Sellers M I, Tokunaga T
J Exp Med. 1966 Feb 1;123(2):327-40. doi: 10.1084/jem.123.2.327.
Results of the previous investigation in which it was found that DNA extracted from D29 mycobacteriophage was infectious for Mycobacterium smegmatis 607, have been extended. DNA extracted from mycobacteriophage D4 and D32 produced plaques when plated on their respective hosts; D28 DNA, extracted in the same manner and tested under similar conditions, failed to show infectivity. Species barriers were not crossed by mycobacteriophage DNA; bacteria resistant to intact phage were not infected with the phage DNA. The efficiency of plating of the DNA is very much lower than that of intact phage; infection of a given host was not accomplished by DNA when titration for plaque formation by the intact phage was less than 10(9) PFU. The base composition of DNA extracted from the four mycobacteriophages and the three propagating hosts was very similar. The bases were paired, adenine with thymine and guanine with cytosine. A relatively higher per cent of guanine-cytosine than of adenine-thymine, was found. The buoyant density of each DNA in CsCl was linearly related to its guanine-cytosine content whereas with the exception of D28 DNA, thermal denaturation temperatures failed to show this relationship. However, the thermal transition profiles were characteristic of double stranded DNA. Additional evidence that D29 DNA forms complexes with basic proteins was obtained. Binding between calf thymus histone and between RNAase and D29 DNA readily occurs with a resultant loss in DNA infectivity. Trypsin and D29 DNA are only weakly reactive.
先前的调查发现,从D29分枝杆菌噬菌体中提取的DNA对耻垢分枝杆菌607具有感染性,该调查结果得到了扩展。从分枝杆菌噬菌体D4和D32中提取的DNA接种到各自宿主上时会产生噬菌斑;以相同方式提取并在相似条件下测试的D28 DNA未显示出感染性。分枝杆菌噬菌体DNA未跨越物种屏障;对完整噬菌体具有抗性的细菌未被噬菌体DNA感染。DNA的平板接种效率远低于完整噬菌体;当完整噬菌体形成噬菌斑的滴定度小于10(9) PFU时,DNA无法感染给定宿主。从四种分枝杆菌噬菌体和三种增殖宿主中提取的DNA的碱基组成非常相似。碱基配对,腺嘌呤与胸腺嘧啶配对,鸟嘌呤与胞嘧啶配对。发现鸟嘌呤 - 胞嘧啶的百分比相对高于腺嘌呤 - 胸腺嘧啶。每种DNA在CsCl中的浮力密度与其鸟嘌呤 - 胞嘧啶含量呈线性关系,然而,除了D28 DNA外,热变性温度并未显示出这种关系。但是,热转变曲线具有双链DNA的特征。获得了D29 DNA与碱性蛋白质形成复合物的额外证据。小牛胸腺组蛋白与RNA酶和D29 DNA之间很容易发生结合,导致DNA感染性丧失。胰蛋白酶与D29 DNA的反应较弱。