Johnson Hannah, White Forest M
Department of Biological Engineering, Massachusetts Institute of Technology , Cambridge, Massachusetts 02139, United States.
J Proteome Res. 2014 Nov 7;13(11):4581-93. doi: 10.1021/pr500418w. Epub 2014 Jun 24.
Glioblastoma multiforme (GBM) is the most aggressive malignant primary brain tumor, with a dismal mean survival even with the current standard of care. Although in vitro cell systems can provide mechanistic insight into the regulatory networks governing GBM cell proliferation and migration, clinical samples provide a more physiologically relevant view of oncogenic signaling networks. However, clinical samples are not widely available and may be embedded for histopathologic analysis. With the goal of accurately identifying activated signaling networks in GBM tumor samples, we investigated the impact of embedding in optimal cutting temperature (OCT) compound followed by flash freezing in LN2 vs immediate flash freezing (iFF) in LN2 on protein expression and phosphorylation-mediated signaling networks. Quantitative proteomic and phosphoproteomic analysis of 8 pairs of tumor specimens revealed minimal impact of the different sample processing strategies and highlighted the large interpatient heterogeneity present in these tumors. Correlation analyses of the differentially processed tumor sections identified activated signaling networks present in selected tumors and revealed the differential expression of transcription, translation, and degradation associated proteins. This study demonstrates the capability of quantitative mass spectrometry for identification of in vivo oncogenic signaling networks from human tumor specimens that were either OCT-embedded or immediately flash-frozen.
多形性胶质母细胞瘤(GBM)是最具侵袭性的原发性恶性脑肿瘤,即使采用当前的标准治疗方法,其平均生存期也很不理想。虽然体外细胞系统可以深入了解调控GBM细胞增殖和迁移的调控网络,但临床样本能提供更具生理相关性的致癌信号网络视图。然而,临床样本并不容易获取,且可能已被包埋用于组织病理学分析。为了准确识别GBM肿瘤样本中激活的信号网络,我们研究了在最佳切割温度(OCT)化合物中包埋后再在液氮中速冻与直接在液氮中速冻(iFF)对蛋白质表达和磷酸化介导的信号网络的影响。对8对肿瘤标本进行的定量蛋白质组学和磷酸蛋白质组学分析显示,不同的样本处理策略影响极小,并突出了这些肿瘤中存在的患者间的巨大异质性。对经过不同处理的肿瘤切片进行的相关性分析确定了选定肿瘤中存在的激活信号网络,并揭示了转录、翻译和降解相关蛋白的差异表达。这项研究证明了定量质谱法能够从OCT包埋或直接速冻的人类肿瘤标本中识别体内致癌信号网络。