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Sinorhizobium meliloti SyrA Mediates the Transcriptional Regulation of Genes Involved in Lipopolysaccharide Sulfation and Exopolysaccharide Biosynthesis▿

机译:苜蓿中华根瘤菌SyrA介导涉及脂多糖硫酸化和胞外多糖生物合成的基因的转录调控▿

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摘要

Sinorhizobium meliloti is a gram-negative soil bacterium found either in free-living form or as a nitrogen-fixing endosymbiont of leguminous plants such as Medicago sativa (alfalfa). S. meliloti synthesizes an unusual sulfate-modified form of lipopolysaccharide (LPS). A recent study reported the identification of a gene, lpsS, which encodes an LPS sulfotransferase activity in S. meliloti. Mutants bearing a disrupted version of lpsS exhibit an altered symbiosis, in that they elicit more nodules than wild type. However, under free-living conditions, the lpsS mutant displayed no change in LPS sulfation. These data suggest that the expression of lpsS is differentially regulated, such that it is transcriptionally repressed during free-living conditions but upregulated during symbiosis. Here, I show that the expression of lpsS is upregulated in strains that constitutively express the symbiotic regulator SyrA. SyrA is a small protein that lacks an apparent DNA binding domain and is predicted to be located in the cytoplasmic membrane yet is sufficient to upregulate lpsS transcription. Furthermore, SyrA can mediate the transcriptional upregulation of exo genes involved in the biosynthesis of the symbiotic exopolysaccharide succinoglycan. The SyrA-mediated transcriptional upregulation of lpsS and exo transcription is blocked in mutants harboring a mutation in chvI, which encodes the response regulator of a conserved two-component system. Thus, SyrA likely acts indirectly to promote transcriptional upregulation of lpsS and exo genes through a mechanism that requires the ExoS/ChvI two-component system.
机译:苜蓿中华根瘤菌是一种革兰氏阴性土壤细菌,以自由活动形式或作为豆科植物(苜蓿)的固氮内共生体存在。苜蓿链球菌(S.meliloti)合成了一种不寻常的硫酸盐修饰形式的脂多糖(LPS)。最近的一项研究报道了鉴定基因lpsS,该基因编码S.meliloti中的LPS磺基转移酶活性。带有lpsS突变形式的突变体表现出共生改变,因为它们引起的结节数量比野生型多。然而,在自由生活的条件下,lpsS突变体显示LPS硫酸盐化没有变化。这些数据表明,lpsS的表达受到差异调节,因此在自由生活条件下lpsS被转录抑制,而在共生过程中被上调。在这里,我证明了在组成型表达共生调节子SyrA的菌株中lpsS的表达上调。 SyrA是一种小蛋白质,缺乏明显的DNA结合结构域,预计位于细胞质膜中,但足以上调lpsS转录。此外,SyrA可以介导参与共生胞外多糖琥珀聚糖生物合成的exo基因的转录上调。 SyrA介导的lpsS的转录上调和exo转录在chvI突变的突变体中被阻止,该突变体编码保守的两组分系统的响应调节剂。因此,SyrA可能通过需要ExoS / ChvI两组分系统的机制间接发挥作用,促进lpsS和exo基因的转录上调。

著录项

  • 作者

    Keating, David H.;

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  • 年度 2007
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  • 原文格式 PDF
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