Sambrook J, Sugden B, Keller W, Sharp P A
Proc Natl Acad Sci U S A. 1973 Dec;70(12):3711-5. doi: 10.1073/pnas.70.12.3711.
To determine the orientation of transcription of the E and L strands of DNA from simian virus 40 (SV40), we used linear DNA prepared by cleavage of superhelical viral DNA by endonuclease R.R(1) from Escherichia coli as a primer.template for DNA polymerase. The resulting molecules, which were labeled only at the 3' end of each DNA strand, were then cleaved with Hemophilus parainfluenzae endonuclease Hpa I. The ensuing four DNA fragments, whose locations on the viral genome are known, were separated by electrophoresis, denatured, and hybridized to asymmetric SV40 complementary RNA. From the pattern of hybridization of the fragments containing the labeled 3' ends, we conclude that transcription of SV40 proceeds in a clockwise direction on the L strand and in a counterclockwise direction on the E strand as drawn on the conventional SV40 map. To map the "early" and "late" regions of the viral genome, we extracted RNA from lytically infected cells and hybridized it to the separated strands of the four fragments of (32)P-labeled SV40 DNA. Early after infection, RNA complementary to part of the E strand of the contiguous fragments A and C was detected. Late polysomal RNA was complementary to part of the L strand sequences of fragments A and C and to the total L strand sequence of fragments B and D.
为了确定猴病毒40(SV40)DNA的E链和L链的转录方向,我们使用通过大肠杆菌的核酸内切酶R.R(1)切割超螺旋病毒DNA制备的线性DNA作为DNA聚合酶的引物模板。然后,仅在每条DNA链的3'末端进行标记的所得分子用副流感嗜血杆菌核酸内切酶Hpa I进行切割。随后产生的四个DNA片段,其在病毒基因组上的位置是已知的,通过电泳分离、变性,并与不对称的SV40互补RNA杂交。根据含有标记3'末端的片段的杂交模式,我们得出结论,如在传统的SV40图谱上所示,SV40的转录在L链上沿顺时针方向进行,在E链上沿逆时针方向进行。为了绘制病毒基因组的“早期”和“晚期”区域,我们从裂解感染的细胞中提取RNA,并将其与(32)P标记的SV40 DNA的四个片段的分离链杂交。感染后早期,检测到与相邻片段A和C的E链部分互补的RNA。晚期多聚核糖体RNA与片段A和C的L链序列部分互补,与片段B和D的整个L链序列互补。