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DNA甲基化对尿路致病性大肠杆菌粘附素表达的调控

Regulation of uropathogenic Escherichia coli adhesin expression by DNA methylation.

作者信息

Hale W B, van der Woude M W, Braaten B A, Low D A

机构信息

Department of Pathology, University of Utah Health Sciences Center, Salt Lake City, Utah, 84132, USA.

出版信息

Mol Genet Metab. 1998 Nov;65(3):191-6. doi: 10.1006/mgme.1998.2744.

Abstract

Pap pili play an important role in the pathogenesis of upper urinary tract infections by enabling uropathogenic Escherichia coli to adhere to host epithelial cells. Pap pili are coded for by the pyelonephritis-associated pili (pap) operon, which consists of 11 genes required for the expression and assembly of Pap pili. Expression of Pap pili is regulated by a phase variation mechanism in which the pili expression state of the bacterial population is skewed between phase-on (expression positive) and phase-off (expression negative) states. Pap phase variation is controlled by the cooperative binding of leucine-responsive regulatory protein (Lrp) to two sets of Lrp binding sites in the upstream regulatory region of the pap operon. A single GATC sequence, which is the target site for deoxyadenosine methylase (Dam), is centrally located within each Lrp binding region. Dam plays a critical role in the expression of Pap pili via the formation of DNA methylation patterns. Methylation of GATC-I reduced the affinity of Lrp for pap DNA by about twofold. Conversely, Lrp specifically blocked methylation of pap GATC-I in vitro. These data support the hypothesis that Lrp and Dam compete for binding to GATC-I, and are consistent with previous results indicating that methylation of GATC-I is important for stability of the phase-off state.

摘要

菌毛在引起上尿路感染的发病机制中发挥重要作用,它使尿路致病性大肠杆菌能够黏附于宿主上皮细胞。菌毛由肾盂肾炎相关菌毛(pap)操纵子编码,该操纵子由菌毛表达和组装所需的11个基因组成。菌毛的表达受相变机制调控,在此机制中细菌群体的菌毛表达状态在开启相(表达阳性)和关闭相(表达阴性)之间倾斜。菌毛相变由亮氨酸应答调节蛋白(Lrp)与菌毛操纵子上游调控区域中的两组Lrp结合位点协同结合来控制。单个GATC序列是脱氧腺苷甲基化酶(Dam)的靶位点,位于每个Lrp结合区域的中心。Dam通过形成DNA甲基化模式在菌毛的表达中起关键作用。GATC-I的甲基化使Lrp对菌毛DNA的亲和力降低约两倍。相反,Lrp在体外特异性阻断菌毛GATC-I的甲基化。这些数据支持Lrp和Dam竞争与GATC-I结合的假说,并且与之前表明GATC-I甲基化对关闭相状态稳定性很重要的结果一致。

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