Program in Cancer and Stem Cell Biology, Duke-NUS Medical School, Singapore.
Science Division, Yale-NUS College, Singapore.
J Clin Invest. 2024 Jan 23;134(6):e171222. doi: 10.1172/JCI171222.
Wnts, cholesterol, and MAPK signaling are essential for development and adult homeostasis. Here, we report that fatty acid hydroxylase domain containing 2 (FAXDC2), a previously uncharacterized enzyme, functions as a methyl sterol oxidase catalyzing C4 demethylation in the Kandutsch-Russell branch of the cholesterol biosynthesis pathway. FAXDC2, a paralog of MSMO1, regulated the abundance of the specific C4-methyl sterols lophenol and dihydro-T-MAS. Highlighting its clinical relevance, FAXDC2 was repressed in Wnt/β-catenin-high cancer xenografts, in a mouse genetic model of Wnt activation, and in human colorectal cancers. Moreover, in primary human colorectal cancers, the sterol lophenol, regulated by FAXDC2, accumulated in the cancerous tissues and not in adjacent normal tissues. FAXDC2 linked Wnts to RTK/MAPK signaling. Wnt inhibition drove increased recycling of RTKs and activation of the MAPK pathway, and this required FAXDC2. Blocking Wnt signaling in Wnt-high cancers caused both differentiation and senescence; and this was prevented by knockout of FAXDC2. Our data show the integration of 3 ancient pathways, Wnts, cholesterol synthesis, and RTK/MAPK signaling, in cellular proliferation and differentiation.
Wnts、胆固醇和 MAPK 信号对于发育和成年期的稳态至关重要。在这里,我们报告了脂肪酸羟化酶结构域包含 2 型(FAXDC2),一种以前未被描述的酶,作为一种甲基固醇氧化酶,催化胆固醇生物合成途径中的 Kandutsch-Russell 分支中的 C4 去甲基化。FAXDC2 是 MSMO1 的旁系同源物,调节特定 C4-甲基固醇 lophenol 和二氢-T-MAS 的丰度。突出其临床相关性,FAXDC2 在 Wnt/β-catenin 高的癌症异种移植、Wnt 激活的小鼠遗传模型和人类结直肠癌中受到抑制。此外,在原发性人类结直肠癌中,由 FAXDC2 调节的固醇 lophenol 在癌组织中积累,而不在相邻的正常组织中积累。FAXDC2 将 Wnts 与 RTK/MAPK 信号联系起来。Wnt 抑制导致 RTKs 的循环增加和 MAPK 途径的激活,这需要 FAXDC2。在 Wnt 高的癌症中阻断 Wnt 信号会导致分化和衰老;而敲除 FAXDC2 则可以防止这种情况发生。我们的数据显示了 3 条古老途径(Wnts、胆固醇合成和 RTK/MAPK 信号)在细胞增殖和分化中的整合。