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在 hsdS 基因中存在的同核苷酸序列内缺失一个核苷酸会改变 NgoAV 型 I 限制修饰系统的 DNA 序列特异性。

Deletion of one nucleotide within the homonucleotide tract present in the hsdS gene alters the DNA sequence specificity of type I restriction-modification system NgoAV.

机构信息

Institute of Microbiology, University of Warsaw, ul. Miecznikowa 1, 02-096 Warsaw, Poland.

出版信息

J Bacteriol. 2011 Dec;193(23):6750-9. doi: 10.1128/JB.05672-11. Epub 2011 Oct 7.

Abstract

As a result of a frameshift mutation, the hsdS locus of the NgoAV type IC restriction and modification (RM) system comprises two genes, hsdS(NgoAV1) and hsdS(NgoAV2). The specificity subunit, HsdS(NgoAV), the product of the hsdS(NgoAV1) gene, is a naturally truncated form of an archetypal specificity subunit (208 N-terminal amino acids instead of 410). The presence of a homonucleotide tract of seven guanines (poly[G]) at the 3' end of the hsdS(NgoAV1) gene makes the NgoAV system a strong candidate for phase variation, i.e., stochastic addition or reduction in the guanine number. We have constructed mutants with 6 guanines instead of 7 and demonstrated that the deletion of a single nucleotide within the 3' end of the hsdS(NgoAV1) gene restored the fusion between the hsdS(NgoAV1) and hsdS(NgoAV2) genes. We have demonstrated that such a contraction of the homonucleotide tract may occur in vivo: in a Neisseria gonorrhoeae population, a minor subpopulation of cells appeared to have only 6 guanines at the 3' end of the hsdS(NgoAV1) gene. Escherichia coli cells carrying the fused gene and expressing the NgoAVΔ RM system were able to restrict λ phage at a level comparable to that for the wild-type NgoAV system. NgoAV recognizes the quasipalindromic interrupted sequence 5'-GCA(N(8))TGC-3' and methylates both strands. NgoAVΔ recognizes DNA sequences 5'-GCA(N(7))GTCA-3' and 5'-GCA(N(7))CTCA-3', although the latter sequence is methylated only on the complementary strand within the 5'-CTCA-3' region of the second recognition target sequence.

摘要

由于移码突变,NgoAV 型 IC 限制修饰(RM)系统的 hsdS 基因座包含两个基因,hsdS(NgoAV1)和 hsdS(NgoAV2)。特异性亚基 HsdS(NgoAV)是 hsdS(NgoAV1)基因的产物,是典型特异性亚基的天然截断形式(208 个 N 端氨基酸而不是 410 个)。hsdS(NgoAV1)基因 3'端存在一个七鸟嘌呤(poly[G])的同源核苷酸序列,这使得 NgoAV 系统成为相位变异的有力候选者,即随机增加或减少鸟嘌呤的数量。我们构建了 6 个而不是 7 个鸟嘌呤的突变体,并证明了 hsdS(NgoAV1)基因 3'端单个核苷酸的缺失恢复了 hsdS(NgoAV1)和 hsdS(NgoAV2)基因之间的融合。我们已经证明,这种同源核苷酸序列的收缩可能在体内发生:在淋球菌种群中,一个次要的细胞亚群似乎在 hsdS(NgoAV1)基因的 3'端只有 6 个鸟嘌呤。携带融合基因并表达 NgoAVΔ RM 系统的大肠杆菌细胞能够以与野生型 NgoAV 系统相当的水平限制 λ 噬菌体。NgoAV 识别准回文交错序列 5'-GCA(N(8))TGC-3'并修饰两条链。NgoAVΔ 识别 DNA 序列 5'-GCA(N(7))GTCA-3'和 5'-GCA(N(7))CTCA-3',尽管后一个序列仅在第二个识别靶序列 5'-CTCA-3'区域的互补链上被甲基化。

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