首页> 美国卫生研究院文献>Journal of Bacteriology >PigS and PigP Regulate Prodigiosin Biosynthesis in Serratia via Differential Control of Divergent Operons Which Include Predicted Transporters of Sulfur-Containing Molecules
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PigS and PigP Regulate Prodigiosin Biosynthesis in Serratia via Differential Control of Divergent Operons Which Include Predicted Transporters of Sulfur-Containing Molecules

机译:PigS和PigP通过差异性操纵子的差异控制来调节沙雷氏菌中Prodigiosin的生物合成其中包括预测的含硫分子转运蛋白。

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摘要

Serratia sp. strain ATCC 39006 produces the red-pigmented antibiotic prodigiosin. Regulation of prodigiosin biosynthesis involves a complex hierarchy, with PigP a master transcriptional regulator of multiple genes involved in prodigiosin production. The focus of this study was a member of the PigP regulon, pigS, which encodes an ArsR/SmtB family transcriptional repressor. Mutations in pigS reduced production of prodigiosin by decreasing the transcription of the biosynthetic operon. The pigS gene is the first in a four-gene operon, which also encodes three membrane proteins (pmpABC) of the COG2391 (DUF395; YedE/YeeE) and COG0730 (DUF81; TauE/SafE) families that we propose constitute transport components for sulfur-containing compounds. We provide the first experimental evidence confirming the membrane localization of a COG2391 protein, that of PmpB. Divergently transcribed from pigS-pmpABC is a bicistronic operon (blhA-orfY), which encodes a metallo-β-lactamase and a coenzyme A-disulfide reductase containing a rhodanese homology domain, both of which may participate in reactions with sulfur-containing compounds. The overproduction of the BlhA and OrfY enzymes and the PmpABC membrane proteins differentially affected pigmentation. We have dissected the contributions of these various proteins and determined their importance in the control of prodigiosin production. PigS-mediated control of prodigiosin occurred via binding directly to a short inverted repeat sequence in the intergenic region overlapping the predicted −10 regions of both pigS and blhA promoters and repressing transcription. PigP was required for the activation of these promoters, but only in the absence of PigS-mediated repression.
机译:沙雷氏菌菌株ATCC 39006产生红色色素的抗生素prodigiosin。靛蓝素生物合成的调控涉及复杂的层次结构,其中PigP是参与褐红素生产的多个基因的主要转录调节因子。这项研究的重点是PigP regulon的成员PigS,它编码ArsR / SmtB家族转录阻遏物。 pigS中的突变通过减少生物合成操纵子的转录而降低了prodigiosin的产生。 pigS基因是四基因操纵子中的第一个,它还编码COG2391(DUF395; YedE / YeeE)和COG0730(DUF81; TauE / SafE)家族的三个膜蛋白(pmpABC),我们建议它们构成硫的转运成分含化合物。我们提供了第一个实验证据,证实了COG2391蛋白,PmpB的膜定位。从pigS-pmpABC转录而来的是双顺反子操纵子(blhA-orfY),其编码含有罗丹酶同源域的金属β-内酰胺酶和辅酶A-二硫键还原酶,两者都可能参与与含硫化合物的反应。 BlhA和OrfY酶和PmpABC膜蛋白的过量生产差异地影响色素沉着。我们已经解剖了这些各种蛋白质的贡献,并确定了它们在控制prodigiosin生产中的重要性。 PigS介导的对prodigiosin的控制是通过直接与重叠在PigS和blhA启动子的预计-10区的基因间区域中的短反向重复序列结合并抑制转录而发生的。 PigP是激活这些启动子所必需的,但仅在不存在PigS介导的阻遏的情况下才需要。

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