氨酸是一种通过向ASL的尿素循环的天然抑制剂
Keqiang Rao1,2, Ke Zheng3, Yunfan Sun4
1Department of Hepatobiliary Surgery and Liver Transplantation, Zhongshan Hospital, Fudan University, Shanghai, China.
Cell death discovery
|February 18, 2026
概括
氨酸通过FOS-ASL通路抑制尿素循环,抑制肝细胞癌 (HCC) 的生长. 这一发现为HCC提供了一种新的治疗策略,增强了目前的治疗方法.
科学领域:
- 在瘤学瘤学.
- 代谢途径 代谢途径
- 营养科学 营养科学
背景情况:
- 肝细胞癌 (HCC) 是全球癌症死亡的主要原因.
- 迫切需要优化HCC的治疗策略.
- 氨酸在HCC代谢中的作用尚不清楚.
研究的目的:
- 为了研究 taurine 对肝细胞癌的代谢作用.
- 阐明 taurine 影响 HCC 生长的分子机制.
主要方法:
- 研究了 taurine 对 HCC 细胞系的尿素循环的影响.
- 确定了酸酸酶 (ASL) 作为 taurine 的关键标.
- 研究了原瘤基因 (FOS) 作为ASL转录因子的作用.
主要成果:
- 氨酸作为尿素循环的负调节剂,抑制HCC瘤生长.
- ASL被确定为 taurine 在抑制尿素循环中的主要目标.
- FOS-ASL轴对 taurine 的代谢作用和 HCC 瘤生长至关重要.
- 氨酸增强了GLS1抑制剂在HCC管理中的有效性.
结论:
- 氨酸通过FOS-ASL通路准尿素循环,从而抑制HCC的生长.
- 这项研究揭示了 taurine 控制 HCC 的新型代谢机制.
- 氨酸为肝细胞癌治疗提供了一个有前途的治疗剂.
相关概念视频
Urea Cycle
50.8K
The urea cycle describes how liver cells convert ammonia to urea. Ammonia is a toxic waste product of protein catabolism. Land animals must convert ammonia into the less toxic urea which can be safely eliminated by the kidneys through urine. Marine animals excrete ammonia directly, and the surrounding water dilutes the ammonia to safe levels.
50.8K
Allosteric Proteins-ATCase
6.7K
Binding sites linkages can regulate a protein's function. For example, enzyme activity is often regulated through a feedback mechanism where the end product of the biochemical process serves as an inhibitor.
Aspartate transcarbamoylase (ATCase) is a cytosolic enzyme that catalyzes the condensation of L-aspartate and carbamoyl phosphate to N-carbamoyl-L-aspartate. This reaction is the first step in pyrimidine biosynthesis. UTP and CTP, the end products of the pyrimidine synthesis...
Aspartate transcarbamoylase (ATCase) is a cytosolic enzyme that catalyzes the condensation of L-aspartate and carbamoyl phosphate to N-carbamoyl-L-aspartate. This reaction is the first step in pyrimidine biosynthesis. UTP and CTP, the end products of the pyrimidine synthesis...
6.7K
Drugs Affecting Neurotransmitter Synthesis
2.3K
Drugs affecting neurotransmitter synthesis can impact the adrenergic neuron and the synthesis of neurotransmitters. For example, α-methyltyrosine and carbidopa target specific enzymes involved in catecholamine synthesis. α-methyltyrosine inhibits the enzyme tyrosine hydroxylase, which converts tyrosine into dopamine. By blocking this enzyme, α-methyltyrosine reduces dopamine production and other catecholamines. Carbidopa, on the other hand, inhibits the enzyme dopa decarboxylase,...
2.3K
Pharmacogenetics of Phase II Enzymes: N-acetyltransferase, Thiopurine S-methyltransferase, UDP-glucuronosyltransferase
16
Phase II biotransformation reactions are essential for detoxifying and eliminating xenobiotics, including many pharmaceutical compounds. These reactions typically involve conjugation, the covalent attachment of polar endogenous groups such as glucuronic acid, sulfate, methyl, or acetyl moieties to functional groups introduced during Phase I metabolism. The resulting conjugates are more water-soluble, enabling efficient renal or biliary excretion.The major classes of Phase II enzymes include...
16
Drugs Affecting Neurotransmitter Release or Uptake
1.7K
Certain drugs can affect how neurotransmitters called catecholamines, are released or taken back up in the adrenergic neuron. They can have different effects on the body's sympathetic transmission. Reserpine, a natural compound found in the Rauwolfia shrub, blocks a transporter called vesicular monoamine transporter (VMAT), which leads to a buildup of catecholamines in the cell and reduces sympathetic transmission. Another drug called guanethidine works in multiple ways, including blocking...
1.7K
Amino Acid Biosynthetic Pathways
1.4K
Amino acid biosynthesis is essential for cell growth, protein synthesis, and metabolic regulation. Cells generate essential and non-essential amino acids from metabolic intermediates to sustain vital biological functions. These intermediates originate from key metabolic pathways: glycolysis, the tricarboxylic acid (TCA) cycle, and the pentose phosphate pathway. Important precursors include α-ketoglutarate, pyruvate, oxaloacetate, phosphoenolpyruvate, and erythrose-4-phosphate, which...
1.4K


