Wu M, Davidson N
Proc Natl Acad Sci U S A. 1975 Nov;72(11):4506-10. doi: 10.1073/pnas.72.11.4506.
A method for visualizing RNA-DNA duplex regions along a single strand of DNA in the electron microscope is described. A preparation of RNA molecules is hybridized to a long DNA strand containing the coding sequences (genes) for some of the RNAs. T4 gene 32 protein, which binds selectively and cooperatively only to the single-strand regions, is added, followed by glutaraldehyde. The resulting nucleic acid-gene 32 complex is adsorbed to the surface of an electron microscope grid in the presence of ethidium bromide. The single-strand regions are relatively thick (8.5 nm) compared to the duplex (RNA-DNA hybrid) regions (3.5 nm), so that the two kinds of regions are readily recognized by electron microscopy. In favorable cases, tRNA-DNA hybrids of length about 80 nucleotide pairs can be recognized (although with difficulty). The positions of a number of interesting genetic sequences on the DNA of the transducing phage phi80d3ilvsu+7 have been mapped. The r strand contains 16S, 23S, and 5S rRNA coding sequences in that order. The spacer between 16S and 23S genes has a length of 500 nucleotides and contains the coding sequence for a tRNA2Glu gene in agreement with previous biochemical observations. The spacer between the 23S and 5S genes has a length of 180 nucleotides. The su+7 tRNATrp coding sequence has been mapped on the l strand at a position just to the left of the ilv genes. Secondary structure loops due to short inverted repeat sequences flanking the 16S, 23S, tRNATrp, and F sequences in the DNA have been observed.
本文描述了一种在电子显微镜下沿单链DNA可视化RNA-DNA双链区域的方法。将RNA分子制剂与一条长DNA链杂交,该DNA链包含一些RNA的编码序列(基因)。加入仅选择性且协同结合单链区域的T4基因32蛋白,随后加入戊二醛。在溴化乙锭存在下,将所得核酸-基因32复合物吸附到电子显微镜网格表面。与双链(RNA-DNA杂交)区域(3.5纳米)相比,单链区域相对较厚(8.5纳米),因此通过电子显微镜很容易识别这两种区域。在有利的情况下,可以识别长度约为80个核苷酸对的tRNA-DNA杂交体(尽管有困难)。已经绘制了转导噬菌体phi80d3ilvsu + 7的DNA上许多有趣遗传序列的位置。r链依次包含16S、23S和5S rRNA编码序列。16S和23S基因之间的间隔区长度为500个核苷酸,并且与先前的生化观察结果一致,包含tRNA2Glu基因的编码序列。23S和5S基因之间的间隔区长度为180个核苷酸。su + 7 tRNATrp编码序列已定位在l链上ilv基因左侧的位置。已经观察到DNA中16S、23S、tRNATrp和F序列侧翼的短反向重复序列导致的二级结构环。