Zerbib D, Gamas P, Chandler M, Prentki P, Bass S, Galas D
J Mol Biol. 1985 Oct 5;185(3):517-24. doi: 10.1016/0022-2836(85)90068-3.
A systematic study of the specificity of insertion of the transposable element IS1 into small defined-sequence plasmids (pBR322 and derivatives) was conducted to determine the features of the DNA sequence that influence target site selection. We have physically mapped several collections of independent insertions of IS1 into these plasmids and have determined: (1) that about 80% of all insertions occur in the DNA segment (about 200 base-pairs) between the unique EcoRI site of pBR322 and the beginning of the beta-lactamase gene, one of the two regions of high A + T density in this plasmid; (2) that there is a strong orientation effect in this region (almost all IS1 insertions are in one orientation) that depends on both the pBR322 sequence and the environment of the transposon in the donor molecule; and (3) that the orientation effect does not depend on the strong transcription that is directed through this region in pBR322. Furthermore, we have found that insertion of a poly(dA X dT) segment into pBR322 creates an artificial hotspot for IS1 insertion, even though it is not as attractive for insertion as the above-mentioned major hotspot. Our observations suggest that an interplay between several properties of the target sequences and the sequence environment of the donor transposon is responsible for the observed specificity of position and orientation. One of the possibilities discussed here is that preferred "entry-sites", or "signal" sequences, for the transposition complex play a major role in determining the positions and orientations of IS1 insertions.
开展了一项关于转座元件IS1插入小的特定序列质粒(pBR322及其衍生物)特异性的系统研究,以确定影响靶位点选择的DNA序列特征。我们已对IS1独立插入这些质粒的多个集合进行了物理图谱绘制,并确定:(1)所有插入中约80%发生在pBR322的唯一EcoRI位点与β-内酰胺酶基因起始位点之间的DNA片段(约200个碱基对)中,该片段是该质粒中两个高A+T密度区域之一;(2)该区域存在强烈的方向效应(几乎所有IS1插入都在一个方向),这取决于pBR322序列和供体分子中转座子的环境;(3)方向效应不依赖于pBR322中通过该区域的强转录。此外,我们发现将一段聚(dA×dT)片段插入pBR322会产生一个IS1插入的人工热点,尽管它对插入的吸引力不如上述主要热点。我们的观察结果表明,靶序列的几种特性与供体转座子的序列环境之间的相互作用导致了观察到的位置和方向特异性。这里讨论的一种可能性是,转座复合物的优选“进入位点”或“信号”序列在确定IS1插入的位置和方向中起主要作用。