Shen C K, Hearst J E
Proc Natl Acad Sci U S A. 1977 Apr;74(4):1363-7. doi: 10.1073/pnas.74.4.1363.
Sequences with 2-fold axes of symmetry have been detected and mapped on the simian virus 40 (SV40) genome by their ability to form hairpin turns in single-stranded SV40 DNA. Supercoiled SV40 DNA (SV40 I) was digested with restriction enzymes EcoRI and HpaII. The resulting linear DNA molecules with lengths of the complete SV40 genome were then denatured and photochemically reacted with 4,5',8-trimethylpsoralen (trioxsalen) at 16.0 +/- 0.5 degrees and different ionic strengths. Secondary structures on the single-stranded SV40 DNA were crosslinked and their positions analyzed by electron microscopy. There were no observable hairpin turns on the denatured SV40 DNA when it was photoreacted in 1 mM Tris-HCl/0.1 mM EDTA at pH 7.0. In 20 mM NaCl, one specific hairpin turn was detected at 0.17 +/- 0.02 map units on the map of EcoRI-digested SV40 DNA, where the 3' ends of early 19S mRNA, late 19S mRNA, and 16S mRNA of SV40 have been mapped. In 30 mM NaCl there are five more major hairpin turns besides the most stable one. The centers of four of these specific hairpin turns were mapped at 0.26 +/- 0.02, 0.68 +/- 0.03, 0.84 +/- 0.02, and 0.94 +/- 0.01 units on the map of EcoRI-digested SV40. The fifth one is at or near the unique EcoRI cleavage site on SV40 DNA. The possible functions of these sequences are discussed in terms of the nature of the promoter sites, the replication origin, the processing of RNA precursors, and regulation at the translational level.
通过在单链猴病毒40(SV40)DNA中形成发夹结构的能力,已检测到具有2重对称轴的序列并将其定位在SV40基因组上。超螺旋SV40 DNA(SV40 I)用限制性内切酶EcoRI和HpaII进行消化。然后将得到的长度为完整SV40基因组的线性DNA分子变性,并在16.0±0.5℃和不同离子强度下与4,5',8-三甲基补骨脂素(三甲沙林)进行光化学反应。单链SV40 DNA上的二级结构被交联,并通过电子显微镜分析其位置。当变性的SV40 DNA在pH 7.0的1 mM Tris-HCl/0.1 mM EDTA中进行光反应时,未观察到发夹结构。在20 mM NaCl中,在EcoRI消化的SV40 DNA图谱上0.17±0.02图单位处检测到一个特定的发夹结构,SV40早期19S mRNA、晚期19S mRNA和16S mRNA的3'端已定位在此处。在30 mM NaCl中,除了最稳定的一个发夹结构外,还有另外五个主要的发夹结构。这些特定发夹结构中的四个中心在EcoRI消化的SV40图谱上分别定位在0.26±0.02、0.68±0.03、0.84±0.02和0.94±0.01单位处。第五个发夹结构位于SV40 DNA上独特的EcoRI切割位点处或其附近。根据启动子位点的性质、复制起点、RNA前体的加工以及翻译水平的调控,讨论了这些序列可能的功能。