Glinert S J, Luftig R B
J Virol. 1977 Jun;22(3):758-77. doi: 10.1128/JVI.22.3.758-777.1977.
We have utilized the gene 49(-) mutant-infected cells of bacteriophage T4D to accumulate large numbers of nucleic acid-protein intermediate head structures. These heads were used as substrates for experiments in the investigations of the mechanism of DNA packaging. Specifically, we have examined: (i) the susceptibility of the DNA in these structures to digestion by a variety of nucleases after a series of increasing temperature pulses from 25 to 100 degrees C, (ii) the physicochemical characteristics of the DNA inside these heads, and (iii) the mechanism by which proteins are displaced from the interior of the head after treatment with basic proteins. We isolated DNA from these gene 49(-) heads by use of gradient centrifugation procedures. The DNA had a molecular weight of 8 x 10(6) and a density of 1.697 +/- 0.005 g/cm(3), and it contained a short resistant fraction (SRF) which, when associated with the gene 49(-) heads, exhibited AT-protected regions that were not susceptible to micrococcal nuclease digestion. Such a fraction may contain pieces which are important in the initial association of the DNA with the prohead. Exposure of the gene 49(-) intermediate capsid structures to basic proteins, such as bovine trypsin inhibitor, lysozyme, and l-polylysine-70, caused a displacement of an amorphous-appearing structure which may be a complex of the gene 49(-) DNA and interior components of the capsid (e.g., internal proteins, polyamines). Our general conclusion is that in the gene 49(-) intermediate head structures which are only partly filled with DNA, this DNA is held inside the head by strong electrostatic linkages with interior polypeptides and polyamines.
我们利用噬菌体T4D的基因49(-)突变体感染的细胞来积累大量核酸-蛋白质中间体头部结构。这些头部被用作研究DNA包装机制实验的底物。具体而言,我们研究了:(i) 在从25℃到100℃进行一系列递增温度脉冲后,这些结构中的DNA对多种核酸酶消化的敏感性;(ii) 这些头部内部DNA的物理化学特性;(iii) 用碱性蛋白质处理后蛋白质从头部内部被置换的机制。我们通过梯度离心程序从这些基因49(-)头部中分离出DNA。该DNA的分子量为8×10(6),密度为1.697±0.005 g/cm(3),并且它包含一个短抗性片段(SRF),当与基因49(-)头部相关联时,表现出对微球菌核酸酶消化不敏感的AT保护区域。这样的片段可能包含在DNA与原头部的初始结合中起重要作用的片段。将基因49(-)中间体衣壳结构暴露于碱性蛋白质,如牛胰蛋白酶抑制剂、溶菌酶和l-聚赖氨酸-70,会导致一种无定形外观结构的置换,该结构可能是基因49(-) DNA与衣壳内部成分(如内部蛋白质、多胺)的复合物。我们的总体结论是,在仅部分填充有DNA的基因49(-)中间体头部结构中,该DNA通过与内部多肽和多胺的强静电连接而被保持在头部内部。