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利什曼原虫 HslU 的 C 端片段:潜在的 LmHslVU 活性抑制剂。

The C-terminal segment of Leishmania major HslU: Toward potential inhibitors of LmHslVU activity.

机构信息

IBMM, CNRS, Univ Montpellier, ENSCM, Montpellier, France.

Centre de Recherche en Biologie Cellulaire de Montpellier (CRBM), UMR5237, CNRS, Univ Montpellier, 1919, route de Mende, 34000 Montpellier, France.

出版信息

Bioorg Chem. 2022 Feb;119:105539. doi: 10.1016/j.bioorg.2021.105539. Epub 2021 Dec 5.

Abstract

It is urgent to develop less toxic and more efficient treatments for leishmaniases and trypanosomiases. We explore the possibility to target the parasite mitochondrial HslVU protease, which is essential for growth and has no analogue in the human host. For this, we develop compounds potentially inhibiting the complex assembly by mimicking the C-terminal (C-ter) segment of the ATPase HslU. We previously showed that a dodecapeptide derived from Leishmania major HslU C-ter segment (LmC12-U2, Cpd 1) was able to bind to and activate the digestion of a fluorogenic substrate by LmHslV. Here, we present the study of its structure-activity relationships. By replacing each essential residue with related non-proteinogenic residues, we obtained more potent analogues. In particular, a cyclohexylglycine residue at position 11 (cpd 24) allowed a more than three-fold gain in potency while reducing the size of compound 24 from twelve to six residues (cpd 50) without significant loss of potency, opening the way toward short HslU C-ter peptidomimetics as potential inhibitors of HslV proteolytic function. Finally, conjugates constituted of LmC6-U2 analogues and a mitochondrial penetrating peptide were found to penetrate into the promastigote form of L. infantum and to inhibit the parasite growth without showing toxicity toward human THP-1 cells at the same concentration (i.e. 30 μM).

摘要

迫切需要开发毒性更低、效率更高的利什曼病和锥虫病治疗方法。我们探索了靶向寄生虫线粒体 HslVU 蛋白酶的可能性,该蛋白酶对生长至关重要,并且在人类宿主中没有类似物。为此,我们开发了可能通过模拟 ATP 酶 HslU 的 C 末端(C-ter)片段来抑制复合物组装的化合物。我们之前表明,来自利什曼原虫 HslU C 末端片段(LmC12-U2,化合物 1)的十二肽能够结合并激活 LmHslV 对荧光底物的消化。在这里,我们介绍了对其结构-活性关系的研究。通过用相关的非蛋白原性残基替代每个必需残基,我们得到了更有效的类似物。特别是,位置 11 的环己基甘氨酸残基(化合物 24)使效力提高了三倍以上,同时将化合物 24 的大小从十二个减少到六个残基(化合物 50)而效力没有明显损失,为短 HslU C 末端肽模拟物作为 HslV 蛋白水解功能的潜在抑制剂开辟了道路。最后,发现由 LmC6-U2 类似物和线粒体穿透肽构成的缀合物能够穿透婴儿利什曼原虫的前体形式,并在相同浓度(即 30 μM)下抑制寄生虫生长而对人 THP-1 细胞没有毒性。

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