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GLUT5 介导的果糖利用通过刺激脂肪酸合成和 AMPK/mTORC1 信号通路促进肺癌生长。

GLUT5-mediated fructose utilization drives lung cancer growth by stimulating fatty acid synthesis and AMPK/mTORC1 signaling.

机构信息

Cancer Institute, Longhua Hospital, Shanghai University of Traditional Chinese Medicine, Shanghai, China.

Department of Thoracic Cardiovascular Surgery, Xinhua Hospital, Shanghai Jiaotong University School of Medicine, Shanghai, China.

出版信息

JCI Insight. 2020 Feb 13;5(3):131596. doi: 10.1172/jci.insight.131596.

Abstract

Lung cancer (LC) is a leading cause of cancer-related deaths worldwide. Its rapid growth requires hyperactive catabolism of principal metabolic fuels. It is unclear whether fructose, an abundant sugar in current diets, is essential for LC. We demonstrated that, under the condition of coexistence of metabolic fuels in the body, fructose was readily used by LC cells in vivo as a glucose alternative via upregulating GLUT5, a major fructose transporter encoded by solute carrier family 2 member 5 (SLC2A5). Metabolomic profiling coupled with isotope tracing demonstrated that incorporated fructose was catabolized to fuel fatty acid synthesis and palmitoleic acid generation in particular to expedite LC growth in vivo. Both in vitro and in vivo supplement of palmitoleic acid could restore impaired LC propagation caused by SLC2A5 deletion. Furthermore, molecular mechanism investigation revealed that GLUT5-mediated fructose utilization was required to suppress AMPK and consequently activate mTORC1 activity to promote LC growth. As such, pharmacological blockade of in vivo fructose utilization using a GLUT5 inhibitor remarkably curtailed LC growth. Together, this study underscores the importance of in vivo fructose utilization mediated by GLUT5 in governing LC growth and highlights a promising strategy to treat LC by targeting GLUT5 to eliminate those fructose-addicted neoplastic cells.

摘要

肺癌(LC)是全球癌症相关死亡的主要原因。它的快速生长需要主要代谢燃料的过度分解代谢。目前尚不清楚果糖是否是 LC 所必需的,果糖是当前饮食中丰富的糖分。我们证明,在体内代谢燃料共存的条件下,果糖通过上调主要果糖转运蛋白 SLC2A5 编码的溶质载体家族 2 成员 5(SLC2A5),可被 LC 细胞在体内作为葡萄糖替代物轻易利用。代谢组学分析和同位素示踪表明,掺入的果糖被代谢为脂肪酸合成和棕榈油酸生成的燃料,特别是加速体内 LC 的生长。体外和体内补充棕榈油酸均可恢复 SLC2A5 缺失引起的 LC 增殖受损。此外,分子机制研究表明,GLUT5 介导的果糖利用对于抑制 AMPK 并激活 mTORC1 活性以促进 LC 生长是必需的。因此,使用 GLUT5 抑制剂在体内阻断果糖利用可显著抑制 LC 的生长。总之,这项研究强调了 GLUT5 介导的体内果糖利用在控制 LC 生长中的重要性,并突出了通过靶向 GLUT5 消除那些依赖果糖的肿瘤细胞来治疗 LC 的有前途的策略。

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