Department of Biochemistry, University of Wisconsin-Madison, Madison, WI, USA.
Morgridge Institute for Research, Madison, WI, USA.
Nat Cell Biol. 2023 Nov;25(11):1616-1624. doi: 10.1038/s41556-023-01250-5. Epub 2023 Oct 9.
Coenzyme Q (CoQ, ubiquinone) is an essential cellular cofactor composed of a redox-active quinone head group and a long hydrophobic polyisoprene tail. How mitochondria access cytosolic isoprenoids for CoQ biosynthesis is a longstanding mystery. Here, via a combination of genetic screening, metabolic tracing and targeted uptake assays, we reveal that Hem25p-a mitochondrial glycine transporter required for haem biosynthesis-doubles as an isopentenyl pyrophosphate (IPP) transporter in Saccharomyces cerevisiae. Mitochondria lacking Hem25p failed to efficiently incorporate IPP into early CoQ precursors, leading to loss of CoQ and turnover of CoQ biosynthetic proteins. Expression of Hem25p in Escherichia coli enabled robust IPP uptake and incorporation into the CoQ biosynthetic pathway. HEM25 orthologues from diverse fungi, but not from metazoans, were able to rescue hem25∆ CoQ deficiency. Collectively, our work reveals that Hem25p drives the bulk of mitochondrial isoprenoid transport for CoQ biosynthesis in fungi.
辅酶 Q(CoQ,泛醌)是一种必需的细胞辅助因子,由氧化还原活性的醌头基团和长疏水多异戊二烯尾巴组成。线粒体如何获取细胞质异戊二烯用于 CoQ 生物合成是一个长期存在的谜。在这里,通过遗传筛选、代谢追踪和靶向摄取测定的组合,我们揭示了 Hem25p——一种血红素生物合成所需的线粒体甘氨酸转运体——在酿酒酵母中也充当异戊烯焦磷酸(IPP)转运体。缺乏 Hem25p 的线粒体无法有效地将 IPP 掺入早期 CoQ 前体中,导致 CoQ 丧失和 CoQ 生物合成蛋白的周转。Hem25p 在大肠杆菌中的表达能够促进 IPP 的摄取和掺入 CoQ 生物合成途径。来自不同真菌的 HEM25 同源物,但不是来自后生动物的同源物,能够挽救 hem25∆ CoQ 缺陷。总之,我们的工作揭示了 Hem25p 驱动真菌中 CoQ 生物合成的大部分线粒体异戊二烯转运。