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人结肠腺癌细胞系HT29细胞周期进程中磷酸戊糖途径的调控

Modulation of pentose phosphate pathway during cell cycle progression in human colon adenocarcinoma cell line HT29.

作者信息

Vizán Pedro, Alcarraz-Vizán Gema, Díaz-Moralli Santiago, Solovjeva Olga N, Frederiks Wilma M, Cascante Marta

机构信息

Department of Biochemistry and Molecular Biology, Institute of Biomedicine of University of Barcelona (IBUB), Barcelona, Spain.

出版信息

Int J Cancer. 2009 Jun 15;124(12):2789-96. doi: 10.1002/ijc.24262.

Abstract

Cell cycle regulation is dependent on multiple cellular and molecular events. Cell proliferation requires metabolic sources for the duplication of DNA and cell size. However, nucleotide reservoirs are not sufficient to support cell duplication and, therefore, biosynthetic pathways should be upregulated during cell cycle. Here, we reveal that glucose-6-phosphate dehydrogenase (G6PDH) and transketolase (TKT), the 2 key enzymes of oxidative and nonoxidative branches of the pentose phosphate pathway (PPP), respectively, which is necessary for nucleotide synthesis, are enhanced during cell cycle progression of the human colon cancer cell line HT29. These enhanced enzyme activities coincide with an increased ratio of pentose monophosphate to hexose monophosphate pool during late G1 and S phase, suggesting a potential role for pentose phosphates in proliferating signaling. Isotopomeric analysis distribution of nucleotide ribose synthesized from 1,2-(13)C(2)-glucose confirms the activation of the PPP during late G1 and S phase and reveals specific upregulation of the oxidative branch. Our data sustain the idea of a critical oxidative and nonoxidative balance in cancer cells, which is consistent with a late G1 metabolic check point. The distinctive modulation of these enzymes during cell cycle progression may represent a new strategy to inhibit proliferation in anticancer treatments.

摘要

细胞周期调控依赖于多种细胞和分子事件。细胞增殖需要代谢源来复制DNA和增大细胞体积。然而,核苷酸储备不足以支持细胞复制,因此,生物合成途径在细胞周期中应上调。在此,我们揭示,磷酸戊糖途径(PPP)氧化分支和非氧化分支的2种关键酶,即葡萄糖-6-磷酸脱氢酶(G6PDH)和转酮醇酶(TKT),分别在人结肠癌细胞系HT29的细胞周期进程中增强,而PPP是核苷酸合成所必需的。这些增强的酶活性与G1晚期和S期磷酸戊糖与磷酸己糖池比例的增加相一致,提示磷酸戊糖在增殖信号传导中具有潜在作用。由1,2-(13)C(2)-葡萄糖合成的核苷酸核糖的同位素异构体分析分布证实了G1晚期和S期PPP的激活,并揭示了氧化分支的特异性上调。我们的数据支持癌细胞中关键的氧化与非氧化平衡的观点,这与G1晚期代谢检查点一致。这些酶在细胞周期进程中的独特调节可能代表了抗癌治疗中抑制增殖的一种新策略。

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