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及 δ-内脂成员海鞘素对酪蛋白水解酶亚单位的催化特性及其抑制作用。

Catalytic Properties of Caseinolytic Protease Subunit of and Its Inhibition by a Member of δ-Lactone, Hyptolide.

机构信息

Biotechnology Research Institute, Universiti Malaysia Sabah, Jalan UMS, Kota Kinabalu 88400, Sabah, Malaysia.

Department of Chemistry, Faculty of Sciences and Mathematics, Diponegoro University, Jalan Prof. Soedarto, SH, Tembalang, Semarang 50275, Indonesia.

出版信息

Molecules. 2022 Jun 12;27(12):3787. doi: 10.3390/molecules27123787.

Abstract

The caseinolytic protease (Clp) system plays an essential role in the protein homeostasis of the malaria parasite, particularly at the stage of apicoplast development. The inhibition of this protein is known to have a lethal effect on the parasite and is therefore considered an interesting avenue for antimalaria drugs discovery. The catalytic activity of the Clp system is modulated by its proteolytic subunit (ClpP), which belongs to the serine protease family member and is therefore extensively studied for further inhibitors development. Among many inhibitors, the group of β-lactone is known to be a specific inhibitor for ClpP. Nevertheless, other groups of lactones have never been studied. This study aims to characterize the catalytic properties of ClpP of (Pk-ClpP) and the inhibition properties of a δ-lactone hyptolide against this protein. Accordingly, a codon-optimized synthetic gene encoding Pk-ClpP was expressed in BL21(DE3) and purified under a single step of Ni-affinity chromatography, yielding a 2.20 mg from 1 L culture. Meanwhile, size-exclusion chromatography indicated that Pk-ClpP migrated primarily as homoheptameric with a size of 205 kDa. The specific activity of pure Pk-ClpP was 0.73 U µg, with a catalytic efficiency k/K of 0.05 µM s, with optimum temperature and pH of 50 °C and 7.0-7.5, respectively. Interestingly, hyptolide, a member of δ-lactone, was shown to inhibit Pk-ClpP with an IC value of 17.36 ± 1.44 nM. Structural homology modelling, secondary structure prediction, and far-UV CD spectra revealed that helical structures dominate this protein. In addition, the structural homology modeling showed that this protein forms a barrel-shaped homoheptamer. Docking simulation revealed that the inhibition was found to be a competitive inhibition in which hyptolide was able to dock into the catalytic site and block the substrate. The competitiveness of hyptolide is due to the higher binding affinity of this molecule than the substrate.

摘要

蛋白酶体 (Clp) 系统在疟原虫的蛋白质平衡中起着至关重要的作用,特别是在类质体发育阶段。该蛋白的抑制作用被认为对寄生虫具有致命影响,因此被认为是抗疟药物发现的一个有趣途径。Clp 系统的催化活性由其蛋白水解亚基 (ClpP) 调节,ClpP 属于丝氨酸蛋白酶家族成员,因此被广泛研究以开发进一步的抑制剂。在许多抑制剂中,β-内酰胺类被认为是 ClpP 的特异性抑制剂。然而,其他内酯类从未被研究过。本研究旨在表征 (Pk-ClpP) 的 ClpP 的催化特性和 δ-内酰胺 hyptolide 对该蛋白的抑制特性。为此,通过密码子优化合成的编码 Pk-ClpP 的基因在 BL21(DE3) 中表达,并通过 Ni 亲和层析的单一步骤进行纯化,从 1 L 培养物中得到 2.20mg。同时,凝胶过滤色谱表明 Pk-ClpP 主要作为同七聚体迁移,大小为 205 kDa。纯 Pk-ClpP 的比活性为 0.73 U µg,催化效率 k/K 为 0.05 µM s,最适温度和 pH 值分别为 50°C 和 7.0-7.5。有趣的是,hyptolide,一种 δ-内酰胺的成员,被证明以 17.36 ± 1.44 nM 的 IC 值抑制 Pk-ClpP。结构同源建模、二级结构预测和远紫外 CD 光谱表明,该蛋白以螺旋结构为主。此外,结构同源建模表明该蛋白形成一个桶状同七聚体。对接模拟表明,抑制作用是一种竞争性抑制,hyptolide 能够进入催化位点并阻止底物结合。hyptolide 的竞争性是由于该分子的结合亲和力高于底物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4425/9228282/8f9b15a47cc6/molecules-27-03787-g001.jpg

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