UBXN2A 和 mortalin 相互作用的结构研究以及沉默的 UBXN2A 在防止化疗反应中的推定作用。

Cell Stress and Chaperones Pub Date : 2016-03-01 Epub Date: 2015-12-04 DOI:10.1007/s12192-015-0661-5
Sanam Sane, Ammara Abdullah, Morgan E Nelson, Hongmin Wang, Subhash C Chauhan, Samuel S Newton, Khosrow Rezvani
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引用次数: 0

摘要

癌细胞中过量表达的肿瘤蛋白mortalin及其蛋白伙伴能使mortalin促进多种致癌信号通路,并有效拮抗化疗诱导的细胞死亡。一种含 UBX 域的蛋白质 UBXN2A 是一种潜在的 mortalin 抑制剂。本研究确定了 UBXN2A 是否能有效结合并占据 mortalin 的结合口袋,从而直接提高肿瘤对化疗的敏感性。对人类 mortalin 的结合口袋及其与 UBXN2A 的 SEP 结构域的结合进行分子建模,然后进行酵母双杂交和 His-tag 拉取实验,结果发现 mortalin 底物结合结构域中的三个氨基酸(PRO442、ILE558 和 LYS555)对 UBXN2A 与 mortalin 的结合至关重要。在环己亚胺存在下进行的追逐实验显示,过量表达 UBXN2A 似乎会干扰 mortalin-CHIP E3 泛素连接酶,从而抑制 HSC70 交互蛋白(CHIP)介导的 p53 C 端脱稳,导致其在细胞质中稳定,在细胞核中上调。过表达 UBXN2A 会显著抑制结肠癌细胞的增殖和迁移。我们在人骨肉瘤 U2OS 细胞系(一种富集的肉毒杆菌癌细胞)中沉默了 UBXN2A,然后使用临床剂量的化疗药物 5-氟尿嘧啶(5-FU)。UBXN2A 基因敲除的 U2OS 细胞显示,UBXNA 是 5-FU 发挥细胞毒性作用的必要条件。UBXN2A 的过表达明显增加了 U2OS 细胞对 5-FU 的凋亡反应。此外,沉默 UBXN2A 蛋白可抑制 UBXN2A 过表达对 U2OS 细胞凋亡的增强作用。这项研究为我们深入了解 UBXN2A 作为一种强效必死素抑制剂和潜在化疗增敏剂在临床应用中的机理作用提供了启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural studies of UBXN2A and mortalin interaction and the putative role of silenced UBXN2A in preventing response to chemotherapy.

Overexpression of the oncoprotein mortalin in cancer cells and its protein partners enables mortalin to promote multiple oncogenic signaling pathways and effectively antagonize chemotherapy-induced cell death. A UBX-domain-containing protein, UBXN2A, acts as a potential mortalin inhibitor. This current study determines whether UBXN2A effectively binds to and occupies mortalin's binding pocket, resulting in a direct improvement in the tumor's sensitivity to chemotherapy. Molecular modeling of human mortalin's binding pocket and its binding to the SEP domain of UBXN2A followed by yeast two-hybrid and His-tag pull-down assays revealed that three amino acids (PRO442, ILE558, and LYS555) within the substrate-binding domain of mortalin are crucial for UBXN2A binding to mortalin. As revealed by chase experiments in the presence of cycloheximide, overexpression of UBXN2A seems to interfere with the mortalin-CHIP E3 ubiquitin ligase and consequently suppresses the C-terminus of the HSC70-interacting protein (CHIP)-mediated destabilization of p53, resulting in its stabilization in the cytoplasm and upregulation in the nucleus. Overexpression of UBXN2A causes a significant inhibition of cell proliferation and the migration of colon cancer cells. We silenced UBXN2A in the human osteosarcoma U2OS cell line, an enriched mortalin cancer cell, followed by a clinical dosage of the chemotherapeutic agent 5-fluorouracil (5-FU). The UBXN2A knockout U2OS cells revealed that UBXNA is essential for the cytotoxic effect achieved by 5-FU. UBXN2A overexpression markedly increased the apoptotic response of U2OS cells to the 5-FU. In addition, silencing of UBXN2A protein suppresses apoptosis enhanced by UBXN2A overexpression in U2OS. The knowledge gained from this study provides insights into the mechanistic role of UBXN2A as a potent mortalin inhibitor and as a potential chemotherapy sensitizer for clinical application.

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