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作为或不作为脂肪燃烧器,这是癌细胞中 CPT1C 的问题。

To be or not to be a fat burner, that is the question for cpt1c in cancer cells.

机构信息

Basic Sciences Department, Faculty of Medicine and Health Sciences, Universitat Internacional de Catalunya, E-08195, Sant Cugat del Vallès, Spain.

Institut de Neurociències, Universitat Autònoma de Barcelona, E-08193, Bellaterra, Cerdanyola del Vallès, Spain.

出版信息

Cell Death Dis. 2023 Jan 24;14(1):57. doi: 10.1038/s41419-023-05599-1.

Abstract

There is an urgent need to identify reliable genetic biomarkers for accurate diagnosis, prognosis, and treatment of different tumor types. Described as a prognostic marker for many tumors is the neuronal protein carnitine palmitoyltransferase 1 C (CPT1C). Several studies report that CPT1C is involved in cancer cell adaptation to nutrient depletion and hypoxia. However, the molecular role played by CPT1C in cancer cells is controversial. Most published studies assume that, like canonical CPT1 isoforms, CPT1C is a mediator of fatty acid transport to mitochondria for beta-oxidation, despite the fact that CPT1C has inefficient catalytic activity and is located in the endoplasmic reticulum. In this review, we collate existing evidence on CPT1C in neurons, showing that CPT1C is a sensor of nutrients that interacts with and regulates other proteins involved in lipid metabolism and transport, lysosome motility, and the secretory pathway. We argue, therefore, that CPT1C expression in cancer cells is not a direct regulator of fat burn, but rather is a regulator of lipid metabolic reprograming and cell adaptation to environmental stressors. We also review the clinical relevance of CPT1C as a prognostic indicator and its contribution to tumor growth, cancer invasiveness, and cell senescence. This new and integrated vision of CPT1C function can help better understand the metabolic plasticity of cancer cells and improve the design of therapeutic strategies.

摘要

目前迫切需要确定可靠的遗传生物标志物,以实现对不同肿瘤类型的准确诊断、预后和治疗。神经元蛋白肉碱棕榈酰转移酶 1C(CPT1C)被描述为许多肿瘤的预后标志物。有几项研究报告称,CPT1C 参与了癌细胞对营养物质耗竭和缺氧的适应。然而,CPT1C 在癌细胞中所扮演的分子角色存在争议。大多数已发表的研究假设,与典型的 CPT1 同工酶一样,CPT1C 是脂肪酸向线粒体转运进行β氧化的介质,尽管 CPT1C 的催化活性效率低下,并且位于内质网中。在这篇综述中,我们整理了现有的关于神经元中 CPT1C 的证据,表明 CPT1C 是一种能够感知营养物质的传感器,它与参与脂质代谢和转运、溶酶体运动和分泌途径的其他蛋白相互作用并对其进行调节。因此,我们认为,癌细胞中 CPT1C 的表达并不是脂肪燃烧的直接调节剂,而是脂质代谢重编程和细胞适应环境应激的调节剂。我们还回顾了 CPT1C 作为预后指标的临床相关性及其对肿瘤生长、癌症侵袭性和细胞衰老的贡献。对 CPT1C 功能的这种新的综合认识有助于更好地理解癌细胞的代谢可塑性,并改善治疗策略的设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d01c/9873675/e0305b89de19/41419_2023_5599_Fig1_HTML.jpg

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