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首页> 外文期刊>Journal of Molecular Endocrinology >KSR1 is coordinately regulated with Notch signaling and oxidative phosphorylation in thyroid cancer
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KSR1 is coordinately regulated with Notch signaling and oxidative phosphorylation in thyroid cancer

机译:甲状腺癌中Notch信号和氧化磷酸化对KSR1的调控

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摘要

Kinase suppressor of RAS1 (KSR1) is a scaffold protein implicated in RAS-mediated RAF activation. However, the molecular function of KSR in papillary thyroid cancer (PTC) is unknown. Thus, this study aimed to characterize the role of KSR1 in patients with PTC. qRT-PCR and immunohistochemistry (IHC) revealed inter-tumor heterogeneities in the expression of KSR1 in PTC tissues. Interestingly, BRAFV600E-positive PTC showed higher KSR1 mRNA expression than BRAFV600E-negative PTC (P0.001). Gene Set Enrichment Analysis (GSEA) using public repositories showed that high KSR1 expression coordinately upregulated Notch signaling (nominal P=0.019, false discovery rate (FDR) q-value=0.165); this finding was supported by GeneNetwork analysis, indicating that KSR1 expression is positively correlated with NOTCH1 expression (ρ=0.677, P=6.15×10?9). siRNA against KSR1 (siKSR1) significantly decreased ERK phosphorylation induced by BRAFV600E, resulting in reduced expression of NOTCH1 and HES1, targets of Notch signaling. GSEA revealed that high KSR1 expression was also associated with downregulation of genes related to oxidative phosphorylation (OxPhos). Consistent with this, electron microscopy showed that PTCs with high KSR1 expression exhibited structural defects of the mitochondrial cristae. Furthermore, siKSR1-transfected BCPAP and 8505C cells generated fewer colonies in colony-forming assays. In addition, GSEA showed that high expression of KSR2 and connector enhancer of KSR1 (CNKSR1) also coordinately upregulated Notch signaling (KSR2: nominal P=0.0097, FDR q-value=0.154 and CNKSR1: nominal P0.0001, FDR q-value=0.00554), and high CNKSR2 was associated with downregulation of the OxPhos gene set (nominal P0.0001, FDR q-value 0.0001). In conclusion, KSR1 is coordinately regulated with Notch signaling and OxPhos in PTC, because its scaffold function might be required to sustain the proliferative signaling and metabolic remodeling associated with this type of cancer.
机译:RAS1(KSR1)的激酶抑制剂是涉及RAS介导的RAF激活的支架蛋白。然而,KSR在甲状腺乳头状癌(PTC)中的分子功能尚不清楚。因此,本研究旨在表征KSR1在PTC患者中的作用。 qRT-PCR和免疫组织化学(IHC)显示PTC组织中KSR1表达的肿瘤间异质性。有趣的是,BRAFV600E阳性PTC比BRAFV600E阴性PTC显示出更高的KSR1 mRNA表达(P <0.001)。使用公共存储库的基因集富集分析(GSEA)显示,高KSR1表达协同上调Notch信号(标称P = 0.019,错误发现率(FDR)q值= 0.165);这一发现得到了GeneNetwork分析的支持,表明KSR1表达与NOTCH1表达正相关(ρ= 0.677,P = 6.15×10?9)。针对KSR1的siRNA(siKSR1)大大降低了BRAFV600E诱导的ERK磷酸化,导致Notch1和HES1(Notch信号转导的靶标)的表达降低。 GSEA发现,高KSR1表达还与下调与氧化磷酸化(OxPhos)相关的基因有关。与此相一致,电子显微镜显示具有高KSR1表达的PTC表现出线粒体cr的结构缺陷。此外,在集落形成试验中,siKSR1转染的BCPAP和8505C细胞产生的集落更少。此外,GSEA还显示KSR2和KSR1的连接子增强子(CNKSR1)的高表达也协同上调了Notch信号(KSR2:标称P = 0.0097,FDR q值= 0.154和CNKSR1:标称P <0.0001,FDR q值= 0.00554),而高的CNKSR2与OxPhos基因组的下调相关(标称P <0.0001,FDR q值<0.0001)。总之,KSR1在PTC中与Notch信号和OxPhos协同调节,因为可能需要其脚手架功能来维持与这类癌症相关的增殖信号和代谢重塑。

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