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DNA sequence organization of IS10-right of Tn10 and comparison with IS10-left

机译:Tn10的IS10右侧的DNA序列组织以及与IS10的左侧比较

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摘要

Tn10 is 9,300 base pairs long and has inverted repeats of an insertion sequence (IS)-like sequence (IS10) at its ends. IS10-right provides all of the Tn10-encoded functions used for normal Tn10 transposition. IS10-left can also provide these functions but at a much reduced level. We report here the complete nucleotide sequence of IS10-right and a partial sequence of IS10-left. From our analysis of this information, we draw the following conclusions. (i) IS10-right is 1,329 base pairs long. Like most IS elements, it has short (23-base pair) nearly perfect inverted repeats at its termini. We can divide these 23-base pair segments into at least two functionally distinct parts. IS10-right also shares with other elements the presence of a single long coding region that extends the entire length of the element. Genetic evidence suggests that this coding region specifies an essential IS10 transposition function. A second, overlapping, coding region may or may not be important. (ii) The “outside” end of IS10-right contains three suggestively positioned internal symmetries. Two of these (A1 and A2) are nearly identical in sequence. Symmetry A1 overlaps the terminal inverted repeat; symmetry A2 overlaps the promoter shown elsewhere to be responsible for expression of IS10 functions and lies very near a second characterized promoter that directs transcription outward across the end of IS10. Symmetries A1 and A2 may play a role in modulation of Tn10 activity and are likely to function at least in part as protein recognition sites. We propose that the third symmetry (B) acts to prevent fortuitous expression of IS10 functions from external promoters. The transcripts from such promoters can assume a stable secondary structure in which the AUG start codon of the long coding region is sequestered in a region of double-stranded mRNA formed by pairing between the two halves of symmetry B. (iii) IS10-left differs from IS10-right at many nucleotide positions in both the presumptive regulatory region and the long coding region. The available evidence suggests that Tn10 may be older than other analyzed drug-resistance transposons and thus have had more time to accumulate mutational changes.
机译:Tn10长9,300个碱基对,并且在其末端具有插入序列(IS)样序列(IS10)的反向重复。 IS10-right提供了用于正常Tn10换位的所有Tn10编码功能。左边的IS10也可以提供这些功能,但是级别要低得多。我们在此报告IS10-right的完整核苷酸序列和IS10-left的部分序列。通过对这些信息的分析,我们得出以下结论。 (i)IS10-right长1,329个碱基对。像大多数IS元素一样,其末端具有短的(23个碱基对)几乎完美的反向重复序列。我们可以将这23个碱基对的片段分为至少两个功能不同的部分。 IS10-right还与其他元素共享单个长编码区域的存在,该区域扩展了元素的整个长度。遗传证据表明,该编码区指定了基本的IS10转座功能。第二个重叠的编码区域可能重要,也可能不重要。 (ii)IS10-right的“外”端包含三个暗示性定位的内部对称性。其中两个(A1和A2)的顺序几乎相同。对称性A1与末端反向重复重叠;对称性A2与别处所示负责IS10功能表达的启动子重叠,并且非常靠近第二个特征性启动子,该启动子将转录引导到整个IS10末端。对称性A1和A2可能在Tn10活性的调节中起作用,并且可能至少部分充当蛋白质识别位点。我们建议第三种对称性(B)的作用是防止来自外部启动子的IS10功能的偶然表达。来自此类启动子的转录本可以采用稳定的二级结构,其中长编码区的AUG起始密码子被隔离在对称B的两半之间配对形成的双链mRNA区域中。(iii)IS10-left不同在推测的调节区和长编码区中的许多核苷酸位置处,从IS10右起。现有证据表明,Tn10可能比其他已分析的耐药性转座子更早,因此有更多时间积累突变变化。

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