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布鲁氏菌 abortus 金属蛋白酶 RicA 的分子结构,一种 Rab2 结合的毒力效应因子。

Molecular structure of the Brucella abortus metalloprotein RicA, a Rab2-binding virulence effector.

机构信息

Department of Biochemistry and Molecular Biology, University of Chicago , Chicago, Illinois 60637, United States.

出版信息

Biochemistry. 2013 Dec 17;52(50):9020-8. doi: 10.1021/bi401373r. Epub 2013 Nov 22.

Abstract

The Gram-negative intracellular pathogen Brucella abortus is the causative agent of brucellosis, which is among the most common zoonoses globally. The B. abortus RicA protein binds the host-expressed guanosine nucleotide-binding protein, Rab2, and modulates B. abortus infection biology. We have solved the first X-ray crystal structure of RicA to 2.7 Å resolution and have quantified the affinity of RicA binding to human Rab2 in its GDP-bound and nucleotide-free forms. RicA adopts a classic γ-carbonic anhydrase (γ-CA) fold containing a left-handed β-helix followed by a C-terminal α-helix. Two homotrimers of RicA occupy the crystallographic asymmetric unit. Though no zinc was included in the purification or crystallization buffers, zinc is contained within the RicA crystals, as demonstrated by X-ray fluorescence spectroscopy. Electron density for a Zn(2+) ion coordinated by three histidine residues is evident in the putative active site of RicA. However, purified RicA preparations do not exhibit carbonic anhydrase activity, suggesting that Zn(2+) may not be the physiologically relevant metal cofactor or that RicA is not a bona fide carbonic anhydrase enzyme. Isothermal titration calorimetry (ITC) measurements of purified RicA binding to purified human Rab2 and GDP-Rab2 revealed similar equilibrium affinities (Kd ≈ 35 and 40 μM, respectively). This study thus defines RicA as a Zn(2+)-binding γ-carbonic anhydrase-like protein that binds the human membrane fusion/trafficking protein Rab2 with low micromolar affinity in vitro. These results support a model in which γ-CA family proteins may evolve unique cellular functions while retaining many of the structural hallmarks of archetypal γ-CA enzymes.

摘要

革兰氏阴性细胞内病原体布鲁氏菌流产亚种是布鲁氏菌病的病原体,该病是全球最常见的人畜共患病之一。B. abortus RicA 蛋白结合宿主表达的鸟嘌呤核苷酸结合蛋白 Rab2,并调节 B. abortus 的感染生物学。我们已经解决了 RicA 的第一个 X 射线晶体结构,分辨率为 2.7Å,并定量了 RicA 与人 Rab2 在 GDP 结合和无核苷酸形式下的结合亲和力。RicA 采用经典的γ-碳酸酐酶(γ-CA)折叠,包含一个左手β-螺旋,其后是 C 端α-螺旋。RicA 的两个同源三聚体占据晶体学不对称单元。虽然在纯化或结晶缓冲液中未包含锌,但 X 射线荧光光谱表明 RicA 晶体中含有锌。由三个组氨酸残基配位的 Zn(2+)离子的电子密度在 RicA 的假定活性部位中是明显的。然而,纯化的 RicA 制剂不表现出碳酸酐酶活性,这表明 Zn(2+)可能不是生理相关的金属辅因子,或者 RicA 不是真正的碳酸酐酶酶。纯化 RicA 与人 Rab2 和 GDP-Rab2 的等温滴定量热法(ITC)测量表明,对纯化 RicA 与 Rab2 及其 GDP 结合形式的结合具有相似的平衡亲和力(Kd 分别约为 35 和 40μM)。因此,这项研究将 RicA 定义为一种 Zn(2+)结合的γ-碳酸酐酶样蛋白,它以低微摩尔亲和力在体外结合人膜融合/运输蛋白 Rab2。这些结果支持了这样一种模型,即γ-CA 家族蛋白在保留典型γ-CA 酶的许多结构特征的同时,可能进化出独特的细胞功能。

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