Sako T, Sakakibara Y
Mol Gen Genet. 1980;179(3):521-6. doi: 10.1007/BF00271741.
The defects of temperature-sensitive dnaA and dnaN mutants of Escherichia coli are complemented by a recombinant lambda phage, which carries the bacterial DNA segment composed of two EcoRI segments of 1.0 and 3.3 kilobases. Derivatives of the phage, which have an insertion segment of Tn3 in the dnaA gene, are much less active in expressing the dnaN gene function than the parent phage. The dnaN gene activity was determined as the efficiency of superinfecting phage to suppress loss of the viability of lambda lysogenic dnaN59 cells at the non-permissive temperature. Deletions that include the end of the dnaA gene distal to the dnaN gene also reduce the expression of the dnaN gene function. Deletion and insertion in the dnaN gene do not affect the expression of the dnaA gene function. The expression of the dnaN gene function by the dnaA- dnaN+ phages remains weak upon simultaneous infection with dnaA+ dnaN- phages. Thus the insertion and deletion of the dnaA gene influence in cis the expresion of the dnaN gene. We propose that the dnaA and dnaN genes constitute an operon, where the former is upstream to the latter.
大肠杆菌温度敏感型 dnaA 和 dnaN 突变体的缺陷可被一种重组 λ 噬菌体互补,该噬菌体携带由 1.0 和 3.3 千碱基的两个 EcoRI 片段组成的细菌 DNA 片段。在 dnaA 基因中有 Tn3 插入片段的噬菌体衍生物,在表达 dnaN 基因功能方面比亲本噬菌体的活性低得多。dnaN 基因活性通过超感染噬菌体抑制 λ 溶原性 dnaN59 细胞在非允许温度下活力丧失的效率来确定。包括 dnaN 基因远端的 dnaA 基因末端的缺失也会降低 dnaN 基因功能的表达。dnaN 基因中的缺失和插入不影响 dnaA 基因功能的表达。当与 dnaA + dnaN - 噬菌体同时感染时,dnaA - dnaN + 噬菌体对 dnaN 基因功能的表达仍然较弱。因此,dnaA 基因的插入和缺失顺式影响 dnaN 基因的表达。我们提出 dnaA 和 dnaN 基因构成一个操纵子,其中前者位于后者的上游。