Address correspondence to Takeharu Tsuge,
Appl Environ Microbiol. 2012 May;78(9):3177-84. doi: 10.1128/AEM.07715-11. Epub 2012 Feb 17.
Ultrahigh-molecular-weight poly[(R)-3-hydroxybutyrate] [UHMW-P(3HB)] synthesized by genetically engineered Escherichia coli is an environmentally friendly bioplastic material which can be processed into strong films or fibers. An operon of three genes (organized as phaCAB) encodes the essential proteins for the production of P(3HB) in the native producer, Ralstonia eutropha. The three genes of the phaCAB operon are phaC, which encodes the polyhydroxyalkanoate (PHA) synthase, phaA, which encodes a 3-ketothiolase, and phaB, which encodes an acetoacetyl coenzyme A (acetoacetyl-CoA) reductase. In this study, the effect of gene order of the phaCAB operon (phaABC, phaACB, phaBAC, phaBCA, phaCAB, and phaCBA) on an expression plasmid in genetically engineered E. coli was examined in order to determine the best organization to produce UHMW-P(3HB). The results showed that P(3HB) molecular weights and accumulation levels were both dependent on the order of the pha genes relative to the promoter. The most balanced production result was achieved in the strain harboring the phaBCA expression plasmid. In addition, analysis of expression levels and activity for P(3HB) biosynthesis enzymes and of P(3HB) molecular weight revealed that the concentration of active PHA synthase had a negative correlation with P(3HB) molecular weight and a positive correlation with cellular P(3HB) content. This result suggests that the level of P(3HB) synthase activity is a limiting factor for producing UHMW-P(3HB) and has a significant impact on P(3HB) production.
基因工程大肠杆菌合成的超高分子量聚[(R)-3-羟基丁酸酯] [UHMW-P(3HB)]是一种环保型生物塑料材料,可加工成高强度薄膜或纤维。在天然产生菌罗尔斯通氏菌中,由三个基因(phaCAB 操纵子)组成的操纵子编码生产 P(3HB) 的必需蛋白。phaCAB 操纵子的三个基因是 phaC,编码聚羟基烷酸(PHA)合酶,phaA,编码 3-酮硫解酶,phaB,编码乙酰乙酰辅酶 A(乙酰乙酰-CoA)还原酶。在这项研究中,研究了 phaCAB 操纵子(phaABC、phaACB、phaBAC、phaBCA、phaCAB 和 phaCBA)的基因顺序对基因工程大肠杆菌中表达质粒的影响,以确定产生 UHMW-P(3HB) 的最佳组织。结果表明,P(3HB)分子量和积累水平均取决于相对于启动子的 pha 基因的顺序。在携带 phaBCA 表达质粒的菌株中,获得了最平衡的生产结果。此外,对 P(3HB)生物合成酶的表达水平和活性以及 P(3HB)分子量的分析表明,活性 PHA 合酶的浓度与 P(3HB)分子量呈负相关,与细胞内 P(3HB)含量呈正相关。这一结果表明,PHA 合酶活性水平是产生 UHMW-P(3HB)的限制因素,对 P(3HB)的生产有重大影响。