A small molecule inhibitor of leucine carboxyl methyltransferase-1 inhibits cancer cell survival

O. A. Arosarena, A. S. Saribas, E. P. Papadopoulos
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Abstract

Reversible phosphorylation is the basis for signal transduction in eukaryotic cells, and this is tightly controlled by the complex interplay of kinases and phosphatases. Many malignancies are characterized by dysregulation of the delicate protein phosphorylation balance. The targeting of protein phosphatases has been gaining attention as their role in cancer development and progression has been elucidated. The protein phosphatase-2A (PP2A) family of phosphatases are the primary cellular serine/threonine phosphatases. PP2A heterotrimers containing the B55α (PR55α) regulatory subunit have been associated with oncogenic signaling, and B55 subunits are found exclusively in forms of PP2A in which the carboxyl terminus of the catalytic subunit (PP2Ac) is methylated. Methylation of PP2Ac is primarily mediated by leucine carboxyl methyltransferase-1 (LCMT-1). Demethylation is controlled by an esterase, PP2A methylesterase (PME-1). We tested two potential LCMT-1 small molecule inhibitors and found that methyl 4-methyl-2-[(2-methylbenzoyl)amino]-5-[[(3-methylphenyl)amino]carbonyl]-3-thiophenecarboxylate (henceforth referred to as Compound 2) significantly inhibited PP2Ac methylation in vitro (p = 0.0024), and in the MDA-MB-231 breast carcinoma (p = 0.0431) and Rosi melanoma (p = 0.0335) cell lines. Compound 2 significantly reduced survival in HEK-293, HS-5, MDA-MB-231 and Rosi cells; and constrained clonogenic colony formation in MCF7, MDA-MB-231 and Rosi cells. The LCMT-1inhibitor induced G0/G1 cell cycle arrest in Rosi cells (p = 0.0193) and induced apoptosis in MDA-MB-231 cells (p < 0.0001). Increased phosphorylation of the receptor-interacting serine/threonine protein kinase-1 (RIPK1) was detected in MDA-MB-231 (p = 0.0273) and Rosi cells (p = 0.0179) in response to treatment with Compound 2. These data add to the body of evidence pointing to LCMT-1 as an oncogenic target.
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亮氨酸羧基甲基转移酶-1 小分子抑制剂可抑制癌细胞存活
可逆磷酸化是真核细胞信号转导的基础,它受到激酶和磷酸酶复杂相互作用的严格控制。许多恶性肿瘤都以微妙的蛋白质磷酸化平衡失调为特征。随着蛋白磷酸酶在癌症发生和发展过程中的作用不断被阐明,以蛋白磷酸酶为靶点的研究日益受到关注。蛋白磷酸酶-2A(PP2A)家族磷酸酶是主要的细胞丝氨酸/苏氨酸磷酸酶。含有 B55α(PR55α)调节亚基的 PP2A 异源三聚体与致癌信号转导有关,B55 亚基只存在于催化亚基(PP2Ac)的羧基末端被甲基化的 PP2A 形式中。PP2Ac 的甲基化主要由亮氨酸羧基甲基转移酶-1(LCMT-1)介导。去甲基化则由酯酶 PP2A 甲酯化酶(PME-1)控制。我们测试了两种潜在的 LCMT-1 小分子抑制剂,发现 4-甲基-2-[(2-甲基苯甲酰基)氨基]-5-[[(3-甲基苯基)氨基]羰基]-3-噻吩羧酸甲酯(以下简称化合物 2)能显著抑制 PP2Ac 的体外甲基化(p = 0.0024) 以及 MDA-MB-231 乳腺癌 (p = 0.0431) 和 Rosi 黑色素瘤 (p = 0.0335) 细胞系中的 PP2Ac 甲基化。化合物 2 明显降低了 HEK-293、HS-5、MDA-MB-231 和 Rosi 细胞的存活率;限制了 MCF7、MDA-MB-231 和 Rosi 细胞的克隆形成。LCMT-1 抑制剂诱导 Rosi 细胞的 G0/G1 细胞周期停滞(p = 0.0193),并诱导 MDA-MB-231 细胞凋亡(p < 0.0001)。在 MDA-MB-231 细胞(p = 0.0273)和 Rosi 细胞(p = 0.0179)中检测到受体相互作用丝氨酸/苏氨酸蛋白激酶-1(RIPK1)的磷酸化增加,这是对化合物 2 处理的反应。这些数据增加了将 LCMT-1 作为致癌靶点的证据。
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The role of physicochemical and topological parameters in drug design Editorial: Recent trends in anti-cancer drug discovery by in silico methods A small molecule inhibitor of leucine carboxyl methyltransferase-1 inhibits cancer cell survival A review on dynamics of permeability-glycoprotein in efflux of chemotherapeutic drugs The (misleading) role of animal models in drug development
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