Kawarasaki Tomoyuki, Nakatsukasa Kunio
Graduate School of Science, Nagoya City University, Yamanohata 1, Mizuho-cho, Mizuho-ku, Nagoya, Aichi, 467-8501, Japan.
Heliyon. 2023 Jan 24;9(2):e13219. doi: 10.1016/j.heliyon.2023.e13219. eCollection 2023 Feb.
The ubiquitin-specific chaperone AAA-ATPase Cdc48 and its orthologs p97/valosin-containing protein (VCP) in mammals play crucial roles in regulating numerous intracellular pathways via segregase activity, which separates polyubiquitinated targets from membranes or binding partners. Interestingly, high-throughput experiments show that a vast number of metabolic enzymes are modified with ubiquitin. Therefore, Cdc48 may regulate metabolic pathways, for example by acting on the polyubiquitin chains of metabolic enzymes; however, the role of Cdc48 in metabolic regulation remains largely unknown. To begin to analyze the role of Cdc48 in metabolic regulation in yeast, we performed a metabolomics analysis of temperature-sensitive mutant cells. We found that the amount of metabolites in the glycolytic pathway was altered. Moreover, the pool of nucleotides, as well as the levels of metabolites involved in the tricarboxylic acid cycle and oxidative phosphorylation, increased, whereas the pool of amino acids decreased. These results suggest the involvement of Cdc48 in metabolic regulation in yeast. In addition, because of the roles of p97/VCP in regulating multiple cellular pathways, its inhibition is being considered as a promising anticancer drug target. We propose that the metabolomics study of Cdc48-deficient yeast will be useful as a complement to p97/VCP-related pathological and therapeutic studies.
泛素特异性伴侣AAA-ATP酶Cdc48及其在哺乳动物中的直系同源物p97/含缬酪肽蛋白(VCP)通过其分离酶活性在调节众多细胞内途径中发挥关键作用,该分离酶活性可将多泛素化的靶标与膜或结合伴侣分离。有趣的是,高通量实验表明,大量代谢酶都被泛素修饰。因此,Cdc48可能调节代谢途径,例如通过作用于代谢酶的多泛素链;然而,Cdc48在代谢调节中的作用仍 largely未知。为了开始分析Cdc48在酵母代谢调节中的作用,我们对温度敏感突变细胞进行了代谢组学分析。我们发现糖酵解途径中的代谢物量发生了变化。此外,核苷酸池以及参与三羧酸循环和氧化磷酸化的代谢物水平增加,而氨基酸池减少。这些结果表明Cdc48参与了酵母的代谢调节。此外,由于p97/VCP在调节多种细胞途径中的作用,其抑制作用正被视为一种有前景的抗癌药物靶点。我们提出,对Cdc48缺陷酵母的代谢组学研究将作为对p97/VCP相关病理和治疗研究的补充而有用。