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强心苷激活肿瘤抑制因子和病毒限制因子早幼粒细胞白血病蛋白(PML)。

Cardiac Glycosides Activate the Tumor Suppressor and Viral Restriction Factor Promyelocytic Leukemia Protein (PML).

作者信息

Milutinovic Snezana, Heynen-Genel Susanne, Chao Elizabeth, Dewing Antimone, Solano Ricardo, Milan Loribelle, Barron Nikki, He Min, Diaz Paul W, Matsuzawa Shu-ichi, Reed John C, Hassig Christian A

机构信息

Sanford Burnham Prebys Medical Discovery Institute, 10901 N. Torrey Pines Road, La Jolla, CA 92037, United States of America.

Bemer USA, LLC, Carlsbad, CA, United States of America.

出版信息

PLoS One. 2016 Mar 31;11(3):e0152692. doi: 10.1371/journal.pone.0152692. eCollection 2016.

Abstract

Cardiac glycosides (CGs), inhibitors of Na+/K+-ATPase (NKA), used clinically to treat heart failure, have garnered recent attention as potential anti-cancer and anti-viral agents. A high-throughput phenotypic screen designed to identify modulators of promyelocytic leukemia protein (PML) nuclear body (NB) formation revealed the CG gitoxigenin as a potent activator of PML. We demonstrate that multiple structurally distinct CGs activate the formation of PML NBs and induce PML protein SUMOylation in an NKA-dependent fashion. CG effects on PML occur at the post-transcriptional level, mechanistically distinct from previously described PML activators and are mediated through signaling events downstream of NKA. Curiously, genomic deletion of PML in human cancer cells failed to abrogate the cytotoxic effects of CGs and other apoptotic stimuli such as ceramide and arsenic trioxide that were previously shown to function through PML in mice. These findings suggest that alternative pathways can compensate for PML loss to mediate apoptosis in response to CGs and other apoptotic stimuli.

摘要

强心苷(CGs)是钠钾ATP酶(NKA)的抑制剂,临床上用于治疗心力衰竭,最近作为潜在的抗癌和抗病毒药物受到关注。一项旨在鉴定早幼粒细胞白血病蛋白(PML)核体(NB)形成调节剂的高通量表型筛选显示,强心苷吉他洛苷元是PML的有效激活剂。我们证明,多种结构不同的强心苷以NKA依赖的方式激活PML核体的形成并诱导PML蛋白的SUMO化。强心苷对PML的作用发生在转录后水平,其机制与先前描述的PML激活剂不同,并且是通过NKA下游的信号事件介导的。奇怪的是,人类癌细胞中PML的基因缺失未能消除强心苷和其他凋亡刺激(如神经酰胺和三氧化二砷)的细胞毒性作用,而这些凋亡刺激先前在小鼠中显示是通过PML发挥作用的。这些发现表明,替代途径可以补偿PML的缺失,以介导对强心苷和其他凋亡刺激的凋亡反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd74/4816303/0148124da3ce/pone.0152692.g001.jpg

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