Structural comparison of human and Plasmodium proteasome β5 subunits: informing selective inhibitor design for anti-malaria agents.

IF 2.4 3区 医学 Q3 INFECTIOUS DISEASES Malaria Journal Pub Date : 2025-01-21 DOI:10.1186/s12936-025-05259-z
Muhammad Yasir, Jinyoung Park, Eun-Taek Han, Won Sun Park, Jin-Hee Han, Wanjoo Chun
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Abstract

Background: The Plasmodium proteasome emerges as a promising target for anti-malarial drug development due to its potential activity against multiple life cycle stages.

Methods: In this investigation, a comparative analysis was conducted on the structural features of the β5 subunit in the 20S proteasomes of both Plasmodium and humans.

Results: The findings underscore the structural diversity inherent in both proteasomes. The human proteasome β5 subunit reveals a composition rich in β-sheets and adopts a more compact conformation. This structural arrangement limits the ligand binding pocket's capacity to accommodate only small compounds effectively. In contrast, the Plasmodium β5 subunit exhibits a higher prevalence of loop structures, creating a more open and flexible binding pocket. This unique structural characteristic enables the binding of a larger and more diverse array of compounds.

Conclusion: The discernible structural contrast between the human and Plasmodium proteasome β5 subunits holds promise for the identification of Plasmodium-selective compounds. The ability of the Plasmodium proteasome to accommodate a broader range of compounds due to its distinctive structural features opens avenues for drug screening to intending to develop selective anti-malarial agents. This study contributes valuable insights into the structural basis for targeting the Plasmodium proteasome and paves the way for the rational design of compounds with enhanced specificity and efficacy against malaria.

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人与疟原虫蛋白酶体β5亚基的结构比较:为抗疟疾药物的选择性抑制剂设计提供信息。
背景:疟原虫蛋白酶体由于其对多个生命周期阶段的潜在活性而成为抗疟疾药物开发的一个有希望的靶点。方法:对疟原虫和人20S蛋白酶体中β5亚基的结构特征进行比较分析。结果:这些发现强调了这两种蛋白酶体固有的结构多样性。人蛋白酶体β5亚基显示出丰富的β-片的组成,并采用更紧凑的构象。这种结构安排限制了配体结合袋有效容纳小化合物的能力。相比之下,疟原虫β5亚基表现出更高的环状结构,形成更开放和灵活的结合口袋。这种独特的结构特性使其能够结合更大、更多样化的化合物。结论:人疟原虫蛋白酶体β5亚基与人疟原虫蛋白酶体β5亚基具有明显的结构差异,有望用于疟原虫选择性化合物的鉴定。疟原虫蛋白酶体由于其独特的结构特征,能够容纳更广泛的化合物,这为药物筛选开辟了道路,旨在开发选择性抗疟疾药物。本研究对疟原虫蛋白酶体靶向的结构基础提供了有价值的见解,并为合理设计抗疟疾特异性和有效性增强的化合物铺平了道路。
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来源期刊
Malaria Journal
Malaria Journal 医学-寄生虫学
CiteScore
5.10
自引率
23.30%
发文量
334
审稿时长
2-4 weeks
期刊介绍: Malaria Journal is aimed at the scientific community interested in malaria in its broadest sense. It is the only journal that publishes exclusively articles on malaria and, as such, it aims to bring together knowledge from the different specialities involved in this very broad discipline, from the bench to the bedside and to the field.
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