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Ovarian clear cell carcinoma meets metabolism; HNF-1β confers survival benefits through the Warburg effect and ROS reduction.

机译:卵巢透明细胞癌遇新陈代谢; HNF-1β通过Warburg效应和ROS降低赋予生存优势。

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摘要

Ovarian clear cell carcinoma (OCCC) constitutes one of the subtypes of ovarian cancers, but it has unique clinical, histological and biological characteristics, one of which is chemo-resistance. It is also known to develop from endometriotic cyst, a benign ovarian tumor, at relatively high frequency. Recently, it is becoming well known that most of OCCCs express HNF1β, a transcription factor, which is closely associated with the development of liver, pancreas and kidney, as well as occurrence of familial forms of type 2 diabetes. Expression of HNF1β is now regarded as a hallmark of this tumor. Nevertheless, exact biological function of this gene in OCCC has not been clarified. We have shown in previous studies that microenvironment in endometriotic cysts contains severe oxidative stress and OCCC develops under such stressful environment as stress-resistant tumor, which may lead to chemo-resistance. We also showed that increased expression of HNF1β facilitates glucose uptake and glycolysis, which is known as Warburg effect. In the previous issue of this journal, by using comprehensive metabolome analysis, we report that HNF1β actually reduces and protects themselves from internal oxidative stress by dramatically changing cellular metabolism. In this article, we review the relevance and significance of cancer-specific metabolism and how they are associated with biological characteristics of OCCC via expression of HNF1β, along with future clinical implications of targeting cancer-specific metabolism.
机译:卵巢透明细胞癌(OCCC)构成卵巢癌的亚型之一,但它具有独特的临床,组织学和生物学特性,其中之一是抗化学性。还已知从子宫内膜异位囊肿(一种良性卵巢肿瘤)以相对高的频率发展。最近,众所周知,大多数OCCC都表达HNF1β,这是一种转录因子,与肝,胰腺和肾脏的发育以及家族性2型糖尿病的发生密切相关。 HNF1β的表达现在被认为是该肿瘤的标志。但是,该基因在OCCC中的确切生物学功能尚未阐明。我们在以前的研究中已经表明,子宫内膜异位囊肿中的微环境含有严重的氧化应激,而OCCC在诸如应激抗性肿瘤等应激环境下发展,这可能导致化学抗性。我们还表明,HNF1β表达的增加促进了葡萄糖的摄取和糖酵解,这被称为Warburg效应。在本期杂志的上一期中,我们报告了通过全面的代谢组分析,HNF1β实际上通过极大地改变细胞代谢来减少并保护自己免受内部氧化应激的影响。在本文中,我们回顾了癌症特异性代谢的相关性和意义,以及它们如何通过HNF1β的表达与OCCC的生物学特性相关联,以及靶向癌症特异性代谢的未来临床意义。

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