Glioblastomas with copy number gains in EGFR and RNF139 show increased expressions of carbonic anhydrase genes transformed by ENO1

Marie E. Beckner , Ian F. Pollack , Mary L. Nordberg , Ronald L. Hamilton
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引用次数: 12

Abstract

Background

Prominence of glycolysis in glioblastomas may be non-specific or a feature of oncogene-related subgroups (i.e. amplified EGFR, etc.). Relationships between amplified oncogenes and expressions of metabolic genes associated with glycolysis, directly or indirectly via pH, were therefore investigated.

Methods

Using multiplex ligation-dependent probe amplification, copy numbers (CN) of 78 oncogenes were quantified in 24 glioblastomas. Related expressions of metabolic genes encoding lactate dehydrogenases (LDHA, LDHC), carbonic anhydrases (CA3, CA12), monocarboxylate transporters (SLC16A3 or MCT4, SLC16A4 or MCT5), ATP citrate lyase (ACLY), glycogen synthase1 (GYS1), hypoxia inducible factor-1A (HIF1A), and enolase1 (ENO1) were determined in 22 by RT-qPCR. To obtain supra-glycolytic levels and adjust for heterogeneity, concurrent ENO1 expression was used to mathematically transform the expression levels of metabolic genes already normalized with delta-delta crossing threshold methodology.

Results

Positive correlations with EGFR occurred for all metabolic genes. Significant differences (Wilcoxon Rank Sum) for oncogene CN gains in tumors of at least 2.00-fold versus less than 2.00-fold occurred for EGFR with CA3's expression (p < 0.03) and for RNF139 with CA12 (p < 0.004). Increased CN of XIAP associated negatively. Tumors with less than 2.00-fold CN gains differed from those with gains for XIAP with CA12 (p < 0.05). Male gender associated with CA12 (p < 0.05).

Conclusions

Glioblastomas with CN increases in EGFR had elevated CA3 expression. Similarly, tumors with RNF149 CN gains had elevated CA12 expression.

General significance

In larger studies, subgroups of glioblastomas may emerge according to oncogene-related effects on glycolysis, such as control of pH via effects on carbonic anhydrases, with prognostic and treatment implications.

Abstract Image

EGFR和RNF139拷贝数增加的胶质母细胞瘤显示ENO1转化的碳酸酐酶基因表达增加
胶质母细胞瘤中糖酵解的突出可能是非特异性的,也可能是癌基因相关亚群(如EGFR扩增等)的特征。因此,通过pH直接或间接地研究了扩增的癌基因与糖酵解相关的代谢基因表达之间的关系。方法采用多重连接依赖探针扩增技术,定量测定24例胶质母细胞瘤中78个癌基因的拷贝数(CN)。采用RT-qPCR方法检测22例患者乳酸脱氢酶(LDHA、LDHC)、碳酸酐酶(CA3、CA12)、单羧酸转运蛋白(SLC16A3或MCT4、SLC16A4或MCT5)、ATP柠檬酸裂解酶(ACLY)、糖原合成酶1 (GYS1)、缺氧诱导因子1a (HIF1A)、烯醇化酶1 (ENO1)等代谢基因的相关表达。为了获得超糖酵解水平并调整异质性,使用并发的ENO1表达对已经用delta-delta交叉阈值方法归一化的代谢基因的表达水平进行数学转换。结果所有代谢基因均与EGFR呈正相关。在CA3表达的EGFR中,癌基因CN在肿瘤中的增益至少为2.00倍,而在肿瘤中则小于2.00倍,其显著差异(Wilcoxon Rank Sum) (p <0.03)和含有CA12的RNF139 (p <0.004)。XIAP的CN升高呈负相关。CN增益小于2.00倍的肿瘤与XIAP与CA12的增益不同(p <0.05)。男性与CA12相关(p <0.05)。结论CN型胶质母细胞瘤EGFR增高,CA3表达升高。同样,具有RNF149 CN增益的肿瘤具有升高的CA12表达。在更大规模的研究中,胶质母细胞瘤的亚群可能根据癌基因对糖酵解的相关影响而出现,例如通过影响碳酸酐酶来控制pH值,并具有预后和治疗意义。
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