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β-内酰胺酶基因调节蛋白AmpR是一种四聚体,它能识别并结合其阻遏物UDP-N-乙酰胞壁酸(MurNAc)-五肽的D-Ala-D-Ala基序。

The β-lactamase gene regulator AmpR is a tetramer that recognizes and binds the D-Ala-D-Ala motif of its repressor UDP-N-acetylmuramic acid (MurNAc)-pentapeptide.

作者信息

Vadlamani Grishma, Thomas Misty D, Patel Trushar R, Donald Lynda J, Reeve Thomas M, Stetefeld Jörg, Standing Kenneth G, Vocadlo David J, Mark Brian L

机构信息

From the Departments of Microbiology.

Chemistry, and.

出版信息

J Biol Chem. 2015 Jan 30;290(5):2630-43. doi: 10.1074/jbc.M114.618199. Epub 2014 Dec 5.

Abstract

Inducible expression of chromosomal AmpC β-lactamase is a major cause of β-lactam antibiotic resistance in the Gram-negative bacteria Pseudomonas aeruginosa and Enterobacteriaceae. AmpC expression is induced by the LysR-type transcriptional regulator (LTTR) AmpR, which activates ampC expression in response to changes in peptidoglycan (PG) metabolite levels that occur during exposure to β-lactams. Under normal conditions, AmpR represses ampC transcription by binding the PG precursor UDP-N-acetylmuramic acid (MurNAc)-pentapeptide. When exposed to β-lactams, however, PG catabolites (1,6-anhydroMurNAc-peptides) accumulate in the cytosol, which have been proposed to competitively displace UDP-MurNAc-pentapeptide from AmpR and convert it into an activator of ampC transcription. Here we describe the molecular interactions between AmpR (from Citrobacter freundii), its DNA operator, and repressor UDP-MurNAc-pentapeptide. Non-denaturing mass spectrometry revealed AmpR to be a homotetramer that is stabilized by DNA containing the T-N11-A LTTR binding motif and revealed that it can bind four repressor molecules in an apparently stepwise manner. A crystal structure of the AmpR effector-binding domain bound to UDP-MurNAc-pentapeptide revealed that the terminal D-Ala-D-Ala motif of the repressor forms the primary contacts with the protein. This observation suggests that 1,6-anhydroMurNAc-pentapeptide may convert AmpR into an activator of ampC transcription more effectively than 1,6-anhydroMurNAc-tripeptide (which lacks the D-Ala-D-Ala motif). Finally, small angle x-ray scattering demonstrates that the AmpR·DNA complex adopts a flat conformation similar to the LTTR protein AphB and undergoes only a slight conformational change when binding UDP-MurNAc-pentapeptide. Modeling the AmpR·DNA tetramer bound to UDP-MurNAc-pentapeptide predicts that the UDP-MurNAc moiety of the repressor participates in modulating AmpR function.

摘要

染色体AmpCβ-内酰胺酶的可诱导表达是革兰氏阴性菌铜绿假单胞菌和肠杆菌科中β-内酰胺抗生素耐药性的主要原因。AmpC的表达由LysR型转录调节因子(LTTR)AmpR诱导,AmpR响应于暴露于β-内酰胺期间发生的肽聚糖(PG)代谢物水平的变化而激活ampC表达。在正常条件下,AmpR通过结合PG前体UDP-N-乙酰胞壁酸(MurNAc)-五肽来抑制ampC转录。然而,当暴露于β-内酰胺时,PG分解代谢物(1,6-脱水MurNAc-肽)在细胞质中积累,有人提出这些分解代谢物可从AmpR上竞争性取代UDP-MurNAc-五肽,并将其转化为ampC转录的激活剂。在此,我们描述了AmpR(来自弗氏柠檬酸杆菌)、其DNA操纵子和阻遏物UDP-MurNAc-五肽之间的分子相互作用。非变性质谱显示AmpR是一种同四聚体,由含有T-N11-A LTTR结合基序的DNA稳定,并表明它可以以明显逐步的方式结合四个阻遏物分子。与UDP-MurNAc-五肽结合 的AmpR效应物结合结构域的晶体结构显示,阻遏物的末端D-Ala-D-Ala基序与蛋白质形成主要接触。这一观察结果表明,1,6-脱水MurNAc-五肽可能比1,6-脱水MurNAc-三肽(缺乏D-Ala-D-Ala基序)更有效地将AmpR转化为ampC转录的激活剂。最后,小角X射线散射表明,AmpR·DNA复合物采用类似于LTTR蛋白AphB的扁平构象,并且在结合UDP-MurNAc-五肽时仅发生轻微的构象变化。对与UDP-MurNAc-五肽结合的AmpR·DNA四聚体进行建模预测,阻遏物的UDP-MurNAc部分参与调节AmpR功能。

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