The transcriptional complex Mondo/Max-like, MML-1/MXL-2, acts as a convergent transcriptional regulatory output of multiple longevity pathways in Caenorhabditis elegans. These transcription factors coordinate nutrient sensing with carbohydrate and lipid metabolism across the evolutionary spectrum. While most studies have focused on the downstream outputs, little is known about the upstream inputs that regulate these transcription factors in a live organism. Here, we found that knockdown of various glucose metabolic enzymes decreases MML-1 localization in the nucleus and identified two hexokinase isozymes, hxk-1 and hxk-2, as the most vigorous regulators of MML-1 function. Upon hexokinase knockdown, MML-1 redistributes to mitochondria and lipid droplets (LDs), and concomitantly, transcriptional targets are downregulated and germline longevity is abolished. Further, we found that hxk-1 regulates MML-1 through mitochondrial β-oxidation, while hxk-2 regulates MML-1 by modulating the pentose phosphate pathway (PPP) and its coordinated association with LDs. Similarly, inhibition of the PPP rescues mammalian MondoA nuclear translocation and transcriptional function upon starvation. These studies reveal how metabolic signals and organellar communication regulate a key convergent metabolic transcription factor to promote longevity.
Hexokinase regulates Mondo-mediated longevity via the PPP and organellar dynamics.
己糖激酶通过磷酸戊糖途径和细胞器动力学调节 Mondo 介导的寿命
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作者:Laboy Raymond, Ndoci Marjana, Syed Shamsh Tabrez, Vonolfen Maximilian, Ballhysa Eugen, Droth Tim, Schilling Klara, Loehrke Anna, Atanassov Ilian, Antebi Adam
| 期刊: | Elife | 影响因子: | 6.400 |
| 时间: | 2025 | 起止号: | 2025 Aug 11; 12:RP89225 |
| doi: | 10.7554/eLife.89225 | 研究方向: | 细胞生物学 |
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