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重新编程癌症中的碳水化合物代谢及其在调节肿瘤微环境中的作用。

Reprogramming Carbohydrate Metabolism in Cancer and Its Role in Regulating the Tumor Microenvironment.

机构信息

Biophysics and Structural Genomics Division, Saha Institute of Nuclear Physics, Kolkata, India.

Homi Bhaba National Institute, Mumbai, India.

出版信息

Subcell Biochem. 2022;100:3-65. doi: 10.1007/978-3-031-07634-3_1.

Abstract

Altered metabolism has become an emerging feature of cancer cells impacting their proliferation and metastatic potential in myriad ways. Proliferating heterogeneous tumor cells are surrounded by other resident or infiltrating cells, along with extracellular matrix proteins, and other secretory factors constituting the tumor microenvironment. The diverse cell types of the tumor microenvironment exhibit different molecular signatures that are regulated at their genetic and epigenetic levels. The cancer cells elicit intricate crosstalks with these supporting cells, exchanging essential metabolites which support their anabolic processes and can promote their survival, proliferation, EMT, angiogenesis, metastasis and even therapeutic resistance. In this context, carbohydrate metabolism ensures constant energy supply being a central axis from which other metabolic and biosynthetic pathways including amino acid and lipid metabolism and pentose phosphate pathway are diverged. In contrast to normal cells, increased glycolytic flux is a distinguishing feature of the highly proliferative cancer cells, which supports them to adapt to a hypoxic environment and also protects them from oxidative stress. Such rewired metabolic properties are often a result of epigenetic alterations in the cancer cells, which are mediated by several factors including, DNA, histone and non-histone protein modifications and non-coding RNAs. Conversely, epigenetic landscapes of the cancer cells are also dictated by their diverse metabolomes. Altogether, this metabolic and epigenetic interplay has immense potential for the development of efficient anti-cancer therapeutic strategies. In this book chapter we emphasize upon the significance of reprogrammed carbohydrate metabolism in regulating the tumor microenvironment and cancer progression, with an aim to explore the different metabolic and epigenetic targets for better cancer treatment.

摘要

代谢改变已成为癌细胞的一个新兴特征,以多种方式影响其增殖和转移潜能。增殖的异质性肿瘤细胞被其他常驻或浸润细胞、细胞外基质蛋白以及构成肿瘤微环境的其他分泌因子所包围。肿瘤微环境中的不同细胞类型表现出不同的分子特征,这些特征在基因和表观遗传水平上受到调节。癌细胞与这些支持细胞之间发生复杂的串扰,交换支持它们合成代谢过程的必需代谢物,从而促进它们的存活、增殖、上皮间质转化、血管生成、转移甚至治疗耐药性。在这种情况下,碳水化合物代谢确保了恒定的能量供应,成为其他代谢和生物合成途径(包括氨基酸和脂质代谢以及戊糖磷酸途径)分化的中心轴。与正常细胞不同,高增殖癌细胞的糖酵解通量增加是其特征之一,这使它们能够适应缺氧环境,并保护它们免受氧化应激。这种重编代谢特性通常是癌细胞表观遗传改变的结果,这些改变是由包括 DNA、组蛋白和非组蛋白蛋白修饰以及非编码 RNA 在内的多种因素介导的。相反,癌细胞的表观遗传景观也由其不同的代谢组决定。总之,这种代谢和表观遗传相互作用为开发有效的抗癌治疗策略提供了巨大的潜力。在本章中,我们强调了重新编程的碳水化合物代谢在调节肿瘤微环境和癌症进展中的重要性,旨在探索不同的代谢和表观遗传靶点,以改善癌症治疗效果。

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