Köroğlu Türkan Ebru, Kurt-Gür Günseli, Unlü Emine Canan, Yazgan-Karataş Ayten
Molecular Biology-Biotechnology and Genetics Research Center, Istanbul Technical University, Maslak, Istanbul, Turkey.
Antonie Van Leeuwenhoek. 2008 Oct;94(3):471-9. doi: 10.1007/s10482-008-9265-8. Epub 2008 Jul 6.
Using transposon mutagenesis in Bacillus subtilis PY79, three independent mutants defective in production of bacilysin were isolated. To identify the genes in these mutant loci affecting bacilysin biosynthesis, the inserted transposon and its flanking regions were cloned and sequenced from each mutant. Transposon insertions in these three mutants were found to be in the yvfI gene which encodes an unknown protein similar to GntR family transcriptional regulators. For further confirmation, deletion mutants were constructed in which nucleotides 196-314 of the yvfI gene were removed. All resulting yvfI (Delta196-314)::spc deletion mutants exhibited bacilysin-negative phenotypes, as in the case of the yvfI::Tn10::spc insertional mutants. The lacR gene, encoding a transcriptional regulator, resides immediately downstream from the yvfI gene. Therefore, an insertion mutation was created in the lacR gene to demonstrate that the bacilysin negative phenotype is actually due to the mutation in the yvfI gene and not a polar effect of yvfI mutation on the downstream gene. As expected, all resulting lacR mutant derivatives of PY79 still produced bacilysin.
在枯草芽孢杆菌PY79中利用转座子诱变技术,分离出了三个独立的杆菌溶素产生缺陷型突变体。为了鉴定这些影响杆菌溶素生物合成的突变位点中的基因,从每个突变体中克隆并测序了插入的转座子及其侧翼区域。发现这三个突变体中的转座子插入位于yvfI基因中,该基因编码一种与GntR家族转录调节因子相似的未知蛋白质。为了进一步证实,构建了缺失突变体,其中yvfI基因的196 - 314位核苷酸被去除。所有产生的yvfI(Delta196 - 314)::spc缺失突变体都表现出杆菌溶素阴性表型,就像yvfI::Tn10::spc插入突变体的情况一样。编码转录调节因子的lacR基因紧邻yvfI基因下游。因此,在lacR基因中产生了一个插入突变,以证明杆菌溶素阴性表型实际上是由于yvfI基因中的突变,而不是yvfI突变对下游基因的极性效应。正如预期的那样,所有产生的PY79的lacR突变衍生物仍然产生杆菌溶素。