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在中间代谢与肿瘤发生的界面处。

at the interface between intermediary metabolism and oncogenesis.

作者信息

Pajares María Ángeles

机构信息

Department of Chemical and Physical Biology, Centro de Investigaciones Biológicas (CSIC), Madrid 28040, Spain.

出版信息

World J Biol Chem. 2017 Nov 26;8(4):175-186. doi: 10.4331/wjbc.v8.i4.175.

Abstract

PDRG1 is a small oncogenic protein of 133 residues. In normal human tissues, the p53 and DNA damage-regulated gene 1 () gene exhibits maximal expression in the testis and minimal levels in the liver. Increased expression has been detected in several tumor cells and in response to genotoxic stress. High-throughput studies identified the PDRG1 protein in a variety of macromolecular complexes involved in processes that are altered in cancer cells. For example, this oncogene has been found as part of the RNA polymerase II complex, the splicing machinery and nutrient sensing machinery, although its role in these complexes remains unclear. More recently, the PDRG1 protein was found as an interaction target for the catalytic subunits of methionine adenosyltransferases. These enzymes synthesize S-adenosylmethionine, the methyl donor for, among others, epigenetic methylations that occur on the DNA and histones. In fact, downregulation of S-adenosylmethionine synthesis is the first functional effect directly ascribed to PDRG1. The existence of global DNA hypomethylation, together with increased PDRG1 expression, in many tumor cells highlights the importance of this interaction as one of the putative underlying causes for cell transformation. Here, we will review the accumulated knowledge on this oncogene, emphasizing the numerous aspects that remain to be explored.

摘要

PDRG1是一种由133个氨基酸残基组成的小型致癌蛋白。在正常人体组织中,p53和DNA损伤调节基因1()基因在睾丸中表达最高,在肝脏中表达最低。在几种肿瘤细胞中以及对基因毒性应激反应中均检测到该基因表达增加。高通量研究在参与癌细胞中发生改变的过程的多种大分子复合物中鉴定出了PDRG1蛋白。例如,尽管该致癌基因在这些复合物中的作用尚不清楚,但已发现它是RNA聚合酶II复合物、剪接机制和营养感应机制的一部分。最近,发现PDRG1蛋白是甲硫氨酸腺苷转移酶催化亚基的相互作用靶点。这些酶合成S-腺苷甲硫氨酸,它是DNA和组蛋白上发生的表观遗传甲基化等反应的甲基供体。事实上,S-腺苷甲硫氨酸合成的下调是直接归因于PDRG1的首个功能效应。许多肿瘤细胞中存在全基因组DNA低甲基化以及PDRG1表达增加,这突出了这种相互作用作为细胞转化潜在根本原因之一的重要性。在此,我们将综述关于该致癌基因的积累知识,强调仍有待探索的众多方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc00/5714802/04755f1a62f7/WJBC-8-175-g001.jpg

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