Date published: 2025-10-10

021-6093-6350

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CTP Synthase (CTPS) 抑制因子

CTP synthase is a key enzyme that catalyzes the final step in the de novo synthesis of cytidine triphosphate (CTP), an essential nucleotide for DNA and RNA synthesis. It operates by converting uridine triphosphate (UTP) to CTP, using ammonia as a nitrogen source. This enzyme plays a crucial role in regulating the intracellular balance of nucleotide triphosphate pools, which is vital for proper DNA replication and repair, as well as RNA transcription. Beyond its enzymatic function, CTP synthase has been implicated in cellular signaling pathways. It has been observed to form cytoophidia under certain cellular conditions, such as during rapid cell growth or stress, indicating a potential role in the regulation of metabolic processes.

Targeting CTP Synthase and pyrimidine biosynthesis using small molecules facilitates mechanistic characterization by providing a means to dissect and understand the complex biochemical pathways involved in nucleotide synthesis. By selectively inhibiting CTP Synthase or steps in the pyrimidine biosynthetic pathway, researchers can observe the resulting cellular and molecular changes, revealing the specific roles and importance of these processes. These inhibitors act as tools to perturb the normal functioning of cells, leading to insights into how nucleotide imbalances affect DNA and RNA synthesis, cell growth, and differentiation. For example, inhibition can lead to nucleotide depletion or accumulation, which in turn can trigger DNA damage responses or alter gene expression, thereby illuminating the interconnectedness of metabolic pathways.

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