Arai Shuzo, Sakakibara Sayaka, Mareschal Robin, Ooi Toshihiko, Zinn Manfred, Matsumoto Ken'ichiro
Graduate School of Chemical Sciences and Engineering, Hokkaido University, Sapporo, Japan.
Department of Engineering, Hokkaido University, Sapporo, Japan.
Front Bioeng Biotechnol. 2020 Dec 8;8:612991. doi: 10.3389/fbioe.2020.612991. eCollection 2020.
Glycolate (GL)-containing polyhydroxyalkanoate (PHA) was synthesized in expressing the engineered chimeric PHA synthase PhaC and coenzyme A transferase. The cells produced poly[GL--3-hydroxybutyrate (3HB)] with the supplementation of GL and 3HB, thus demonstrating that PhaC is the first known class I PHA synthase that is capable of incorporating GL units. The triad sequence analysis using H nuclear magnetic resonance indicated that the obtained polymer was composed of two distinct regions, a P(GL--3HB) random segment and P(3HB) homopolymer segment. The random segment was estimated to contain a 71 mol% GL molar ratio, which was much greater than the value (15 mol%) previously achieved by using PhaC1 STQK. Differential scanning calorimetry analysis of the polymer films supported the presence of random copolymer and homopolymer phases. The solvent fractionation of the polymer indicated the presence of a covalent linkage between these segments. Therefore, it was concluded that PhaC synthesized a novel random-homo block copolymer, P(GL--3HB)--P(3HB).
通过表达工程化嵌合聚羟基脂肪酸酯(PHA)合酶PhaC和辅酶A转移酶,合成了含乙醇酸(GL)的聚羟基脂肪酸酯(PHA)。在补充GL和3-羟基丁酸(3HB)的情况下,细胞产生了聚[GL - 3-羟基丁酸(3HB)],从而证明PhaC是首个已知的能够掺入GL单元的I类PHA合酶。使用氢核磁共振进行的三元序列分析表明,所获得的聚合物由两个不同区域组成,一个P(GL - 3HB)无规链段和P(3HB)均聚物链段。估计无规链段的GL摩尔比为71 mol%,远高于先前使用PhaC1 STQK所达到的值(15 mol%)。对聚合物薄膜的差示扫描量热分析证实了无规共聚物和均聚物相的存在。聚合物的溶剂分级分离表明这些链段之间存在共价连接。因此,得出结论,PhaC合成了一种新型的无规-均聚物嵌段共聚物,P(GL - 3HB)-P(3HB)。