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Generalized Portrait of Cancer Metabolic Pathways Inferred from a List of Genes Overexpressed in Cancer

机译:从癌症中过表达的基因列表推断出癌症代谢途径的一般性肖像

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摘要

More than half a century from postulated Warburg theory of cancer cells origin, a question of changed metabolism in cancer is again taking the central place. Generalized picture of cancer metabolism was replaced by analysis of signaling and oncogenes in each type of cancer for several decades. However, now empowered with wealth of knowledge about tumor suppressors, oncogenes, and signaling pathways, reprogramming of cellular metabolism (e.g., increased glycolysis to respiration ratio in cancer cells) reemerged as an important element of cancer progression. To analyze level of expression of various proteins including metabolic enzymes across various cancers we used dbEST and Unigene data. We delineated a list of genes that are overexpressed in different types of cancer. We also grouped overexpressed enzymes into KEGG pathways and analyzed adjacent pathways to describe enzymatic reactions that take place in cancer cells and to identify major players that are abundant in cancer protein machinery. Glycolysis/gluconeogenesis and oxidative phosphorylation are the most abundant pathways although several other pathways are enriched in genes from our list. Ubiquitously overexpressed genes could be marked as nonspecific cancer-associated genes when analyzing genes that are overexpressed in certain types of cancer. Thus the list of overexpressed genes may be a useful tool for cancer research.
机译:从假定的Warburg癌细胞起源理论出发,半个多世纪以来,癌症中新陈代谢变化的问题再次成为中心问题。数十年来,每种类型癌症中的信号传导和癌基因分析取代了癌症代谢的一般情况。但是,现在凭借对肿瘤抑制因子,致癌基因和信号传导途径的丰富知识,细胞代谢的重新编程(例如,癌细胞中糖酵解与呼吸的比率增加)重新成为癌症进展的重要因素。为了分析跨各种癌症的各种蛋白质(包括代谢酶)的表达水平,我们使用了dbEST和Unigene数据。我们描述了在不同类型的癌症中过表达的基因列表。我们还将过表达的酶归类为KEGG途径,并分析了邻近的途径,以描述发生在癌细胞中的酶促反应,并确定在癌蛋白机制中丰富的主要参与者。糖酵解/糖异生和氧化磷酸化是最丰富的途径,尽管我们列表中的基因还丰富了其他几种途径。当分析在某些类型的癌症中过表达的基因时,无处不在的过表达基因可被标记为非特异性癌症相关基因。因此,过表达基因的列表可能是癌症研究的有用工具。

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