Division of Applied Life Science (BK21 Program), PMBBRC, Gyeongsang National University, 501 Jinju Dae-ro, Jinju 660-701, Republic of Korea.
J Biotechnol. 2013 Sep 20;167(4):357-64. doi: 10.1016/j.jbiotec.2013.07.023. Epub 2013 Jul 29.
Geraniol is an important industrial material and a potential candidate of advanced biofuels. One challenge of microbial geraniol production is the toxicity to hosts. However, the poor understanding on geraniol tolerance mechanism is an obstacle for developing geraniol tolerant host. This study genome-widely screened a shot-gun DNA library of Escherichia coli and found that recA is able to confer geraniol tolerance in E. coli. The recA knockout mutant was found extremely sensitive to geraniol. Based on our data, it was deciphered that recA provided tolerance through SOS response network responding to DNA damage caused by geraniol. RecA-mediated SOS response activates the homologous recombinational repair by RecB and RecN for corrective DNA maintenance. This protection mechanism suggests an effective strategy to combat geraniol toxicity in E. coli.
香叶醇是一种重要的工业原料,也是先进生物燃料的潜在候选物。微生物香叶醇生产面临的一个挑战是对宿主的毒性。然而,对香叶醇耐受机制的理解不足是开发香叶醇耐受宿主的一个障碍。本研究通过对大肠杆菌的随机 DNA 文库进行全基因组筛选,发现 recA 能够在大肠杆菌中赋予香叶醇耐受性。recA 敲除突变体对香叶醇极其敏感。根据我们的数据,揭示了 recA 通过 SOS 反应网络对香叶醇引起的 DNA 损伤做出响应,从而提供了耐受性。RecA 介导的 SOS 反应激活同源重组修复,由 RecB 和 RecN 进行纠正性 DNA 维护。这种保护机制为对抗大肠杆菌中的香叶醇毒性提供了一种有效的策略。