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结核分枝杆菌 ClpS 的重组表达、生物物理特性和功能表征。

Recombinant expression, biophysical and functional characterization of ClpS from Mycobacterium tuberculosis.

机构信息

Department of Chemical Biology, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen 361005, China.

出版信息

Acta Biochim Biophys Sin (Shanghai). 2019 Nov 18;51(11):1158-1167. doi: 10.1093/abbs/gmz102.

Abstract

Intracellular proteolysis is attracting more and more attention for its unique and important character in Mycobacterium tuberculosis (Mt). The ClpS protein from Mt (MtClpS) plays a critical role in intracellular proteolysis by recognizing N-end rule substrates, which makes it become a potential target for antibacterial drugs. However, the molecular mechanism of MtClpS recognizing N-end rule substrates remains unclear. Preparation of highly concentrated and pure MtClpS protein is a prerequisite for further structural and functional studies. In the present work, we tried several fusion tags and various expression conditions to maximize the production of MtClpS in Escherichia coli. We established an efficient approach for preparing the MtClpS protein with a high yield of 24.7 mg/l and a high purity of 98%. After buffer screening, we obtained a stable MtClpS protein sample concentrated at 0.63 mM in the presence of glycerol, l-Arginine, and l-Glutamate. Moreover, circular dichroism characterization indicated that the secondary structure of MtClpS consists of 38% α-helix and 24% β-sheet. The 2D 1H-15N HSQC nuclear magnetic resonance spectrum showed a good dispersion of resonance peaks with uniform intensity, indicating that the purified MtClpS protein was well folded and conformationally homogeneous. Isothermal titration calorimetry experiments revealed significant interactions of MtClpS with N-end rule peptides beginning with Leu, Tyr, Trp, or Phe. Furthermore, residues D34, D35, and H66 were confirmed as key residues for MtClpS recognizing the N-end rule peptide. The successful expression and biophysical characterization of MtClpS enabled us to gain insight into the molecular mechanism of MtClpS recognizing N-end rule substrates. The obtained stable and pure recombinant MtClpS will enable future inhibitor screening experiments.

摘要

细胞内蛋白水解因其在结核分枝杆菌(Mycobacterium tuberculosis,Mt)中的独特和重要特性而受到越来越多的关注。Mt 中的 ClpS 蛋白(MtClpS)通过识别 N 端规则底物在细胞内蛋白水解中发挥关键作用,这使其成为抗菌药物的潜在靶标。然而,MtClpS 识别 N 端规则底物的分子机制仍不清楚。制备高浓度和高纯度的 MtClpS 蛋白是进一步进行结构和功能研究的前提。在本工作中,我们尝试了几种融合标签和各种表达条件,以最大限度地提高 MtClpS 在大肠杆菌中的产量。我们建立了一种有效的方法,可制备产量为 24.7mg/L、纯度为 98%的 MtClpS 蛋白。经过缓冲液筛选,我们获得了在甘油、L-精氨酸和 L-谷氨酸存在下浓缩至 0.63mM 的稳定 MtClpS 蛋白样品。此外,圆二色性特征表明 MtClpS 的二级结构由 38%的α-螺旋和 24%的β-折叠组成。二维 1H-15N HSQC 核磁共振谱显示出共振峰具有良好的分散性和均匀的强度,表明纯化的 MtClpS 蛋白折叠良好,构象均一。等温滴定量热法实验表明,MtClpS 与以 Leu、Tyr、Trp 或 Phe 起始的 N 端规则肽之间存在显著的相互作用。此外,残基 D34、D35 和 H66 被确认为 MtClpS 识别 N 端规则肽的关键残基。MtClpS 的成功表达和生物物理特性分析使我们深入了解 MtClpS 识别 N 端规则底物的分子机制。获得的稳定、纯的重组 MtClpS 将有助于未来的抑制剂筛选实验。

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