Department of Breast and Thyroid Surgery, Renmin Hospital of Wuhan University, Wuhan, Hubei, P. R. China.
Department of Clinical Laboratory, Renmin Hospital of Wuhan University, Wuhan, Hubei, P. R. China.
Biosci Rep. 2017 Oct 24;37(5). doi: 10.1042/BSR20171072. Print 2017 Oct 31.
The crucial interplay between metabolic remodeling and the epigenetics could contribute to promote cancer progression. A remarkable association within interaction, LKB1 has been reported, suggesting that the expression of key enzymes involving serine synthesis and DNA methyltransferases like DNMT1 and DNMT3A increase LKB1-deficiency cells. However, the complex interactional link between metabolic remodeling and the epigenetics is still unclear. Hence, we focus on the relationship between YAP/TAZ and serine metabolism to control methylation of DNA or histone in breast cancer with LKB1 deficiency. We hypothesize that YAP/TAZ may have the function to activate key enzymes involving serine metabolism like PSPH and up-regulate the amino acid transporters to supply sources of serine synthesis through activation of C-MYC with TEAD1. Further, we speculate that YAP/TAZ in dependent of FOS may promote DNMT1 and subsequently mediate DNMT1-G9A complex involving serine metabolism and the methylation of DNA and histone. We hope that our study will stimulate further studies and a new targeted therapy and early medical intervention for YAP/TAZ could be a useful option for breast cancer cases complicated with LKB1 deficiency.
代谢重编程和表观遗传学之间的关键相互作用可能有助于促进癌症的进展。已经报道了 LKB1 内的显著相互作用关联,表明涉及丝氨酸合成的关键酶的表达和 DNA 甲基转移酶如 DNMT1 和 DNMT3A 的表达增加 LKB1 缺陷细胞。然而,代谢重编程和表观遗传学之间的复杂相互作用关系尚不清楚。因此,我们专注于 YAP/TAZ 和丝氨酸代谢之间的关系,以控制 LKB1 缺乏的乳腺癌中的 DNA 或组蛋白的甲基化。我们假设 YAP/TAZ 可能具有激活涉及丝氨酸代谢的关键酶的功能,例如 PSPH,并通过 TEAD1 激活 C-MYC 来上调氨基酸转运体,以提供丝氨酸合成的来源。此外,我们推测 YAP/TAZ 可能不依赖于 FOS 来促进 DNMT1,随后介导涉及丝氨酸代谢和 DNA 和组蛋白甲基化的 DNMT1-G9A 复合物。我们希望我们的研究将激发进一步的研究,并为 YAP/TAZ 提供新的靶向治疗,对于伴有 LKB1 缺乏的乳腺癌病例,这可能是一种有用的选择。