Mukhamedshin E K, Tarasov V A
Genetika. 1989 Apr;25(4):605-13.
HFETn5, HFETn9 and LFETn9 mutants of Escherichia coli K-12 have been isolated. The frequency of Tn5 precise excision from the chromosomal lac operon is increased 3-660-fold in nine HFETn5 mutants. The majority of these mutations have no influence on the efficiency of precise excision of transposon Tn9, though hfeTn5-04 and hfeTn5-06 mutations decrease excision efficiency 2-13-fold. The Tn9 transposon is excised in HFETn9 mutant about 20-fold more efficiently than in the wild type strain. This mutation does not stimulate excision of Tn5 and Tn10. LfeTn9 mutation decreases excision frequency of Tn9 11-17-fold, but has no effect on Tn5 excision and increases that of Tn10 about 20-fold. The differences in genetic control and mechanisms of excision of the transposons with long and short inverted repeats are discussed.
已分离出大肠杆菌K-12的HFETn5、HFETn9和LFETn9突变体。在九个HFETn5突变体中,从染色体乳糖操纵子精确切除Tn5的频率提高了3至660倍。这些突变中的大多数对转座子Tn9的精确切除效率没有影响,不过hfeTn5 - 04和hfeTn5 - 06突变使切除效率降低了2至13倍。在HFETn9突变体中,Tn9转座子的切除效率比野生型菌株高约20倍。此突变不会刺激Tn5和Tn10的切除。LfeTn9突变使Tn9的切除频率降低11至17倍,但对Tn5切除没有影响,且使Tn10的切除频率提高约20倍。文中讨论了具有长和短反向重复序列的转座子在遗传控制和切除机制上的差异。