Meissner H C, Meyer J, Maizel J V, Westphal H
Cell. 1977 Feb;10(2):225-35. doi: 10.1016/0092-8674(77)90216-1.
Nuclei of KB cells harvested at late stages of productive infection with adenovirus type 2 (Ad2) harbor RNA molecules which measure up to 13 mum in length, as determined by electron microscopy of denatured RNA. While some of the molecules display features of secondary structure that are characteristic for precursor rRNA, our interest was in those showing almost no intramolecular folding. When hybridized to double stranded viral DNA under conditions which favor RNA:DNA duplex formation, nuclear AD2 RNA displaces the homologous DNA region and generates R loop structures whose size is proportional to the length of the hybridizing RNA. Slowly sedimenting RNA forms small R loops, whereas RNA of high sedimentation velocity generates loops that span a large proportion of the DNA length. Using SV40 sequences within Ad2+ND4 hybrid DNA as a position marker, we oriented many of the R loops on the conventional Ad2 map. Our analysis was restricted to the most abundant sequences of late Ad2 nuclear RNA participating in R loop formation. A small but significant proportion of large RNA generates loops between map positions 0.3 and 0.9. The much more frequent RNA of intermediate size (although larger than mRNA) hybridizes with midpoints near map positions 0.55 and 0.88--that is, near the gene locations for hexon and fiber. Our findings are compatible with the idea that the nuclear RNAs visualized in this study are intermediates in a processing pathway leading to mature forms of late Ad2 mRNA.
在腺病毒2型(Ad2)生产性感染后期收获的KB细胞核含有长度达13μm的RNA分子,这是通过对变性RNA进行电子显微镜观察确定的。虽然一些分子呈现出前体rRNA特有的二级结构特征,但我们感兴趣的是那些几乎没有分子内折叠的分子。当在有利于RNA:DNA双链体形成的条件下与双链病毒DNA杂交时,细胞核中的Ad2 RNA取代同源DNA区域并产生R环结构,其大小与杂交RNA的长度成正比。沉降速度慢的RNA形成小R环,而沉降速度快的RNA产生跨越大部分DNA长度的环。利用Ad2 + ND4杂交DNA中的SV40序列作为位置标记,我们在传统的Ad2图谱上确定了许多R环的方向。我们的分析仅限于参与R环形成的晚期Ad2核RNA中最丰富的序列。一小部分但相当数量的大RNA在图谱位置0.3和0.9之间产生环。更常见的中等大小的RNA(尽管比mRNA大)与图谱位置0.55和0.88附近的中点杂交,即靠近六邻体和纤维的基因位置。我们的发现与以下观点一致,即本研究中观察到的核RNA是导致晚期Ad2 mRNA成熟形式的加工途径中的中间体。