Maturin L J, Curtiss R
J Bacteriol. 1981 May;146(2):552-63. doi: 10.1128/jb.146.2.552-563.1981.
A strain of Escherichia coli K-12 containing mutations that allow for the experimental control of RNA and DNA syntheses was constructed to investigate the role that RNA synthesis plays in conjugational DNA transfer when DNA replication is inhibited. The mutations possessed by this strain and its donor derivatives include: (i) thyA, which blocks synthesis of dTMP, causing a requirement for thymine; (ii) deoC, which blocks breakdown of deoxyribose 5-phosphate, permitting growth with low levels of thymine; (iii) pyrF, which blocks synthesis of UMP from OMP, imposing a requirement for uridine; (iv) cdd and pyrG, which block the deamination of cytidine to uridine and the synthesis of CTP from UTP, respectively, causing a requirement for cytidine; (v) codA and codB, which block the deamination of cytosine to uracil and cytosine transport, respectively, preventing the substitution of cytosine for cytidine; and (vi) dnaB, which blocks vegetative but not conjugational DNA replication at 42 degrees C. DNA synthesis can be blocked in the donor strains by the addition of excess uridine when exogenous thymine is not present. We found that RNA synthesis can also be blocked by addition of excess uridine when exogenous cytidine is not present. Blocking RNA synthesis prior to mating, under conditions in which DNA synthesis either is or is not inhibited, depresses DNA transfer. However, under conditions in which DNA synthesis is inhibited, the blocking of RNA synthesis immediately after mating has commenced had no effect on continued conjugational transfer of DNA. Thus, RNA synthesis is needed to initiate but not to continue conjugational DNA transfer.
构建了一株含有可用于实验控制RNA和DNA合成的突变的大肠杆菌K-12菌株,以研究当DNA复制受到抑制时RNA合成在接合性DNA转移中所起的作用。该菌株及其供体衍生物所具有的突变包括:(i)thyA,其阻断dTMP的合成,导致对胸腺嘧啶的需求;(ii)deoC,其阻断脱氧核糖5-磷酸的分解,允许在低水平胸腺嘧啶条件下生长;(iii)pyrF,其阻断从OMP合成UMP,导致对尿苷的需求;(iv)cdd和pyrG,分别阻断胞苷脱氨生成尿苷以及从UTP合成CTP,导致对胞苷的需求;(v)codA和codB,分别阻断胞嘧啶脱氨生成尿嘧啶以及胞嘧啶转运,防止胞嘧啶替代胞苷;以及(vi)dnaB,其在42℃时阻断营养型DNA复制但不阻断接合性DNA复制。当不存在外源胸腺嘧啶时,通过添加过量尿苷可阻断供体菌株中的DNA合成。我们发现,当不存在外源胞苷时,添加过量尿苷也可阻断RNA合成。在DNA合成被抑制或未被抑制的条件下,在交配前阻断RNA合成会降低DNA转移。然而,在DNA合成被抑制的条件下,交配开始后立即阻断RNA合成对DNA的持续接合转移没有影响。因此,RNA合成是启动接合性DNA转移所必需的,但不是继续进行接合性DNA转移所必需的。