Franklin R M
J Virol. 1967 Feb;1(1):64-75. doi: 10.1128/JVI.1.1.64-75.1967.
Replicative intermediate (RI) is considered to be the double-stranded ribo-nucleic acid (RNA) template for synthesis of viral RNA, with bound nascent single-stranded viral RNA. A theoretical description of RI is based on the analysis of a steady state of biopolymerization on a template which determines not only nucleotide sequence, but also chain length. The hydrodynamic properties of RI isolated from Escherichia coli infected with bacteriophage R17 are compared with those of RNA isolated from R17 (single-stranded RNA) and of replicative form (RF) isolated from E. coli infected with R17. RF is double-stranded RNA template without any single-stranded component. Whereas S for R17 RNA is a function of the ionic strength (Gamma/2) of the solvent, S is almost invariant with Gamma/2 for RF. By contrast S for RI lies between the sedimentation constants for R17 RNA and RF and S varies with Gamma/2 as does R17 RNA. The weight distribution of S for RI demonstrates the heterogeneity of this material, and the variation in the weight distribution with ionic strength demonstrates the duality of structure in RI. Using S and [eta], the Mw for RI is estimated to be 2.6 x 10(6) daltons, as compared with the theoretical value of 2.9 x 10(6) daltons.
复制中间体(RI)被认为是用于合成病毒RNA的双链核糖核酸(RNA)模板,带有结合的新生单链病毒RNA。RI的理论描述基于对模板上生物聚合稳态的分析,该模板不仅决定核苷酸序列,还决定链长。将从感染噬菌体R17的大肠杆菌中分离出的RI的流体动力学性质与从R17中分离出的RNA(单链RNA)以及从感染R17的大肠杆菌中分离出的复制型(RF)的流体动力学性质进行了比较。RF是没有任何单链成分的双链RNA模板。虽然R17 RNA的沉降系数S是溶剂离子强度(γ/2)的函数,但RF的S几乎不随γ/2变化。相比之下,RI的S介于R17 RNA和RF的沉降系数之间,并且S随γ/2的变化与R17 RNA相同。RI的S的重量分布表明了这种物质的异质性,并且重量分布随离子强度的变化表明了RI结构的二元性。使用沉降系数S和特性粘度[η],估计RI的分子量Mw为2.6×10⁶道尔顿,而理论值为2.9×10⁶道尔顿。