Suppr超能文献

瓦伯格效应之幽灵——癌症的自我维持表型:胆固醇生物合成失调导致富含胆固醇的肿瘤线粒体中异常的碳通量

Warburg's Ghost-Cancer's Self-Sustaining Phenotype: The Aberrant Carbon Flux in Cholesterol-Enriched Tumor Mitochondria via Deregulated Cholesterogenesis.

作者信息

Coleman Peter S, Parlo Risa A

机构信息

Independent (Retired) Academic, Beverly, MA, United States.

Kingsborough Community College, Brooklyn, NY, United States.

出版信息

Front Cell Dev Biol. 2021 Mar 12;9:626316. doi: 10.3389/fcell.2021.626316. eCollection 2021.

Abstract

Interpreting connections between the multiple networks of cell metabolism is indispensable for understanding how cells maintain homeostasis or transform into the decontrolled proliferation phenotype of cancer. Situated at a critical metabolic intersection, citrate, derived via glycolysis, serves as either a combustible fuel for aerobic mitochondrial bioenergetics or as a continuously replenished cytosolic carbon source for lipid biosynthesis, an essentially anaerobic process. Therein lies the paradox: under what conditions do cells control the metabolic route by which they process citrate? The Warburg effect exposes essentially the same dilemma-why do cancer cells, despite an abundance of oxygen needed for energy-generating mitochondrial respiration with citrate as fuel, avoid catabolizing mitochondrial citrate and instead rely upon accelerated glycolysis to support their energy requirements? This review details the genesis and consequences of the metabolic paradigm of a "truncated" Krebs/TCA cycle. Abundant data are presented for substrate utilization and membrane cholesterol enrichment in tumors that are consistent with criteria of the Warburg effect. From healthy cellular homeostasis to the uncontrolled proliferation of tumors, metabolic alterations center upon the loss of regulation of the cholesterol biosynthetic pathway. Deregulated tumor cholesterogenesis at the HMGR locus, generating enhanced carbon flux through the cholesterol synthesis pathway, is an absolute prerequisite for DNA synthesis and cell division. Therefore, expedited citrate efflux from cholesterol-enriched tumor mitochondria via the CTP/SLC25A1 citrate transporter is fundamental for sustaining the constant demand for cytosolic citrate that fuels the elevated flow of carbons from acetyl-CoA through the deregulated pathway of cholesterol biosynthesis.

摘要

解读细胞代谢多个网络之间的联系对于理解细胞如何维持体内平衡或转变为癌症的失控增殖表型至关重要。位于关键代谢交叉点的柠檬酸,通过糖酵解产生,它既可以作为有氧线粒体生物能量学的可燃燃料,也可以作为脂质生物合成(一个基本厌氧的过程)中持续补充的胞质碳源。这就产生了一个悖论:细胞在什么条件下控制它们处理柠檬酸的代谢途径?瓦伯格效应也暴露出同样的困境——为什么癌细胞尽管有足够的氧气用于以柠檬酸为燃料的线粒体呼吸产生能量,却避免分解线粒体柠檬酸,反而依赖加速糖酵解来满足其能量需求?这篇综述详细阐述了“截断的”克雷布斯/三羧酸循环代谢模式的起源和后果。文中给出了大量关于肿瘤中底物利用和膜胆固醇富集的数据,这些数据与瓦伯格效应的标准一致。从健康细胞的体内平衡到肿瘤的失控增殖,代谢改变集中在胆固醇生物合成途径调控的丧失上。在3-羟基-3-甲基戊二酰辅酶A还原酶(HMGR)位点失调的肿瘤胆固醇生成,通过胆固醇合成途径产生增强的碳通量,是DNA合成和细胞分裂的绝对前提条件。因此,通过柠檬酸转运蛋白CTP/SLC25A1从富含胆固醇的肿瘤线粒体中加速柠檬酸外流,对于维持对胞质柠檬酸的持续需求至关重要,这种需求为通过失调的胆固醇生物合成途径从乙酰辅酶A而来的碳的增加流动提供了燃料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2956/7994618/2ac5770fc89c/fcell-09-626316-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验