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从莫氏矛头蝮金属蛋白酶衍生的肽的鉴定,该肽在体外对恶性疟原虫嘌呤核苷磷酸化酶酶(PfPNP)具有抑制作用。

Identification of a peptide derived from a Bothrops moojeni metalloprotease with in vitro inhibitory action on the Plasmodium falciparum purine nucleoside phosphorylase enzyme (PfPNP).

机构信息

Center for the Study of Biomolecules Applied to Health, CEBio, Oswaldo Cruz Foundation Rondônia, FIOCRUZ, Porto Velho, Rondônia, Brazil; Graduate Program in Experimental Biology, PGBIOEXP, Federal University of Rondônia, UNIR, Porto Velho, Rondônia, Brazil; National Institute of Science and Technology in Epidemiology of the Western Amazonia, INCT-EpiAmO, Porto Velho, Rondônia, Brazil; São Lucas University Center, UniSL, Porto Velho, Rondônia, Brazil.

Center for the Study of Biomolecules Applied to Health, CEBio, Oswaldo Cruz Foundation Rondônia, FIOCRUZ, Porto Velho, Rondônia, Brazil; Graduate Program in Experimental Biology, PGBIOEXP, Federal University of Rondônia, UNIR, Porto Velho, Rondônia, Brazil; National Institute of Science and Technology in Epidemiology of the Western Amazonia, INCT-EpiAmO, Porto Velho, Rondônia, Brazil.

出版信息

Biochimie. 2019 Jul;162:97-106. doi: 10.1016/j.biochi.2019.04.009. Epub 2019 Apr 9.

Abstract

There is a growing need for research on new antimalarial agents against Plasmodium falciparum infection, especially in regards to planning molecular architecture for specific molecular targets of the parasite. Thus, a metalloprotease from Bothrops moojeni, known as BmooMPα-I, was explored in this study, through in silico assays, aiming at the development of a peptide generated from this molecule with potential inhibitory action on PfPNP, an enzyme necessary for the survival of the parasite. In order to isolate BmooMPα-I, cation exchange and reverse phase chromatographies were performed, followed by in vitro assays of antiparasitic activity against the W2 strain of P. falciparum. The interactions between BmooMPα-I and PfPNP were evaluated via docking, and the resulting peptide, described as Pep1 BM, was selected according to the BmooMPα-I region demonstrating the best interaction score with the target of interest. The values for the specific activities of the PfPNP reaction were measured using the inorganic phosphate substrate and MESG. The fraction corresponding to BmooMPα-I was identified as fraction 4 in the cation exchange chromatography step, due to proteolytic activity on casein and the presence of a major band at ≅ 23 kDa. BmooMPα-I was able to inhibit in vitro growth of W2 P. falciparum, with an IC value of 16.14 μg/mL. Virtual screening with Pep1 BM demonstrated two PfPNP target binding regions, with ΔG values at the interaction interface of -10.75 kcal/mol and -11.74 kcal/mol. A significant reduction in the enzymatic activity of PfPNP was observed in the presence of Pep 1 BM when compared to the assay in the absence of this possible inhibitor. BmooMPα-I showed activity in vitro against W2 P. falciparum. By means of in silico techniques, the Pep 1 BM was identified as having potential binding affinity to the catalytic site of PfPNP and of inhibiting its catalytic activity in vitro.

摘要

目前,人们越来越需要针对恶性疟原虫感染的新型抗疟药物进行研究,特别是在针对寄生虫特定分子靶标规划分子结构方面。因此,本研究探索了来自矛头蝮蛇的一种金属蛋白酶,称为 BmooMPα-I,通过计算机模拟试验,旨在从该分子中开发出一种具有潜在抑制作用的肽,这种肽可能作用于 PfPNP 酶,PfPNP 酶是寄生虫存活所必需的。为了分离 BmooMPα-I,进行了阳离子交换和反相色谱,然后对 W2 株恶性疟原虫的抗寄生虫活性进行了体外检测。通过对接评估了 BmooMPα-I 与 PfPNP 之间的相互作用,得到的肽被描述为 Pep1 BM,根据与感兴趣的靶标相互作用得分最佳的 BmooMPα-I 区域进行选择。使用无机磷酸盐底物和 MESG 测量 PfPNP 反应的比活性值。在阳离子交换色谱步骤中,BmooMPα-I 被鉴定为第 4 馏分,因为其具有针对酪蛋白的蛋白水解活性,并且在 ≅ 23 kDa 处存在主要条带。BmooMPα-I 能够抑制体外生长的 W2 株恶性疟原虫,IC 值为 16.14 µg/mL。通过虚拟筛选 Pep1 BM,发现了两个 PfPNP 靶标结合区域,在相互作用界面的ΔG 值分别为-10.75 kcal/mol 和-11.74 kcal/mol。与不存在这种可能的抑制剂的情况下的测定相比,在 Pep1 BM 存在的情况下,PfPNP 的酶活性明显降低。BmooMPα-I 对 W2 株恶性疟原虫表现出体外活性。通过计算机模拟技术,确定 Pep1 BM 具有与 PfPNP 催化部位结合的潜在亲和力,并在体外抑制其催化活性。

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