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MMV676477可抑制弓形虫的复制,且不会产生耐药性。

Toxoplasma replication is inhibited by MMV676477 without development of resistance.

作者信息

Abbaali Izra, Truong Danny, Wetzel Dawn M, Morrissette Naomi S

机构信息

Department of Molecular Biology and Biochemistry, University of California, Irvine, California, USA.

Department of Pediatrics and Biochemistry, University of Texas Southwestern Medical Center, Dallas, Texas, USA.

出版信息

Cytoskeleton (Hoboken). 2025 Jan;82(1-2):5-11. doi: 10.1002/cm.21876. Epub 2024 May 16.

DOI:10.1002/cm.21876
PMID:38757481
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11568068/
Abstract

Protozoan parasites cause life-threatening infections in both humans and animals, including agriculturally significant livestock. Available treatments are typically narrow spectrum and are complicated by drug toxicity and the development of resistant parasites. Protozoan tubulin is an attractive target for the development of broad-spectrum antimitotic agents. The Medicines for Malaria Pathogen Box compound MMV676477 was previously shown to inhibit replication of kinetoplastid parasites, such as Leishmania amazonensis and Trypanosoma brucei, and the apicomplexan parasite Plasmodium falciparum by selectively stabilizing protozoan microtubules. In this report, we show that MMV676477 inhibits intracellular growth of the human apicomplexan pathogen Toxoplasma gondii with an EC value of ~50 nM. MMV676477 does not stabilize vertebrate microtubules or cause other toxic effects in human fibroblasts. The availability of tools for genetic studies makes Toxoplasma a useful model for studies of the cytoskeleton. We conducted a forward genetics screen for MMV676477 resistance, anticipating that missense mutations would delineate the binding site on protozoan tubulin. Unfortunately, we were unable to use genetics to dissect target interactions because no resistant parasites emerged. This outcome suggests that future drugs based on the MMV676477 scaffold would be less likely to be undermined by the emergence of drug resistance.

摘要

原生动物寄生虫会在人类和动物(包括具有重要农业意义的家畜)中引发危及生命的感染。现有的治疗方法通常具有窄谱性,并且会因药物毒性和寄生虫耐药性的产生而变得复杂。原生动物微管蛋白是开发广谱抗有丝分裂药物的一个有吸引力的靶点。疟疾药物病原体盒化合物MMV676477先前已被证明可通过选择性地稳定原生动物微管来抑制动基体寄生虫(如亚马逊利什曼原虫和布氏锥虫)以及顶复门寄生虫恶性疟原虫的复制。在本报告中,我们表明MMV676477以约50 nM的EC值抑制人类顶复门病原体刚地弓形虫的细胞内生长。MMV676477不会稳定脊椎动物微管,也不会在人类成纤维细胞中引起其他毒性作用。遗传研究工具的可用性使弓形虫成为研究细胞骨架的有用模型。我们对MMV676477抗性进行了正向遗传学筛选,预期错义突变将描绘原生动物微管蛋白上的结合位点。不幸的是,由于没有出现抗性寄生虫,我们无法利用遗传学来剖析靶点相互作用。这一结果表明,未来基于MMV676477支架的药物因耐药性出现而受到影响的可能性较小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62b1/11748360/c398faee7094/CM-82-5-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62b1/11748360/e65485ed138b/CM-82-5-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62b1/11748360/5642f3ab69e5/CM-82-5-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62b1/11748360/c398faee7094/CM-82-5-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62b1/11748360/e65485ed138b/CM-82-5-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62b1/11748360/5642f3ab69e5/CM-82-5-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62b1/11748360/c398faee7094/CM-82-5-g002.jpg

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本文引用的文献

1
Malaria.疟疾。
Lancet. 2023 Dec 16;402(10419):2328-2345. doi: 10.1016/S0140-6736(23)01249-7. Epub 2023 Nov 2.
2
The Tubulin Superfamily in Apicomplexan Parasites.顶复门寄生虫中的微管蛋白超家族。
Microorganisms. 2023 Mar 9;11(3):706. doi: 10.3390/microorganisms11030706.
3
The Toxoplasma plant-like vacuolar compartment (PLVAC).刚地弓形虫类植物液泡隔室(PLVAC)。
J Eukaryot Microbiol. 2022 Nov;69(6):e12951. doi: 10.1111/jeu.12951. Epub 2022 Oct 27.
4
Identification of key interactions of benzimidazole resistance-associated amino acid mutations in Ascaris β-tubulins by molecular docking simulations.通过分子对接模拟鉴定蛔虫β-微管蛋白中苯并咪唑类药物耐药相关氨基酸突变的关键相互作用。
Sci Rep. 2022 Aug 12;12(1):13725. doi: 10.1038/s41598-022-16765-4.
5
Microtubules in Microorganisms: How Tubulin Isotypes Contribute to Diverse Cytoskeletal Functions.微生物中的微管:微管蛋白亚型如何促成多种细胞骨架功能
Front Cell Dev Biol. 2022 Jul 5;10:913809. doi: 10.3389/fcell.2022.913809. eCollection 2022.
6
Unveiling the Possible Oryzalin-Binding Site in the α-Tubulin of .揭示……的α-微管蛋白中可能的oryzalin结合位点
ACS Omega. 2022 May 24;7(22):18434-18442. doi: 10.1021/acsomega.2c00729. eCollection 2022 Jun 7.
7
Systematic Analysis of Clemastine, a Candidate Apicomplexan Parasite-Selective Tubulin-Targeting Agent.系统分析氯马斯汀,候选的顶复门寄生虫选择性微管蛋白靶向剂。
Int J Mol Sci. 2021 Dec 22;23(1):68. doi: 10.3390/ijms23010068.
8
Microtubule Targeting Agents in Disease: Classic Drugs, Novel Roles.疾病中的微管靶向药物:经典药物,新角色。
Cancers (Basel). 2021 Nov 12;13(22):5650. doi: 10.3390/cancers13225650.
9
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Nucleic Acids Res. 2022 Jan 7;50(D1):D898-D911. doi: 10.1093/nar/gkab929.
10
Inhibiting parasite proliferation using a rationally designed anti-tubulin agent.使用合理设计的抗微管蛋白剂抑制寄生虫增殖。
EMBO Mol Med. 2021 Nov 8;13(11):e13818. doi: 10.15252/emmm.202013818. Epub 2021 Oct 18.