Graduate School of Bioresources, Mie University, Mie, Japan.
J Basic Microbiol. 2018 May;58(5):448-458. doi: 10.1002/jobm.201700620. Epub 2018 Feb 1.
Although Ruminiclostridium josui (formerly Clostridium josui), a strictly anaerobic mesophilic cellulolytic bacterium, is a promising candidate for biomass utilization via consolidated bioprocessing, its host-vector system has not yet been established. The existence of a restriction and modification system is a significant barrier to the transformation of R. josui. Here, we partially purified restriction endonuclease RjoI from R. josui cell extract using column chromatography. Further characterization showed that RjoI is an isoschizomer of DpnI, recognizing the sequence 5'-G ATC-3', where the A nucleotide is Dam-methylated. RjoI cleaved the recognition sequence between the A and T nucleotides, producing blunt ends. We then successfully introduced plasmids prepared from Escherichia coli C2925 (dam /dcm ) into R. josui by electroporation. The highest transformation efficiency of 6.6 × 10 transformants/μg of DNA was obtained using a square-wave pulse (750 V, 1 ms). When the R. josui cel48A gene, devoid of the dockerin-encoding region, cloned into newly developed plasmid pKKM801 was introduced into R. josui, a truncated form of RjCel48A, RjCel48AΔdoc, was detected in the culture supernatant but not in the intracellular fraction. This is the first report on the establishment of fundamental technology for molecular breeding of R. josui.
尽管严格厌氧的嗜温纤维分解菌鲁米诺梭菌(Ruminiclostridium josui)(以前称为 Clostridium josui)是通过整合生物加工利用生物质的有前途的候选物,但它的宿主载体系统尚未建立。限制和修饰系统的存在是 R. josui 转化的重大障碍。在这里,我们使用柱层析法从 R. josui 细胞提取物中部分纯化了限制内切酶 RjoI。进一步的表征表明,RjoI 是 DpnI 的等同物,识别序列为 5'-G ATC-3',其中 A 核苷酸被 Dam 甲基化。RjoI 在 A 和 T 核苷酸之间切割识别序列,产生钝端。然后,我们通过电穿孔成功地将从大肠杆菌 C2925(dam / dcm)制备的质粒引入 R. josui。使用方波脉冲(750 V,1 ms)获得了最高 6.6×10 个转化体/μg DNA 的转化效率。当缺乏 dockerin 编码区的 R. josui cel48A 基因被克隆到新开发的质粒 pKKM801 中并引入 R. josui 时,在培养上清液中检测到 RjCel48A 的截断形式 RjCel48AΔdoc,但在细胞内部分中未检测到。这是关于建立 R. josui 分子育种基本技术的第一份报告。