Sutanto Yuri, Shoemaker Nadja B, Gardner Jeffrey F, Salyers Abigail A
Department of Microbiology, University of Illinois, Urbana, Illinois 61801, USA.
Mol Microbiol. 2002 Dec;46(5):1239-46. doi: 10.1046/j.1365-2958.2002.03210.x.
Conjugative transposons are integrated elements that excise from the chromosome, then transfer by conjugation to a recipient in which they integrate once again. Recently, a gene, designated exc, was shown to be essential for excision of the Bacteroides conjugative transposon (CTnDOT) from the chromosome. The deduced amino acid sequence of Exc had low amino acid sequence similarity to DNA topoisomerase III, an enzyme that relaxes DNA supercoils. This similarity raised the question of whether Exc protein was a topoisomerase and, if so, whether topoisomerase activity might contribute to the excision process. Here, we demonstrate that Exc does have topoisomerase activity in vitro. Exc relaxed supercoiled DNA, had a conserved tyrosine as its active site and required magnesium ions for its relaxation activity. However, although mutation of the catalytic tyrosine of Exc to phenylalanine abolished the ability of the enzyme to relax DNA supercoils in vitro, the mutation did not abolish the ability of the protein to mediate excision in vivo. This surprising result suggests that CTnDOT excision does not rely on the topoisomerase activity of Exc in vivo.
接合转座子是可从染色体上切除的整合元件,然后通过接合作用转移至受体细胞,并在其中再次整合。最近,一个名为exc的基因被证明对于从染色体上切除拟杆菌接合转座子(CTnDOT)至关重要。推导的Exc氨基酸序列与DNA拓扑异构酶III的氨基酸序列相似性较低,DNA拓扑异构酶III是一种可使DNA超螺旋松弛的酶。这种相似性引发了一个问题,即Exc蛋白是否是一种拓扑异构酶,如果是,拓扑异构酶活性是否可能有助于切除过程。在此,我们证明Exc在体外确实具有拓扑异构酶活性。Exc可使超螺旋DNA松弛,具有一个保守的酪氨酸作为其活性位点,并且其松弛活性需要镁离子。然而,尽管将Exc的催化酪氨酸突变为苯丙氨酸消除了该酶在体外使DNA超螺旋松弛的能力,但该突变并未消除该蛋白在体内介导切除的能力。这一惊人结果表明,CTnDOT在体内的切除并不依赖于Exc的拓扑异构酶活性。