阶段之前有一个延迟期。已知III类PHA合酶由两个不同的亚基PhaC和PhaE组成,并且phaC和phaE基因在基因组中直接相连。此外,PHA合酶没有延迟期。因此我们得出结论,芽孢杆菌属INT005的PHA合酶由PhaC和PhaR组成,并且具有与III类PHA合酶不同的特性。