Leveau J H, van der Meer J R
Swiss Federal Institute for Environmental Science and Technology (EAWAG), Dübendorf.
Gene. 1997 Nov 20;202(1-2):103-14. doi: 10.1016/s0378-1119(97)00460-5.
Directly adjacent to the (tfdT-) tfdCDEF gene cluster for chlorocatechol breakdown on plasmid pJP4 of Ralstonia eutropha (formerly Alcaligenes eutrophus) JMP134, we identified a 0.9-kb DNA element, designated ISJP4, with the typical features of a bacterial insertion sequence. ISJP4 occurs as a single complete copy on plasmid pJP4. About 9 kb away from this copy, in the tfdA-tfdS intergenic region, we found a 71-bp duplication of the ISJP4 right-hand extremity. In addition, we discovered a complete copy of ISJP4 on the chromosome of the R. eutropha JMP134 strain that we use routinely in our laboratory. We suppose that this copy resulted from a recent transposition of the plasmid-borne ISJP4, since it was shown to be lacking from the chromosomes of R. eutropha JMP222 and JMP289, two previously pJP4-cured derivatives of JMP134. By comparing both complete copies and their flanking regions, we could establish that element ISJP4 has a size of 915 bp and is bordered by 18-bp inverted repeats with one mismatch. Based on sequence similarity of its coding regions, ISJP4 could be classified into the IS5 group of the IS4 family of bacterial insertion sequences, where it is mostly related to IS402 of Burkholderia cepacia. A TAA direct repeat, presumably resulting from a duplication of the target site, flanked the chromosomal copy of ISJP4. We could demonstrate that a piece of DNA that is flanked by two complete copies of ISJP4 can be transposed. Even more so, one complete ISJP4 plus its tfdA-tfdS intergenic remnant were sufficient to mediate transposition of intervening DNA. A possible role of ISJP4 in the formation of the tfd pathway genes will be discussed.
在嗜麦芽窄食单胞菌(原嗜碱假单胞菌)JMP134的质粒pJP4上,与用于降解氯儿茶酚的(tfdT-)tfdCDEF基因簇直接相邻的位置,我们鉴定出一个0.9 kb的DNA元件,命名为ISJP4,它具有细菌插入序列的典型特征。ISJP4以单个完整拷贝的形式存在于质粒pJP4上。在距离该拷贝约9 kb处,在tfdA-tfdS基因间隔区,我们发现了ISJP4右手末端的一个71 bp重复序列。此外,我们在我们实验室常用的嗜麦芽窄食单胞菌JMP134菌株的染色体上发现了一个完整的ISJP4拷贝。我们推测这个拷贝是由质粒携带的ISJP4最近发生转座产生的,因为在JMP134的两个先前已去除pJP4的衍生物JMP222和JMP289的染色体上未发现该拷贝。通过比较两个完整拷贝及其侧翼区域,我们确定元件ISJP4的大小为915 bp,由18 bp的反向重复序列界定,其中有一个错配。基于其编码区的序列相似性,ISJP4可归类为细菌插入序列IS4家族的IS5组,在该组中它主要与洋葱伯克霍尔德菌的IS402相关。一个推测由靶位点重复产生的TAA直接重复序列位于ISJP4的染色体拷贝两侧。我们能够证明,一段两侧有两个完整ISJP4拷贝的DNA可以发生转座。更重要的是,一个完整的ISJP4加上其tfdA-tfdS基因间隔区残余足以介导中间DNA的转座。将讨论ISJP4在tfd途径基因形成中的可能作用。