The role of GOT1 in cancer metabolism.

IF 3.5 3区 医学 Q2 ONCOLOGY Frontiers in Oncology Pub Date : 2024-12-24 eCollection Date: 2024-01-01 DOI:10.3389/fonc.2024.1519046
Huan Peng, Huihong Dou, Sheng He, Yu-An Xie, Qinle Zhang, Jianqiu Zheng
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Abstract

GOT1, a cytoplasmic glutamic oxaloacetic transaminase, plays a critical role in various metabolic pathways essential for cellular homeostasis and dysregulated metabolism. Recent studies have highlighted the significant plasticity and roles of GOT1 in metabolic reprogramming through participating in both classical and non-classical glutamine metabolism, glycolytic metabolism, and other metabolic pathways. This review summarizes emerging insights on the metabolic roles of GOT1 in cancer cells and emphasizes the response of cancer cells to altered metabolism when the expression of GOT1 is altered. We review how cancer cells repurpose cell intrinsic metabolism and their flexibility when GOT1 is inhibited and delineate the molecular mechanisms of GOT1's interaction with specific oncogenes and regulators at multiple levels, including transcriptional and epigenetic regulation, which govern cellular growth and metabolism. These insights may provide new directions for cancer metabolism research and novel targets for cancer treatment.

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GOT1在肿瘤代谢中的作用。
GOT1是一种细胞质谷草转氨酶,在细胞内稳态和代谢失调的多种代谢途径中起关键作用。最近的研究强调了GOT1通过参与经典和非经典谷氨酰胺代谢、糖酵解代谢和其他代谢途径在代谢重编程中的显著可塑性和作用。本文综述了关于GOT1在癌细胞代谢中的作用的新见解,并强调当GOT1表达改变时,癌细胞对代谢改变的反应。我们回顾了当GOT1被抑制时,癌细胞如何改变细胞内在代谢及其灵活性,并描述了GOT1在多个水平上与特定癌基因和调节因子相互作用的分子机制,包括调控细胞生长和代谢的转录和表观遗传调控。这些发现可能为癌症代谢研究提供新的方向,为癌症治疗提供新的靶点。
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来源期刊
Frontiers in Oncology
Frontiers in Oncology Biochemistry, Genetics and Molecular Biology-Cancer Research
CiteScore
6.20
自引率
10.60%
发文量
6641
审稿时长
14 weeks
期刊介绍: Cancer Imaging and Diagnosis is dedicated to the publication of results from clinical and research studies applied to cancer diagnosis and treatment. The section aims to publish studies from the entire field of cancer imaging: results from routine use of clinical imaging in both radiology and nuclear medicine, results from clinical trials, experimental molecular imaging in humans and small animals, research on new contrast agents in CT, MRI, ultrasound, publication of new technical applications and processing algorithms to improve the standardization of quantitative imaging and image guided interventions for the diagnosis and treatment of cancer.
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