Adhikari Rajan P, Novick Richard P
The Kimmel Center for Biology and Medicine of the Skirball Institute, and Departments of Microbiology and Medicine, New York University School of Medicine, New York, NY 10016, USA.
Microbiology (Reading). 2008 Mar;154(Pt 3):949-959. doi: 10.1099/mic.0.2007/012245-0.
This paper describes an investigation of the complex internal regulatory circuitry of the staphylococcal sae locus and the impact of modifying this circuitry on the expression of external genes in the sae regulon. The sae locus contains four genes, the saeR and S two-component signalling module (TCS), and saeP and Q, two upstream genes of hitherto unknown function. It is expressed from two promoters, P(A)sae, which transcribes only the TCS, and P(C)sae, which transcribes the entire locus. A bursa aurealis (bursa) transposon insertion in saeP in a derivative of Staphylococcus aureus NCTC 8325 has a profound effect on sae function. It modifies the activity of the TCS, changing the expression of many genes in the sae regulon, even though transcription of the TCS (from P(A)sae) is not interrupted. Moreover, these effects are not due to disruption of saeP since an in-frame deletion in saeP has essentially no phenotype. The phenotype of S. aureus strain Newman is remarkably similar to that of the saeP : : bursa and this similarity is explained by an amino acid substitution in the Newman saeS gene that is predicted to modify profoundly the signalling function of the protein. This concurrence suggests that the saeP : : bursa insertion affects the signalling function of saeS, a suggestion that is supported by the ability of an saeQR clone, but not an saeR clone, to complement the effects of the saeP : : bursa insertion.
本文描述了对葡萄球菌sae基因座复杂的内部调控电路的研究,以及改变该电路对sae调控子中外源基因表达的影响。sae基因座包含四个基因,即saeR和S双组分信号传导模块(TCS),以及saeP和Q,两个功能未知的上游基因。它由两个启动子表达,P(A)sae仅转录TCS,P(C)sae转录整个基因座。在金黄色葡萄球菌NCTC 8325衍生物的saeP中插入一个bursaaurealis(bursa)转座子对sae功能有深远影响。它改变了TCS的活性,改变了sae调控子中许多基因的表达,尽管TCS(来自P(A)sae)的转录未被中断。此外,这些影响并非由于saeP的破坏,因为saeP中的框内缺失基本没有表型。金黄色葡萄球菌Newman菌株的表型与saeP::bursa的表型非常相似,这种相似性可以通过Newman菌株saeS基因中的一个氨基酸取代来解释,该取代预计会深刻改变该蛋白的信号传导功能。这种一致性表明saeP::bursa插入影响了saeS的信号传导功能,这一推测得到了saeQR克隆(而非saeR克隆)能够弥补saeP::bursa插入影响的能力的支持。