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ZraP 和 ZraS 的结构-功能研究为双组分系统 Zra 提供了新的见解。

A structure-function study of ZraP and ZraS provides new insights into the two-component system Zra.

机构信息

Univ. Grenoble Alpes, CEA, CNRS, IBS, Metalloproteins Unit, F-38000 Grenoble, France; University of California, Irvine, Medical Science Building B, CA 92697, United States of America.

Univ. Grenoble Alpes, CEA, CNRS, IBS, Metalloproteins Unit, F-38000 Grenoble, France.

出版信息

Biochim Biophys Acta Gen Subj. 2021 Mar;1865(3):129810. doi: 10.1016/j.bbagen.2020.129810. Epub 2020 Dec 11.

Abstract

BACKGROUND

Zra belongs to the envelope stress response (ESR) two-component systems (TCS). It is atypical because of its third periplasmic repressor partner (ZraP), in addition to its histidine kinase sensor protein (ZraS) and its response regulator (ZraR) components. Furthermore, although it is activated by Zn, it is not involved in zinc homeostasis or protection against zinc toxicity. Here, we mainly focus on ZraS but also provide information on ZraP.

METHODS

The purified periplasmic domain of ZraS and ZraP were characterized using biophysical and biochemical technics: multi-angle laser light scattering (MALLS), circular dichroism (CD), differential scanning fluorescence (DSF), inductively coupled plasma atomic emission spectroscopy (ICP-AES), cross-linking and small-angle X-ray scattering (SAXS). In-vivo experiments were carried out to determine the redox state of the cysteine residue in ZraP and the consequences for the cell of an over-activation of the Zra system.

RESULTS

We show that ZraS binds one Zn molecule with high affinity resulting in conformational changes of the periplasmic domain, consistent with a triggering function of the metal ion. We also demonstrate that, in the periplasm, the only cysteine residue of ZraP is at least partially reduced. Using SAXS, we conclude that the previously determined X-ray structure is different from the structure in solution.

CONCLUSION

Our results allow us to propose a general mechanism for the Zra system activation and to compare it to the homologous Cpx system.

GENERAL SIGNIFICANCE

We bring new input on the so far poorly described Zra system and notably on ZraS.

摘要

背景

Zra 属于信封应激反应 (ESR) 双组分系统 (TCS)。由于其第三个周质阻遏物伙伴 (ZraP),除了其组氨酸激酶传感器蛋白 (ZraS) 和其反应调节蛋白 (ZraR) 成分外,它是一种非典型的。此外,尽管它被锌激活,但它不参与锌稳态或对锌毒性的保护。在这里,我们主要关注 ZraS,但也提供了有关 ZraP 的信息。

方法

使用生物物理和生化技术对 ZraS 和 ZraP 的纯化周质域进行了表征:多角度激光散射 (MALLS)、圆二色性 (CD)、差示扫描荧光 (DSF)、电感耦合等离子体原子发射光谱 (ICP-AES)、交联和小角 X 射线散射 (SAXS)。进行体内实验以确定 ZraP 中半胱氨酸残基的氧化还原状态以及 Zra 系统过度激活对细胞的后果。

结果

我们表明 ZraS 以高亲和力结合一个 Zn 分子,导致周质域构象发生变化,这与金属离子的触发功能一致。我们还证明,在周质中,ZraP 的唯一半胱氨酸残基至少部分还原。使用 SAXS,我们得出结论,先前确定的 X 射线结构与溶液中的结构不同。

结论

我们的结果使我们能够提出 Zra 系统激活的一般机制,并将其与同源的 Cpx 系统进行比较。

一般意义

我们为迄今为止描述不佳的 Zra 系统提供了新的见解,特别是对 ZraS。

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