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SKA1 通过抑制 FPGS 转录诱导骨肉瘤中甲氨蝶呤耐药。

SKA1 induces de novo MTX-resistance in osteosarcoma through inhibiting FPGS transcription.

机构信息

Department of Oncology, Affiliated 6th People's Hospital, Shanghai Jiaotong University, China.

East Campus, Department of Oncology, Affiliated 6th People's Hospital, Shanghai Jiaotong University, China.

出版信息

FEBS J. 2019 Jun;286(12):2399-2414. doi: 10.1111/febs.14808. Epub 2019 Apr 2.

Abstract

De novo methotrexate (MTX)-resistance, whose underlying mechanism remains largely unknown, usually leads to very poor prognosis in patients with osteosarcoma (OS). In this study, we established the de novo MTX-resistant OS cell line SF-86 and identified the candidate gene spindle and kinetochore associated complex subunit 1 (SKA1) as potentially related to de novo MTX-resistance. Analysis of a cohort of 95 OS patients demonstrated that SKA1 overexpression significantly correlated with de novo MTX-resistance and poor 5-year survival. Mechanistically, SKA1 overexpression lead to a downregulation of folylpoly-γ-glutamate synthetase (FPGS), a key enzyme that converts MTX into its active form, MTX-PG. We further demonstrated that SKA1 interacts with DNA-directed RNA polymerase II subunit RPB3. ChIP analysis revealed that RPB3 binds the promoter region of the FPGS gene and triggers FPGS transcription upon MTX treatment in SW1353, a MTX-sensitive OS cell line lacking endogenous SKA1 expression. On the contrary, this process is blocked in SF-86 cells due to the formation of an inhibitory SKA1-RPB3 complex. Furthermore, downregulation of SKA1 levels restores MTX sensitivity in SF-86. Collectively, our study has established the de novo MTX-resistant cell line SF-86 and identified SKA1 as a novel regulator of FPGS, playing a key role in the development of de novo MTX-resistance in OS.

摘要

从头发生的甲氨蝶呤(MTX)耐药性,其潜在机制在很大程度上尚不清楚,通常导致骨肉瘤(OS)患者预后非常差。在这项研究中,我们建立了从头发生 MTX 耐药性 OS 细胞系 SF-86,并确定纺锤体和动粒相关复合物亚基 1(SKA1)为可能与从头发生 MTX 耐药性相关的候选基因。对 95 例 OS 患者的队列分析表明,SKA1 过表达与从头发生 MTX 耐药性和 5 年生存率差显著相关。从机制上讲,SKA1 过表达导致叶酸多聚-γ-谷氨酸合成酶(FPGS)下调,FPGS 是将 MTX 转化为其活性形式 MTX-PG 的关键酶。我们进一步证明 SKA1 与 DNA 指导的 RNA 聚合酶 II 亚基 RPB3 相互作用。ChIP 分析显示,RPB3 结合 FPGS 基因的启动子区域,并在缺乏内源性 SKA1 表达的 MTX 敏感 OS 细胞系 SW1353 中,在 MTX 处理时触发 FPGS 转录。相反,由于形成抑制性 SKA1-RPB3 复合物,该过程在 SF-86 细胞中受阻。此外,下调 SKA1 水平可恢复 SF-86 对 MTX 的敏感性。总之,我们的研究建立了从头发生的 MTX 耐药性细胞系 SF-86,并确定 SKA1 是 FPGS 的新型调节剂,在 OS 中从头发生 MTX 耐药性的发展中起关键作用。

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