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体内同位素示踪揭示了电子传递链在肿瘤葡萄糖和谷氨酰胺代谢中的作用。

In vivo isotope tracing reveals a requirement for the electron transport chain in glucose and glutamine metabolism by tumors.

机构信息

Children's Medical Center Research Institute, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.

Department of Molecular Biology, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.

出版信息

Sci Adv. 2022 Sep 2;8(35):eabn9550. doi: 10.1126/sciadv.abn9550. Epub 2022 Aug 31.

Abstract

In mice and humans with cancer, intravenous C-glucose infusion results in C labeling of tumor tricarboxylic acid (TCA) cycle intermediates, indicating that pyruvate oxidation in the TCA cycle occurs in tumors. The TCA cycle is usually coupled to the electron transport chain (ETC) because NADH generated by the cycle is reoxidized to NAD by the ETC. However, C labeling does not directly report ETC activity, and other pathways can oxidize NADH, so the ETC's role in these labeling patterns is unverified. We examined the impact of the ETC complex I inhibitor IACS-010759 on tumor C labeling. IACS-010759 suppresses TCA cycle labeling from glucose or lactate and increases labeling from glutamine. Cancer cells expressing yeast NADH dehydrogenase-1, which recycles NADH to NAD independently of complex I, display normalized labeling when complex I is inhibited, indicating that cancer cell ETC activity regulates TCA cycle metabolism and C labeling from multiple nutrients.

摘要

在患有癌症的小鼠和人类中,静脉内 C-葡萄糖输注导致肿瘤三羧酸 (TCA) 循环中间产物的 C 标记,表明 TCA 循环中的丙酮酸氧化发生在肿瘤中。TCA 循环通常与电子传递链 (ETC) 偶联,因为循环产生的 NADH 通过 ETC 被重新氧化为 NAD。然而,C 标记并不直接报告 ETC 活性,并且其他途径可以氧化 NADH,因此 ETC 在这些标记模式中的作用尚未得到验证。我们研究了电子传递链复合体 I 抑制剂 IACS-010759 对肿瘤 C 标记的影响。IACS-010759 抑制葡萄糖或乳酸的 TCA 循环标记,并增加来自谷氨酰胺的标记。表达酵母 NADH 脱氢酶-1 的癌细胞,其 NADH 独立于复合体 I 被回收为 NAD,当复合体 I 被抑制时显示出正常的标记,表明癌细胞 ETC 活性调节 TCA 循环代谢和来自多种营养物质的 C 标记。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a79/9432826/c4be84327d56/sciadv.abn9550-f1.jpg

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