Sayler Aaron L, Hammond James R
Department of Pharmacology, Faculty of Medicine & Dentistry, University of Alberta, Edmonton, Alberta, Canada.
PLoS One. 2025 Aug 21;20(8):e0323853. doi: 10.1371/journal.pone.0323853. eCollection 2025.
SLC43A3 encodes for a membrane transporter selective for purine nucleobases (equilibrative nucleoside transporter 1; ENBT1). Adenine, an endogenous substrate for ENBT1, plays an important role in many biochemical and physiological processes, including cellular energy metabolism. To investigate how the loss of ENBT1 impacts these processes, we generated a slc43a3-null (global; KO) mouse model. Metabolic function, physical activity, and food and water consumption were assessed in male and female wild-type (WT) and KO mice (age 10-12 weeks) for a 60-hour period (12 hr light/dark cycle). Blood pressure and heart rate of each group of mice were also assessed using a rodent tail cuff method. Male KO mice showed a significant increase in metabolic activity relative to male WT mice. Male KO mice also displayed a significant decrease in rearing activity and blood pressure. Female KO mice did not show the same changes in metabolic and physical activity as the males, but did display a significant 4-hour negative change in diurnal rhythm phase in the metabolic and activity measures that was not seen for the male KO mice. It may be concluded that loss of slc43a3-encoded ENBT1 impacts numerous measures of activity in mice, with female mice impacted differently than male mice. This may reflect disruption of purinergic processes associated with energy metabolism coincident with changes in cellular adenine availability.
SLC43A3编码一种对嘌呤核碱基具有选择性的膜转运蛋白(平衡核苷转运体1;ENBT1)。腺嘌呤是ENBT1的内源性底物,在许多生物化学和生理过程中发挥重要作用,包括细胞能量代谢。为了研究ENBT1的缺失如何影响这些过程,我们构建了一种slc43a3基因敲除(全身性;KO)小鼠模型。在10 - 12周龄的雄性和雌性野生型(WT)及KO小鼠中,在60小时内(12小时光照/黑暗周期)评估其代谢功能、身体活动以及食物和水的消耗情况。还使用啮齿动物尾套法评估每组小鼠的血压和心率。雄性KO小鼠相对于雄性WT小鼠,代谢活性显著增加。雄性KO小鼠的竖毛活动和血压也显著降低。雌性KO小鼠在代谢和身体活动方面未表现出与雄性相同的变化,但在代谢和活动指标的昼夜节律相位上确实出现了显著的4小时负向变化,而雄性KO小鼠未出现这种情况。可以得出结论,slc43a3编码的ENBT1的缺失会影响小鼠的多种活动指标,雌性小鼠受到的影响与雄性小鼠不同。这可能反映了与能量代谢相关的嘌呤能过程的破坏以及细胞腺嘌呤可用性的变化。