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首页> 外文期刊>Molecular Microbiology >Borrelia burgdorferi oxidative stress regulator BosR directly represses lipoproteins primarily expressed in the tick during mammalian infection
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Borrelia burgdorferi oxidative stress regulator BosR directly represses lipoproteins primarily expressed in the tick during mammalian infection

机译:伯氏疏螺旋体氧化应激调节剂BosR直接抑制哺乳动物感染过程中主要在壁虱中表达的脂蛋白

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Summary: Differential gene expression is a key strategy adopted by the Lyme disease spirochaete, Borrelia burgdorferi, for adaptation and survival in the mammalian host and the tick vector. Many B.burgdorferi surface lipoproteins fall into two distinct groups according to their expression patterns: one group primarily expressed in the tick and the other group primarily expressed in the mammal. Here, we show that the Fur homologue in this bacterium, also known as Borrelia oxidative stress regulator (BosR), is required for repression of outer surface protein A (OspA) and OspD in the mammal. Furthermore, BosR binds directly to sequences upstream of the ospAB operon and the ospD gene through recognition of palindromic motifs similar to those recognized by other Fur homologues but with a 1bp variation in the spacer length. Putative BosR binding sites have been identified upstream of 156 B.burgdorferi genes. Some of these genes share the same expression pattern as ospA and ospD. Most notably, 12 (67%) of the 18 genes previously identified in a genome-wide microarray study to be most significantly repressed in the mammal are among the putative BosR regulon. These data indicate that BosR may directly repress transcription of many genes that are downregulated in the mammal.
机译:简介:差异基因表达是莱姆病螺旋体伯氏疏螺旋体采用的一种关键策略,用于在哺乳动物宿主和壁虱载体中适应和存活。根据其表达方式,许多伯氏疏螺旋体表面脂蛋白分为两个不同的组:一组主要在壁虱中表达,另一组主要在哺乳动物中表达。在这里,我们显示该细菌中的Fur同源物,也称为疏螺旋体氧化应激调节剂(BosR),是哺乳动物中抑制外表面蛋白A(OspA)和OspD所必需的。此外,BosR通过回文基序的识别直接与ospAB操纵子和ospD基因上游的序列结合,类似于其他Fur同源物识别的回文基序,但间隔区长度变化1bp。推定的BosR结合位点已被确定在156个B.burgdorferi基因的上游。这些基因中的一些与ospA和ospD共享相同的表达模式。最值得注意的是,先前在全基因组微阵列研究中鉴定出的18个基因中有12个(67%)在哺乳动物中受到了最显着的抑制,属于推定的BosR调节子。这些数据表明,BosR可能直接抑制哺乳动物中许多下调的基因的转录。

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