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DSF 及其受体 RpfR 识别的结构基础及其与 DSF 合成酶 RpfF 的调控相互作用。

Structural basis of DSF recognition by its receptor RpfR and its regulatory interaction with the DSF synthase RpfF.

机构信息

Department of Microbiology, Biochemistry, and Molecular Genetics, New Jersey Medical School, Rutgers, State University of New Jersey, Newark, New Jersey, United States of America.

Department of Microbiology and Molecular Genetics, and Center for Evolutionary Biology and Medicine, University of Pittsburgh, Pittsburgh, Pennsylvania, United States of America.

出版信息

PLoS Biol. 2019 Feb 4;17(2):e3000123. doi: 10.1371/journal.pbio.3000123. eCollection 2019 Feb.

Abstract

The diffusible signal factors (DSFs) are a family of quorum-sensing autoinducers (AIs) produced and detected by numerous gram-negative bacteria. The DSF family AIs are fatty acids, differing in their acyl chain length, branching, and substitution but having in common a cis-2 double bond that is required for their activity. In both human and plant pathogens, DSFs regulate diverse phenotypes, including virulence factor expression, antibiotic resistance, and biofilm dispersal. Despite their widespread relevance to both human health and agriculture, the molecular basis of DSF recognition by their cellular receptors remained a mystery. Here, we report the first structure-function studies of the DSF receptor regulation of pathogenicity factor R (RpfR). We present the X-ray crystal structure of the RpfR DSF-binding domain in complex with the Burkholderia DSF (BDSF), which to our knowledge is the first structure of a DSF receptor in complex with its AI. To begin to understand the mechanistic role of the BDSF-RpfR contacts observed in the biologically important complex, we have also determined the X-ray crystal structure of the RpfR DSF-binding domain in complex with the inactive, saturated isomer of BDSF, dodecanoic acid (C12:0). In addition to these ligand-receptor complex structures, we report the discovery of a previously overlooked RpfR domain and show that it binds to and negatively regulates the DSF synthase regulation of pathogenicity factor F (RpfF). We have named this RpfR region the RpfF interaction (FI) domain, and we have determined its X-ray crystal structure alone and in complex with RpfF. These X-ray crystal structures, together with extensive complementary in vivo and in vitro functional studies, reveal the molecular basis of DSF recognition and the importance of the cis-2 double bond to DSF function. Finally, we show that throughout cellular growth, the production of BDSF by RpfF is post-translationally controlled by the RpfR N-terminal FI domain, affecting the cellular concentration of the bacterial second messenger bis-(3'-5')-cyclic dimeric guanosine monophosphate (c-di-GMP). Thus, in addition to describing the molecular basis for the binding and specificity of a DSF for its receptor, we describe a receptor-synthase interaction regulating bacterial quorum-sensing signaling and second messenger signal transduction.

摘要

可扩散信号因子 (DSFs) 是一类群体感应自诱导剂 (AIs),由许多革兰氏阴性菌产生和检测。DSF 家族的 AIs 是脂肪酸,它们在酰基链长度、分支和取代方面存在差异,但都具有一个 cis-2 双键,这是它们活性所必需的。在人类和植物病原体中,DSFs 调节多种表型,包括毒力因子表达、抗生素耐药性和生物膜分散。尽管它们与人类健康和农业都有广泛的相关性,但它们的细胞受体识别 DSF 的分子基础仍然是一个谜。在这里,我们报告了第一个关于 DSF 受体调节致病性因子 R (RpfR) 的结构功能研究。我们展示了 RpfR DSF 结合域与 Burkholderia DSF (BDSF) 的 X 射线晶体结构,据我们所知,这是第一个与 AI 复合的 DSF 受体结构。为了开始理解在具有重要生物学意义的复合物中观察到的 BDSF-RpfR 接触的机制作用,我们还确定了 RpfR DSF 结合域与 BDSF 的非活性、饱和异构体十二烷酸 (C12:0) 的 X 射线晶体结构。除了这些配体 - 受体复合物结构外,我们还报告了一个以前被忽视的 RpfR 结构域的发现,并表明它与致病性因子 F (RpfF) 的 DSF 合酶调节结合并负调节。我们将这个 RpfR 区域命名为 RpfF 相互作用 (FI) 结构域,并确定了它的单独和与 RpfF 结合的 X 射线晶体结构。这些 X 射线晶体结构,以及广泛的互补体内和体外功能研究,揭示了 DSF 识别的分子基础以及 cis-2 双键对 DSF 功能的重要性。最后,我们表明,在整个细胞生长过程中,RpfF 产生的 BDSF 受到 RpfR N 端 FI 结构域的翻译后控制,影响细菌第二信使双-(3'-5')-环二核苷酸单磷酸 (c-di-GMP) 的细胞浓度。因此,除了描述 DSF 与其受体结合和特异性的分子基础外,我们还描述了一种受体 - 合酶相互作用,调节细菌群体感应信号转导和第二信使信号转导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fee/6361424/bc72b267a490/pbio.3000123.g001.jpg

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