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首页> 外文期刊>The Journal of general physiology >INACTIVATION OF BACTERIOPHAGES BY DECAY OF INCORPORATED RADIOACTIVE PHOSPHORUS
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INACTIVATION OF BACTERIOPHAGES BY DECAY OF INCORPORATED RADIOACTIVE PHOSPHORUS

机译:掺入放射性磷的衰变灭活细菌噬菌体

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The inactivation of the phages T1, T2, T3, T5, T7, and λ by decay of incorporated P32 has been studied. It was found that these phages fall into two classes of sensitivity to P32 decay: at the same specific activity of P32 in their deoxyribonucleic acid (DNA), T2 and T5 are inactivated three times as rapidly as T1, T3, T7, and λ. Since the strains of the first class were found to contain about three times as much total phosphorus per phage particle as those of the second) it appears that the fraction of all P32 disintegrations which are lethal is very nearly the same in all the strains. This fraction α depends on the temperature at which decay is allowed to proceed, being 0.05 at –196°C., 0.1 at +4°C., and 0.3 at 65°C.Decay of P32 taking place only after the penetration of the DNA of a radioactive phage particle into the interior of the bacterial cell can still prevent the reproduction of the parental phage, albeit inactivation now proceeds at a slightly reduced rate. T2 phages inactivated by decay of P32 can be cross-reactivated; i.e ., donate some of their genetic characters to the progeny of a mixed infection with a non-radioactive phage. They do not, however, exhibit any multiplicity reactivation or photoreactivation.The fact that at low temperatures less than one-tenth of the P32 disintegrations are lethal to the phage particle and the dependence of the fraction of lethal disintegrations on temperature can be accounted for by the double stranded structure of the DNA macromolecule.
机译:已经研究了通过掺入的P32的降解使噬菌体T1,T2,T3,T5,T7和λ失活。已发现这些噬菌体对P32衰减分为两类敏感性:在P32的脱氧核糖核酸(DNA)中具有相同的比活性时,T2和T5的失活速度是T1,T3,T7和λ的三倍。由于发现第一类菌株每个噬菌体颗粒的总磷含量约为第二类菌株的三倍,因此看来所有菌株中所有致死性的P32分解比例几乎是相同的。这个分数α取决于允许进行衰减的温度,在–196°C时为0.05,在+ 4°C时为0.1,在65°C时为0.3。放射性噬菌体颗粒进入细菌细胞内部的DNA仍然可以阻止亲代噬菌体的​​繁殖,尽管现在灭活的速率略有降低。通过P32降解而失活的T2噬菌体可以交叉重新激活。即,将其某些遗传特征捐赠给非放射性噬菌体混合感染的后代。但是它们没有表现出多重重活化或光活化。在低温下,不到P32分解的十分之一对噬菌体颗粒具有致命性,并且可以通过以下方式解释致命分解的比例对温度的依赖性: DNA大分子的双链结构。

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