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核受体与脂质感应

Nuclear Receptors and Lipid Sensing.

机构信息

Nutrition, Epigenetics and Cancer Research Group, School of Food Science and Nutrition, University of Leeds, Leeds, UK.

出版信息

Adv Exp Med Biol. 2022;1390:83-105. doi: 10.1007/978-3-031-11836-4_5.

Abstract

Fluctuations in concentration of diverse lipid classes occur in response to diet and metabolism. These changes are managed and mediated by a cell network of enzymes, pumps, and carriers under the control of the lipid responsive nuclear receptors. The understanding of how dysregulation of lipid metabolism are causes and indicators of disease beyond the cardiovascular system has developed in the last decade. A particular emphasis on the role of lipids and lipid-sensing nuclear receptors has emerged in the fields of cancer and the immune system's interaction with cancer. The range of known lipid-based ligands has also expanded. Lipids are not just signalling molecules, but also play structural roles in cells and tissues, for example as major constituents of the lipid bilayer - positioning them as integrators and mediators of signaling. This chapter will discuss the major groups of lipid-sensing nuclear receptors focusing on the liver x receptors, farnesoid x receptor, and the peroxisome proliferator-activated receptors. Initially the reader is presented with information on how these receptors behave and function at the molecular biology level, the range of selective modulation of function by endogenous ligands, and examples of how activity is fine-tuned by mechanisms such as miRNA regulation and post-translational modification of the proteins. We then explore the advances in understanding that have positioned these receptors as therapeutic targets in cancer and immuno-oncology. Finally, the chapter explains the gaps in understanding and experimental challenges that should be prioritized in the coming decade.

摘要

脂质种类的浓度变化会响应饮食和代谢而发生。这些变化由受脂质调控的核受体控制下的酶、泵和载体细胞网络来管理和介导。在过去十年中,人们对脂质代谢失调如何成为心血管系统以外疾病的原因和指标有了更多的了解。在癌症和免疫系统与癌症相互作用的领域,人们特别强调了脂质和脂质感应核受体的作用。已知的基于脂质的配体范围也有所扩大。脂质不仅是信号分子,而且在细胞和组织中还发挥结构作用,例如作为脂质双层的主要成分,使它们成为信号转导的整合者和介导者。本章将讨论主要的脂质感应核受体群,重点介绍肝 X 受体、法尼醇 X 受体和过氧化物酶体增殖物激活受体。首先,读者将了解这些受体在分子生物学水平上的行为和功能,内源性配体对功能的选择性调节范围,以及通过 miRNA 调节和蛋白质的翻译后修饰等机制来精细调节活性的示例。然后,我们探讨了这些受体在癌症和免疫肿瘤学中作为治疗靶点的理解进展。最后,本章解释了在未来十年中应优先解决的理解和实验挑战方面的差距。

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