Department of Biological Sciences, University at Buffalo, Buffalo, NY 14260, USA.
J Bacteriol. 2011 Jul;193(13):3313-23. doi: 10.1128/JB.00119-11. Epub 2011 May 6.
Our data show that unlike bacteriophage λ, repressor bound at O(L) of bacteriophage 933W has no role in regulation of 933W repressor occupancy of 933W O(R)3 or the transcriptional activity of 933W P(RM). This finding suggests that a cooperative long-range loop between repressor tetramers bound at O(R) and O(L) does not form in bacteriophage 933W. Nonetheless, 933W forms lysogens, and 933W prophage display a threshold response to UV induction similar to related lambdoid phages. Hence, the long-range loop thought to be important for constructing a threshold response in lambdoid bacteriophages is dispensable. The lack of a loop requires bacteriophage 933W to use a novel strategy in regulating its lysis-lysogeny decisions. As part of this strategy, the difference between the repressor concentrations needed to bind O(R)2 and activate 933W P(RM) transcription or bind O(R)3 and repress transcription from P(RM) is <2-fold. Consequently, P(RM) is never fully activated, reaching only ∼25% of the maximum possible level of repressor-dependent activation before repressor-mediated repression occurs. The 933W repressor also apparently does not bind cooperatively to the individual sites in O(R) and O(L). This scenario explains how, in the absence of DNA looping, bacteriophage 933W displays a threshold effect in response to DNA damage and suggests how 933W lysogens behave as "hair triggers" with spontaneous induction occurring to a greater extent in this phage than in other lambdoid phages.
我们的数据表明,与噬菌体 λ不同,在噬菌体 933W 中,结合在 O(L)上的阻遏物对于调节 933W 阻遏物占据 933W O(R)3 或 933W P(RM)的转录活性没有作用。这一发现表明,在噬菌体 933W 中,结合在 O(R)和 O(L)上的阻遏物四聚体之间没有形成协同的长程环。尽管如此,933W 仍能形成溶原菌,并且 933W 噬菌体显示出对 UV 诱导的阈值反应类似于相关的 λ样噬菌体。因此,对于构建 λ样噬菌体的阈值反应至关重要的长程环是可有可无的。缺少环要求噬菌体 933W 使用一种新策略来调节其裂解-溶原决策。作为该策略的一部分,结合 O(R)2 并激活 933W P(RM)转录或结合 O(R)3 并抑制从 P(RM)转录所需的阻遏物浓度之间的差异<2 倍。因此,P(RM)从未被完全激活,在阻遏物介导的抑制发生之前,仅达到阻遏物依赖性激活的最大可能水平的约 25%。933W 阻遏物显然也不会协同结合到 O(R)和 O(L)中的各个位点。这种情况解释了在没有 DNA 环的情况下,噬菌体 933W 如何对 DNA 损伤做出阈值反应,并表明 933W 溶原菌如何作为“扳机”行为,在这种噬菌体中自发诱导的程度比其他 λ样噬菌体更大。