Department of Biochemistry and Centre of Excellence for Molecular and Food Sciences, University of Belgrade-Faculty of Chemistry (UBFC), Studentski trg 12-16, 11158 Belgrade, Serbia.
Centre of Research Excellence in Nutrition and Metabolism, Group for Nutrition and Metabolism, National Institute of Republic of Serbia, Institute for Medical Research, University of Belgrade, Tadeuša Košćuškog 1, 11000 Belgrade, Serbia.
Int J Mol Sci. 2024 Feb 16;25(4):2335. doi: 10.3390/ijms25042335.
The binding of ubiquitous serum ligands (free fatty acids) to human serum albumin (HSA) or its glycation can affect thiol group reactivity, thus influencing its antioxidant activity. The effects of stearic acid (SA) and glucose binding on HSA structural changes and thiol group content and reactivity were monitored by fluoroscopy and the Ellman method during a 14-day incubation in molar ratios to HSA that mimic pathophysiological conditions. Upon incubation with 5 mM glucose, HSA glycation was the same as HSA without it, in three different HSA:SA molar ratios (HSA:SA-1:1-2-4). The protective effect of SA on the antioxidant property of HSA under different glucose regimes (5-10-20 mM) was significantly affected by molar ratios of HSA:SA. Thiol reactivity was fully restored with 5-20 mM glucose at a 1:1 HSA:SA ratio, while the highest thiol content recovery was in pathological glucose regimes at a 1:1 HSA:SA ratio. The SA affinity for HSA increased significantly (1.5- and 1.3-fold, < 0.01) with 5 and 10 mM glucose compared to the control. These results deepen the knowledge about the possible regulation of the antioxidant role of HSA in diabetes and other pathophysiological conditions and enable the design of future HSA-drug studies which, in turn, is important for clinicians when designing information-based treatments.
普遍存在的血清配体(游离脂肪酸)与人体血清白蛋白(HSA)的结合或其糖基化作用会影响巯基反应性,从而影响其抗氧化活性。通过荧光法和 Ellman 法监测了硬脂酸(SA)和葡萄糖结合对 HSA 结构变化、巯基含量和反应性的影响,在摩尔比为 HSA 的生理病理条件下孵育 14 天。在孵育 5 mM 葡萄糖时,HSA 糖基化与没有葡萄糖的 HSA 相同,在三种不同的 HSA:SA 摩尔比(HSA:SA-1:1-2-4)中也是如此。SA 对不同葡萄糖浓度(5-10-20 mM)下 HSA 抗氧化性能的保护作用显著受 HSA:SA 摩尔比的影响。在 1:1 HSA:SA 比例下,用 5-20 mM 葡萄糖可完全恢复巯基反应性,而在 HSA:SA 比例最高的病理葡萄糖条件下,巯基含量的恢复最高。与对照相比,5 和 10 mM 葡萄糖使 SA 对 HSA 的亲和力显著增加(1.5 倍和 1.3 倍, < 0.01)。这些结果加深了对 HSA 在糖尿病和其他生理病理条件下抗氧化作用可能受到调节的认识,并为未来的 HSA-药物研究设计提供了依据,这对临床医生在设计基于信息的治疗方案时也很重要。