Winkler M E, Roth D J, Hartman P E
J Bacteriol. 1978 Feb;133(2):830-43. doi: 10.1128/jb.133.2.830-843.1978.
Expression of the histidine (his) operon in Salmonella typhimurium was found to be positively correlated with the intracellular level of guanosine tetraphosphate (ppGpp). Limitation for amino acids other than histidine elicited a histidine-independent metabolic regulation of the operon. In bacteria grown at decreased growth rates, his operon expression was metabolically regulated up to a point, after which further decreases in growth rate no longer resulted in further enhancement of operon expression. Studies using strains carrying various regulatory and deletion mutations indicated that metabolic regulation is achieved predominantly by increased RNA chain initiations at the primary (P1) and internal (P2) promoters. Metabolic regulation ordinarly did not involve changes in RNA chain terminations at the attenuator site of the his operon. A model is proposed that involves ppGpp-induced changes in RNA polymerase initiation specificity at particular promoters. A second, special form of metabolic regulation may operate which also is histidine independent, but does involve relief of attenuation.
已发现鼠伤寒沙门氏菌中组氨酸(his)操纵子的表达与鸟苷四磷酸(ppGpp)的细胞内水平呈正相关。除组氨酸外的氨基酸限制引发了该操纵子不依赖组氨酸的代谢调控。在生长速率降低的细菌中,his操纵子的表达在一定程度上受到代谢调控,在此之后生长速率的进一步降低不再导致操纵子表达的进一步增强。使用携带各种调控和缺失突变的菌株进行的研究表明,代谢调控主要是通过初级(P1)和内部(P2)启动子处RNA链起始的增加来实现的。代谢调控通常不涉及his操纵子衰减位点处RNA链终止的变化。提出了一个模型,该模型涉及ppGpp诱导的RNA聚合酶在特定启动子处起始特异性的变化。可能存在第二种特殊形式的代谢调控,它同样不依赖组氨酸,但确实涉及衰减的缓解。