首页> 外文期刊>BMC Cancer >A functional proteogenomic analysis of endometrioid and clear cell carcinomas using reverse phase protein array and mutation analysis: protein expression is histotype-specific and loss of ARID1A /BAF250a is associated with AKT phosphorylation
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A functional proteogenomic analysis of endometrioid and clear cell carcinomas using reverse phase protein array and mutation analysis: protein expression is histotype-specific and loss of ARID1A /BAF250a is associated with AKT phosphorylation

机译:使用反相蛋白质阵列和突变分析对子宫内膜样和透明细胞癌进行功能蛋白组学分析:蛋白质表达具有组织特异性,ARID1A / BAF250a的缺失与AKT磷酸化有关

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Background Ovarian cancer is now recognized as a number of distinct diseases primarily defined by histological subtype. Both clear cell ovarian carcinomas (CCC) and ovarian endometrioid carcinomas (EC) may arise from endometriosis and frequently harbor mutations in the ARID1A tumor suppressor gene. We studied the influence of histological subtype on protein expression with reverse phase protein array (RPPA) and assessed proteomic changes associated with ARID1A mutation/BAF250a expression in EC and CCC. Methods Immunohistochemistry (IHC) for BAF250a expression was performed on 127 chemotherapy-naive ovarian carcinomas (33 CCC, 29 EC, and 65 high-grade serous ovarian carcinomas (HGSC)). Whole tumor lysates were prepared from frozen banked tumor samples and profiled by RPPA using 116 antibodies. ARID1A mutations were identified by exome sequencing, and PIK3CA mutations were characterized by MALDI-TOF mass spectrometry. SAM (Significance Analysis of Microarrays) was performed to determine differential protein expression by histological subtype and ARID1A mutation status. Multivariate logistic regression was used to assess the impact of ARID1A mutation status/BAF250a expression on AKT phosphorylation (pAKT). PIK3CA mutation type and PTEN expression were included in the model. BAF250a knockdown was performed in 3 clear cell lines using siRNA to ARID1A . Results Marked differences in protein expression were observed that are driven by histotype. Compared to HGSC, SAM identified over 50 proteins that are differentially expressed in CCC and EC. These included PI3K/AKT pathway proteins, those regulating the cell cycle, apoptosis, transcription, and other signaling pathways including steroid hormone signaling. Multivariate models showed that tumors with loss of BAF250a expression showed significantly higher levels of AKT-Thr308 and AKT-Ser473 phosphorylation (p?308 or pAKT-S473 suggesting that pAKT in tumor tissues is indirectly regulated by BAF250a expression. Conclusions Proteomic assessment of CCC and EC demonstrates remarkable differences in protein expression that are dependent on histotype, thereby further characterizing these cancers. AKT phosphorylation is associated with ARID1A /BAF250a deficient tumors, however in ovarian cancers the mechanism remains to be elucidated.
机译:背景技术卵巢癌现在被认为是许多主要由组织学亚型定义的独特疾病。透明细胞卵巢癌(CCC)和卵巢子宫内膜样癌(EC)都可能源于子宫内膜异位症,并且经常在ARID1A肿瘤抑制基因中包含突变。我们用反相蛋白阵列(RPPA)研究了组织学亚型对蛋白表达的影响,并评估了与EC和CCC中ARID1A突变/ BAF250a表达相关的蛋白质组学变化。方法对127例初治性卵巢癌(33例CCC,29例EC和65例高度浆液性卵巢癌(HGSC))进行BAF250a表达的免疫组织化学(IHC)。从冻存的肿瘤样品中制备完整的肿瘤裂解物,并使用116种抗体通过RPPA进行分析。通过外显子组测序鉴定出ARID1A突变,并通过MALDI-TOF质谱表征PIK3CA突变。进行了SAM(微阵列意义分析),以通过组织学亚型和ARID1A突变状态确定差异蛋白表达。使用多元逻辑回归分析评估ARID1A突变状态/ BAF250a表达对AKT磷酸化(pAKT)的影响。该模型包括PIK3CA突变类型和PTEN表达。使用ARID1A的siRNA在3个透明细胞系中进行BAF250a敲除。结果观察到蛋白质表达的显着差异是由组织型驱动的。与HGSC相比,SAM鉴定了50多种在CCC和EC中差异表达的蛋白质。这些包括PI3K / AKT途径蛋白,调节细胞周期,凋亡,转录和其他信号途径(包括类固醇激素信号传导)的蛋白质。多变量模型显示,BAF250a表达缺失的肿瘤的AKT-Thr 308 和AKT-Ser 473 磷酸化水平显着更高(p?308 或pAKT- S 473 提示肿瘤组织中的pAKT受到BAF250a表达的间接调节。结论CCC和EC的蛋白质组学评估显示蛋白质表达存在显着差异,这取决于组织类型,从而进一步表征了这些癌症。与ARID1A / BAF250a缺陷性肿瘤相关,但是在卵巢癌中其机制尚待阐明。

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