Department of Biophysics and Nuclear Medicine, Hautepierre Hospital, University Hospitals of Strasbourg, Strasbourg, France; ICube, UMR 7357, University of Strasbourg/CNRS and FMTS, Faculty of Medicine, Strasbourg, France.
ICube, UMR 7357, University of Strasbourg/CNRS and FMTS, Faculty of Medicine, Strasbourg, France.
Neoplasia. 2015 Jan;17(1):55-65. doi: 10.1016/j.neo.2014.10.010.
Succinate dehydrogenase gene (SDHx) mutations increase susceptibility to develop pheochromocytomas/paragangliomas (PHEOs/PGLs). In the present study, we evaluate the performance and clinical applications of (1)H high-resolution magic angle spinning (HRMAS) nuclear magnetic resonance (NMR) spectroscopy-based global metabolomic profiling in a large series of PHEOs/PGLs of different genetic backgrounds. Eighty-seven PHEOs/PGLs (48 sporadic/23 SDHx/7 von Hippel-Lindau/5 REarranged during Transfection/3 neurofibromatosis type 1/1 hypoxia-inducible factor 2α), one SDHD variant of unknown significance, and two Carney triad (CTr)-related tumors were analyzed by HRMAS-NMR spectroscopy. Compared to sporadic, SDHx-related PHEOs/PGLs exhibit a specific metabolic signature characterized by increased levels of succinate (P < .0001), methionine (P = .002), glutamine (P = .002), and myoinositol (P < .0007) and decreased levels of glutamate (P < .0007), regardless of their location and catecholamine levels. Uniquely, ATP/ascorbate/glutathione was found to be associated with the secretory phenotype of PHEOs/PGLs, regardless of their genotype (P < .0007). The use of succinate as a single screening test retained excellent accuracy in distinguishing SDHx versus non-SDHx-related tumors (sensitivity/specificity: 100/100%). Moreover, the quantification of succinate could be considered a diagnostic alternative for assessing SDHx-related mutations of unknown pathogenicity. We were also able, for the first time, to uncover an SDH-like pattern in the two CTr-related PGLs. The present study demonstrates that HRMAS-NMR provides important information for SDHx-related PHEO/PGL characterization. Besides the high succinate-low glutamate hallmark, SDHx tumors also exhibit high values of methionine, a finding consistent with the hypermethylation pattern of these tumors. We also found important levels of glutamine, suggesting that glutamine metabolism might be involved in the pathogenesis of SDHx-related PHEOs/PGLs.
琥珀酸脱氢酶基因 (SDHx) 突变增加了发生嗜铬细胞瘤/副神经节瘤 (PHEO/PGL) 的易感性。在本研究中,我们评估了 (1)H 高分辨率魔角旋转 (HRMAS) 核磁共振 (NMR) 光谱基于全局代谢组学分析在不同遗传背景的大型 PHEO/PGL 系列中的性能和临床应用。对 87 例 PHEO/PGL(48 例散发性/23 例 SDHx/7 例 von Hippel-Lindau/5 转染重排/3 神经纤维瘤病 1 型/1 缺氧诱导因子 2α)、1 例 SDHD 变异未知意义、2 例卡尼三联征(CTr)相关肿瘤进行 HRMAS-NMR 光谱分析。与散发性相比,SDHx 相关的 PHEO/PGL 表现出特定的代谢特征,其琥珀酸盐(P <.0001)、蛋氨酸(P =.002)、谷氨酰胺(P =.002)和肌醇(P <.0007)水平升高,而谷氨酸(P <.0007)水平降低。独特的是,ATP/抗坏血酸/谷胱甘肽与 PHEO/PGL 的分泌表型相关,无论其基因型如何(P <.0007)。使用琥珀酸作为单一筛选试验在区分 SDHx 与非 SDHx 相关肿瘤方面保留了极好的准确性(敏感性/特异性:100/100%)。此外,琥珀酸的定量可被视为评估 SDHx 相关致病性未知突变的替代诊断方法。我们还首次在 2 例 CTr 相关 PGL 中发现了 SDH 样模式。本研究表明 HRMAS-NMR 为 SDHx 相关 PHEO/PGL 特征提供了重要信息。除了高琥珀酸-低谷氨酸标志外,SDHx 肿瘤还表现出高蛋氨酸值,这一发现与这些肿瘤的高甲基化模式一致。我们还发现了重要的谷氨酰胺水平,表明谷氨酰胺代谢可能参与 SDHx 相关 PHEO/PGL 的发病机制。