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锌指模体结构的完整性是 PML 蛋白被锑诱导降解所必需的。

Integrity of zinc finger motifs in PML protein is necessary for inducing its degradation by antimony.

机构信息

Department of Pharmacology, School of Medicine, Zhejiang University, China and Department of Toxicology, School of Medicine and Public Health, Zhejiang University, Zhejiang, 310058, China.

Department of Pharmacology, School of Medicine, Zhejiang University, China and College of Pharmaceutical Sciences, Inner Mongolia Medical University, Hohhot, China.

出版信息

Metallomics. 2019 Aug 1;11(8):1419-1429. doi: 10.1039/c9mt00102f. Epub 2019 Jul 17.

Abstract

Antimony (Sb) belongs to the same group as arsenic (As) in the periodic table, and both share similar characteristics. However, SbO (Sb) has no methylation capacity, unlike arsenic trioxide (AsO). In the present study, we determined the effect of Sb on NB4 cells and found that antimony could induce PML-RARα fusion protein degradation, reorganization of PML-NBs, and NB4 cell differentiation with low cytotoxicity. On the other hand, zinc finger motifs in PML protein are considered to be a key target binding site for arsenic-induced PML-RARα protein degradation. Interestingly, antimony and arsenic lost their ability to degrade PML-RARα fusion protein in NB4 cells following pretreatment with phenanthroline (i.e., chelator of zinc ions), indicating that the integrity of zinc finger motifs in PML-RARα fusion protein is a fundamental condition for inducing the protein's degradation by antimony and arsenic. Moreover, we found that Sb could not induce mutant PML (e.g., A126V and L218P) solubility change and degradation, similar to AsO. In contrast, we found that the organic antimony compound phenylstibine oxide (PSO) could induce mutant PML protein degradation. In conclusion, our results indicate that Sb might also be a promising agent to treat acute promyelocytic leukemia, in the same manner as AsO.

摘要

锑(Sb)在元素周期表中与砷(As)同属一族,具有相似的特性。然而,三氧化二锑(SbO)没有甲基化能力,而不像三氧化二砷(AsO)。本研究旨在探讨 Sb 对 NB4 细胞的影响,结果发现 Sb 能诱导 PML-RARα 融合蛋白降解、PML-NBs 重排,并在低细胞毒性下诱导 NB4 细胞分化。另一方面,PML 蛋白中的锌指结构域被认为是砷诱导 PML-RARα 蛋白降解的关键靶结合位点。有趣的是,在用菲咯啉(锌离子螯合剂)预处理后,Sb 和砷失去了在 NB4 细胞中降解 PML-RARα 融合蛋白的能力,表明 PML-RARα 融合蛋白中锌指结构域的完整性是诱导其被 Sb 和砷降解的基本条件。此外,我们发现 Sb 不能诱导突变型 PML(如 A126V 和 L218P)溶解度改变和降解,这与 AsO 相似。相比之下,我们发现有机锑化合物苯亚乙基氧(PSO)可以诱导突变型 PML 蛋白降解。综上所述,我们的研究结果表明,Sb 可能与 AsO 一样,是一种有前途的治疗急性早幼粒细胞白血病的药物。

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