Department of Molecular, Cell and Cancer Biology, University of Massachusetts Chan Medical School, Worcester, MA, USA.
Department of Biomedical Science & Engineering, Dankook University, Cheonan, South Korea.
Nature. 2023 Nov;623(7987):625-632. doi: 10.1038/s41586-023-06676-3. Epub 2023 Oct 25.
Identifying metabolic steps that are specifically required for the survival of cancer cells but are dispensable in normal cells remains a challenge. Here we report a therapeutic vulnerability in a sugar nucleotide biosynthetic pathway that can be exploited in cancer cells with only a limited impact on normal cells. A systematic examination of conditionally essential metabolic enzymes revealed that UXS1, a Golgi enzyme that converts one sugar nucleotide (UDP-glucuronic acid, UDPGA) to another (UDP-xylose), is essential only in cells that express high levels of the enzyme immediately upstream of it, UGDH. This conditional relationship exists because UXS1 is required to prevent excess accumulation of UDPGA, which is produced by UGDH. UXS1 not only clears away UDPGA but also limits its production through negative feedback on UGDH. Excess UDPGA disrupts Golgi morphology and function, which impedes the trafficking of surface receptors such as EGFR to the plasma membrane and diminishes the signalling capacity of cells. UGDH expression is elevated in several cancers, including lung adenocarcinoma, and is further enhanced during chemoresistant selection. As a result, these cancer cells are selectively dependent on UXS1 for UDPGA detoxification, revealing a potential weakness in tumours with high levels of UGDH.
确定对癌细胞存活至关重要但在正常细胞中可有可无的代谢步骤仍然是一个挑战。在这里,我们报告了糖核苷酸生物合成途径中的一个治疗弱点,该弱点可以在癌细胞中被利用,而对正常细胞的影响有限。对条件必需代谢酶的系统检查表明,一种高尔基体酶 UXS1 将一种糖核苷酸(UDP-葡萄糖醛酸,UDPGA)转化为另一种糖核苷酸(UDP-木糖),仅在其上游的酶 UGDH 表达水平高的细胞中是必需的。这种条件关系的存在是因为 UXS1 被需要来防止 UDPGA 的过度积累,而 UDPGA 是由 UGDH 产生的。UXS1 不仅清除 UDPGA,还通过对 UGDH 的负反馈来限制其产生。过量的 UDPGA 会破坏高尔基体的形态和功能,从而阻碍表皮生长因子受体 (EGFR) 等表面受体向质膜的运输,并降低细胞的信号转导能力。UGDH 在包括肺腺癌在内的几种癌症中表达上调,并且在化疗耐药性选择过程中进一步增强。因此,这些癌细胞对 UXS1 解毒 UDPGA 具有选择性依赖性,揭示了高水平 UGDH 的肿瘤的一个潜在弱点。