Gaal T, Gourse R L
Department of Bacteriology, University of Wisconsin-Madison 53706.
Proc Natl Acad Sci U S A. 1990 Jul;87(14):5533-7. doi: 10.1073/pnas.87.14.5533.
rRNA synthesis in Escherichia coli is subject to at least two regulation systems, growth rate-dependent control and stringent control. The inverse correlation between rRNA synthesis rates and guanosine 3'-diphosphate 5'-diphosphate (ppGpp) levels under various physiological conditions has led to the supposition that ppGpp is the mediator of both control mechanisms by inhibiting transcription from rrn P1 promoters. Recently, relA- spoT- strains have been constructed in which both ppGpp synthesis pathways most likely have been removed (M. Cashel, personal communication). We have confirmed that such strains produce no detectable ppGpp and therefore offer a direct means for testing the involvement of ppGpp in the regulation of rRNA synthesis in vivo. Stringent control was determined by measurement of rRNA synthesis after amino acid starvation, while growth rate control was determined by measurement of rRNA synthesis under different nutritional conditions. As expected, the relA- spoT- strain is relaxed for stringent control. However, growth rate-dependent regulation is unimpaired. These results indicate that growth rate regulation can occur in the absence of ppGpp and imply that ppGpp is not the mediator, or at least is not the sole mediator, of growth rate-dependent control. Therefore, growth rate-dependent control and stringent control may utilize different mechanisms for regulating stable RNA synthesis.
大肠杆菌中的rRNA合成至少受两种调控系统的影响,即生长速率依赖性控制和严谨控制。在各种生理条件下,rRNA合成速率与鸟苷3'-二磷酸5'-二磷酸(ppGpp)水平之间的负相关关系,导致人们推测ppGpp是两种控制机制的介导物,它通过抑制rrn P1启动子的转录来发挥作用。最近,已经构建了relA - spoT - 菌株,其中两种ppGpp合成途径很可能都已被去除(M. Cashel,个人交流)。我们已经证实,这类菌株无法检测到ppGpp的产生,因此为测试ppGpp在体内rRNA合成调控中的作用提供了一种直接方法。通过测量氨基酸饥饿后rRNA的合成来确定严谨控制,而通过测量不同营养条件下rRNA的合成来确定生长速率控制。正如预期的那样,relA - spoT - 菌株在严谨控制方面表现出松弛状态。然而,生长速率依赖性调控并未受到影响。这些结果表明,在没有ppGpp的情况下也能发生生长速率调控,这意味着ppGpp不是生长速率依赖性控制的介导物,或者至少不是唯一的介导物。因此,生长速率依赖性控制和严谨控制可能利用不同的机制来调节稳定RNA的合成。