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抑制单体人 l-乳酸脱氢酶组装成催化活性同源四聚体的肽减少培养细胞中乳酸的合成。

Peptides inhibiting the assembly of monomeric human l-lactate dehydrogenase into catalytically active homotetramer decrease the synthesis of lactate in cultured cells.

机构信息

Department of Pharmacy and Biotechnology, University of Bologna, Bologna, Italy.

CSGI, University of Firenze, Sesto Fiorentino, Italy.

出版信息

Protein Sci. 2024 Oct;33(10):e5161. doi: 10.1002/pro.5161.

Abstract

The energetic metabolism of cancer cells relies on a substantial commitment of pyruvate to the catalytic action of lactate-generating dehydrogenases. This coupling mainly depends on lactate dehydrogenase A (LDH-A), which is overexpressed in different types of cancers, and therefore represents an appealing therapeutic target. Taking into account that the activity of LDHs is exclusively exerted by their tetrameric forms, it was recently shown that peptides perturbing the monomers-to-tetramer assembly inhibit human LDH-A (hLDH-A). However, to identify these peptides, tetrameric hLDH-A was transiently exposed to strongly acidic conditions inducing its dissociation into monomers, which were tested as a target for peptides at low pH. Nevertheless, the availability of native monomeric hLDH-A would allow performing similar screenings under physiological conditions. Here we report on the unprecedented isolation of recombinant monomeric hLDH-A at neutral pH, and on its use to identify peptides inhibiting the assembly of the tetrameric enzyme. Remarkably, the GQNGISDL octapeptide, mimicking the 296-303 portion of hLDH-A C-terminal region, was observed to effectively inhibit the target enzyme. Moreover, by dissecting the action of this octapeptide, the cGQND cyclic tetrapeptide was found to act as the parental compound. Furthermore, we performed assays using MCF7 and BxPC3 cultured cells, exclusively expressing hLDH-A and hLDH-B, respectively. By means of these assays we detected a selective action of linear and cyclic GQND tetrapeptides, inhibiting lactate secretion in MCF7 cells only. Overall, our observations suggest that peptides mimicking the C-terminal region of hLDH-A effectively interfere with protein-protein interactions responsible for the assembly of the tetrameric enzyme.

摘要

癌细胞的能量代谢依赖于大量丙酮酸转化为生成乳酸的脱氢酶的催化作用。这种偶联主要依赖于在不同类型的癌症中过度表达的乳酸脱氢酶 A(LDH-A),因此它代表了一个有吸引力的治疗靶点。考虑到 LDHs 的活性仅通过其四聚体形式发挥,最近有人表明,扰乱单体到四聚体组装的肽抑制人 LDH-A(hLDH-A)。然而,为了鉴定这些肽,将四聚体 hLDH-A 短暂暴露于强酸性条件下,诱导其解离为单体,然后在低 pH 值下测试这些单体作为肽的靶标。然而,天然单体 hLDH-A 的可用性将允许在生理条件下进行类似的筛选。在这里,我们报告了在中性 pH 值下前所未有的重组单体 hLDH-A 的分离,并将其用于鉴定抑制四聚体酶组装的肽。值得注意的是,模拟 hLDH-A C 端区域 296-303 部分的 GQNGISDL 八肽被观察到能有效抑制靶酶。此外,通过剖析该八肽的作用,发现 cGQND 环四肽是母体化合物。此外,我们还使用仅表达 hLDH-A 和 hLDH-B 的 MCF7 和 BxPC3 培养细胞进行了测定。通过这些测定,我们检测到线性和环状 GQND 四肽的选择性作用,仅抑制 MCF7 细胞中乳酸的分泌。总体而言,我们的观察结果表明,模拟 hLDH-A C 端区域的肽能有效地干扰负责四聚体酶组装的蛋白质-蛋白质相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b69a/11400633/0a1a8a7beb67/PRO-33-e5161-g017.jpg

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