North T W, Stafford M E, Mathews C K
J Virol. 1976 Mar;17(3):973-82. doi: 10.1128/JVI.17.3.973-982.1976.
Bacteriophage T4 gene 1 and 42 amber mutants (defective in deoxynucleoside monophosphate kinase and deoxycytidylate hydroxymethylase, respectively) are able to synthesize DNA in cell-free lysates prepared as described by Barry and Alberts (1972), in contrast to their inabliity to do so in plasmolyzed and toluenized cell systems. Addition of extracts containing an active gene 1 or 42 product has no effect on synthesis in lysates defective in the respective gene. Thus, if these enzymes do play additional direct roles in replication, these roles are not manifest in the lysed-cell system. The gene 42 mutant am N122/m, a double mutant bearing an additional defect in DNA polymerase, is unable to synthesize DNA in these lysates. This inability is overcome by addition of extracts containing an active T4 DNA polymerase. m is a leaky amber mutation which reduces DNA polymerase activity to a very low level. However, this level is high enough to allow positive genetic complementation tests with gene 43 mutants. Two other gene 42 amber mutants contain additional defects: am 269 induces only half the normal level of DNA polymerase, and am C87 fails to induce a detectable level of thymidylate synthetase. These defects do not result from pleiotropic effects of the gene 42 mutations. In plasmolyzed cells, temperature-sensitive gene 42 mutants fail to synthesize DNA under conditions where replication forks and 5-hydroxymethyl-dCTP are present. This supports the idea that the gene 42 protein is directly involved in DNA synthesis.
噬菌体T4基因1和42的琥珀突变体(分别在脱氧核苷单磷酸激酶和脱氧胞苷酸羟甲基化酶方面存在缺陷)能够在按照巴里和艾伯茨(1972年)所述方法制备的无细胞裂解物中合成DNA,这与它们在质壁分离和经甲苯处理的细胞系统中无法合成DNA形成对比。添加含有活性基因1或42产物的提取物对相应基因有缺陷的裂解物中的合成没有影响。因此,如果这些酶在复制中确实发挥其他直接作用,那么这些作用在裂解细胞系统中并不明显。基因42突变体am N122/m是一个双重突变体,在DNA聚合酶方面还存在额外缺陷,它无法在这些裂解物中合成DNA。通过添加含有活性T4 DNA聚合酶的提取物可以克服这种无法合成的情况。m是一个渗漏性琥珀突变,它将DNA聚合酶活性降低到非常低的水平。然而,这个水平足以进行与基因43突变体的正向遗传互补测试。另外两个基因42琥珀突变体还存在其他缺陷:am 269诱导的DNA聚合酶水平仅为正常水平的一半,而am C87未能诱导出可检测水平的胸苷酸合成酶。这些缺陷并非由基因42突变的多效性效应导致。在质壁分离的细胞中,温度敏感型基因42突变体在存在复制叉和5-羟甲基-dCTP的条件下无法合成DNA。这支持了基因42蛋白直接参与DNA合成的观点。