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