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Use of a Two-Color Genetic Screen To Identify a Domain of the Global Regulator Lrp That Is Specifically Required for pap Phase Variation

机译:使用两种颜色的遗传屏幕来识别全局调节器Lrp的域pap相位变化特别需要

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摘要

The global regulator Lrp plays a central role as both a repressor and an activator in Pap phase variation. Unlike most other members of the Lrp regulon such as ilvIH, activation of papBA transcription requires the coregulator PapI and is methylation dependent. We developed a two-color genetic screen to identify Lrp mutations that inhibit Pap phase variation but still activate ilvIH transcription, reasoning that such mutations might identify PapI binding or methylation-responsive domains. Amino acid substitutions in Lrp at position 126, 133, or 134 greatly reduced the rate of Pap switching from phase off to phase on but had much smaller effects on ilvIH transcription. In vitro analyses indicated that the T134A and E133G Lrp variants maintained affinities for pap and ilvIH DNAs similar to those of wild-type Lrp. In addition, both mutant Lrp’s were as responsive to PapI as wild-type Lrp, evidenced by an increase in affinity for pap Lrp binding sites 4, 5, and 6. Thus, in vitro analyses did not reveal the step(s) in Pap phase variation where these Lrp mutants were inhibited. In vivo analyses showed that both the T134A and E133G Lrp mutants activated transcription of a phase-on-locked pap derivative containing a mutation in Lrp binding site 3. Further studies indicated that the T134A Lrp mutant was blocked in a step in Pap phase variation that does not involve PapI. Our data suggest that these mutant Lrp’s are defective in a previously unidentified interaction required for the switch from the phase-off to the phase-on pap transcription state.
机译:全局调节剂Lrp在Pap相变中既是阻遏剂又是活化剂。与Lrp regulon的大多数其他成员(例如ilvIH)不同,papBA转录的激活需要共调节因子PapI,并且是甲基化依赖性的。我们开发了一种双色遗传筛选技术,以鉴定可抑制PapI相变但仍激活ilvIH转录的Lrp突变,理由是此类突变可能标识了PapI结合或甲基化反应域。 Lrp在位置126、133或134处的氨基酸取代大大降低了Pap从相移到相移的速率,但对ilvIH转录的影响小得多。体外分析表明,T134A和E133G Lrp变异体与野生型Lrp相似,保持了对pap和ilvIH DNA的亲和力。此外,两个突变体Lrp对PapI的反应都与野生型Lrp一样,这通过对pap Lrp结合位点4、5和6的亲和力增加得以证明。因此,体外分析未揭示Pap中的步骤这些Lrp突变体被抑制的阶段变化。体内分析表明T134A和E133G Lrp突变体均激活了在Lrp结合位点3上含有突变的锁相pap衍生物的转录。进一步的研究表明,T134A Lrp突变体在Pap相变的一个步骤中被阻断,不涉及PapI。我们的数据表明,这些突变体Lrp在先前无法识别的相互作用中是有缺陷的,这种相互作用是从逐步关闭状态转换到逐步开启的pap转录状态所必需的。

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