Liu X-S, Liu Z, Gerarduzzi C, Choi D E, Ganapathy S, Pandolfi P P, Yuan Z-M
Department of Genetics and Complex Diseases, Harvard School of Public Health, Boston, MA, USA.
School of Life Science and Technology, ShanghaiTech University, Shanghai 201203, China.
Oncogene. 2016 Jun 9;35(23):3071-8. doi: 10.1038/onc.2015.371. Epub 2015 Oct 12.
We recently reported that ZBTB7A is a bona fide transcription repressor of key glycolytic genes and its downregulation in human cancer contributes to tumor metabolism. As reduced expression of ZBTB7A is found only in a subset of human cancers, we explored alternative mechanisms of its inactivation by mining human cancer genome databases. We discovered recurrent somatic mutations of ZBTB7A in multiple types of human cancers with a marked enrichment of mutations within the zinc finger domain. Functional characterization of the mutants demonstrated that mutations within the zinc finger region of ZBTB7A invariably resulted in loss of function. As a consequence, the glycolytic genes were markedly upregulated in cancer cells harboring ZBTB7A zinc finger mutation, leading to increased glycolysis and proliferation. Our study uncovers the loss-of-function mutation in ZBTB7A as a novel mechanism causing elevated glycolysis in human cancer, which carries important therapeutic implication.
我们最近报道,ZBTB7A是关键糖酵解基因的一种真正的转录抑制因子,其在人类癌症中的下调促成肿瘤代谢。由于仅在一部分人类癌症中发现ZBTB7A表达降低,我们通过挖掘人类癌症基因组数据库探索了其失活的替代机制。我们发现ZBTB7A在多种类型的人类癌症中存在复发性体细胞突变,锌指结构域内的突变明显富集。对突变体的功能表征表明,ZBTB7A锌指区域内的突变总是导致功能丧失。因此,在携带ZBTB7A锌指突变的癌细胞中,糖酵解基因明显上调,导致糖酵解和增殖增加。我们的研究揭示了ZBTB7A的功能丧失突变是导致人类癌症中糖酵解升高的一种新机制,这具有重要的治疗意义。