Hung Trinh Viet, Malla Sailesh, Park Byoung Chul, Liou Kwangkyoung, Lee Hei Chan, Sohng Jae Kyung
Department of Pharmaceutical Engineering, Institute ofBiomolecule Reconstruction (IBR), Sun Moon University, Asan 336-708, Korea.
J Microbiol Biotechnol. 2007 Sep;17(9):1538-45.
Clavulanic acid (CA) is an inhibitor of beta-lactamase that is produced from Streptomyces clavuligerus NRRL3585 and is used in combination with other antibiotics in clinical treatments. In order to increase the production of CA, the replicative and integrative expressions of ccaR (encoding for a specific regulator of the CA biosynthetic operon) and cas2 (encoding for the rate-limiting enzyme in the CA biosynthetic pathway) were applied. Six recombinant plasmids were designed for this study. The pIBRHL1, pIBRHL3, and pIBRHL13 were constructed for overexpression, whereas pNQ3, pNQ2, and pNQ1 were constructed for chromosomal integration with ccaR, cas2, and ccaR-cas2, respectively. All of these plasmids were transformed into S. clavuligerus NRRL3585. CA production in transformants resulted in a significantly enhanced amount greater than that of the wild type, a 2.25-fold increase with pIBRHL1, a 9.28-fold increase with pNQ3, a 5.06-fold increase with pIBRHL3, a 2.93-fold increase with pNQ2 integration, a 5.79-fold increase with pIBRHL13, and a 23.8-fold increase with pNQ1. The integrative pNQ1 strain has been successfully applied to enhance production.
克拉维酸(CA)是一种由棒状链霉菌NRRL3585产生的β-内酰胺酶抑制剂,在临床治疗中与其他抗生素联合使用。为了提高CA的产量,应用了ccaR(编码CA生物合成操纵子的特定调节因子)和cas2(编码CA生物合成途径中的限速酶)的复制型和整合型表达。本研究设计了六种重组质粒。构建pIBRHL1、pIBRHL3和pIBRHL13用于过表达,而构建pNQ3、pNQ2和pNQ1分别用于将ccaR、cas2和ccaR-cas2整合到染色体上。所有这些质粒都被转化到棒状链霉菌NRRL3585中。转化体中的CA产量显著高于野生型,pIBRHL1使其增加2.25倍,pNQ3使其增加9.28倍,pIBRHL3使其增加5.06倍,pNQ2整合使其增加2.93倍,pIBRHL13使其增加5.79倍,pNQ1使其增加23.8倍。整合型pNQ1菌株已成功应用于提高产量。