Her Cheenou, Singh Jaideep, Krishnan V V
Department of Chemistry, California State University, Fresno CA 93740, United States.
Department of Chemistry, California State University, Fresno CA 93740, United States; Department of Pathology and Laboratory Medicine, School of Medicine, University of California, Davis CA 95616, United States.
Carbohydr Res. 2018 Jan 2;455:5-9. doi: 10.1016/j.carres.2017.10.019. Epub 2017 Oct 31.
Sucralose, a derivative of sucrose, is widely used in noncaloric artificial sweeteners (NAS). Contrary to the belief that sucralose is physiologically inert and a healthy alternative sweetener to natural sugar, emerging studies indicate that sucralose alters the host metabolism as well as the composition of the microbiome. In this manuscript, we use real-time nuclear magnetic resonance (NMR) spectroscopy to demonstrate that sucralose alters the enzymatic conversion of sucrose to glucose and fructose. The real-time NMR progress curve analysis suggests that sucralose has the characteristic of a competitive inhibitor on the kinetics of the enzymatic process. This affects the rate of glucose production, and thus indirectly affecting the mutarotation process of α-D-glucose to β-D-glucose conversion. At a 1:2 M ratio of sucrose to sucralose, the results show that the catalytic efficiency of the enzyme is reduced by more than 50% in comparison to the measurements without sucralose. Altogether, as sucralose alters the rate of glucose production, sucralose cannot be considered inert to the metabolism as several downstream events in both prokaryotic and eukaryotic systems strongly depend on the rate of glucose metabolism.
三氯蔗糖是蔗糖的衍生物,广泛用于无热量人工甜味剂(NAS)。与三氯蔗糖是生理惰性的且是天然糖的健康替代甜味剂这一观点相反,新出现的研究表明,三氯蔗糖会改变宿主代谢以及微生物群的组成。在本论文中,我们使用实时核磁共振(NMR)光谱来证明三氯蔗糖会改变蔗糖向葡萄糖和果糖的酶促转化。实时NMR进程曲线分析表明,三氯蔗糖在酶促过程的动力学上具有竞争性抑制剂的特征。这会影响葡萄糖的生成速率,进而间接影响α-D-葡萄糖向β-D-葡萄糖转化的变旋过程。在蔗糖与三氯蔗糖的摩尔比为1:2时,结果表明,与未添加三氯蔗糖的测量结果相比,该酶的催化效率降低了50%以上。总之,由于三氯蔗糖会改变葡萄糖的生成速率,因此不能认为三氯蔗糖对代谢是惰性的,因为原核生物和真核生物系统中的几个下游事件都强烈依赖于葡萄糖代谢的速率。