Sechenov Institute of Evolutionary Physiology and Biochemistry, Russian Academy of Sciences, pr. Torez 44, 194223 St. Petersburg, Russia.
Leicester School of Allied Health Sciences, De Montfort University, The Gateway, Leicester LE1 9BH, UK.
Int J Mol Sci. 2024 Mar 11;25(6):3204. doi: 10.3390/ijms25063204.
In mammals, glycated serum albumin (gSA) contributes to the pathogenesis of many metabolic diseases by activating the receptors (RAGE) for advanced glycation end products (AGEs). Many aspects of the gSA-RAGE interaction remain unknown. The purpose of the present paper was to study the interaction of glycated human albumin (gHSA) with RAGE using molecular modeling methods. Ten models of gHSA modified with different lysine residues to carboxymethyl-lysines were prepared. Complexes of gHSA-RAGE were obtained by the macromolecular docking method with subsequent molecular dynamics simulation (MD). According to the MD, the RAGE complexes with gHSA glycated at Lys233, Lys64, Lys525, Lys262 and Lys378 are the strongest. Three-dimensional models of the RAGE dimers with gHSA were proposed. Additional computational experiments showed that the binding of fatty acids (FAs) to HSA does not affect the ability of Lys525 (the most reactive lysine) to be glycated. In contrast, modification of Lys525 reduces the affinity of albumin for FA. The interspecies differences in the molecular structure of albumin that may affect the mechanism of the gSA-RAGE interaction were discussed. The obtained results will help us to learn more about the molecular basis for the involvement of serum albumin in the AGE/RAGE axis and improve the methodology for studying cellular signaling pathways involving RAGE.
在哺乳动物中,糖化血清白蛋白(gSA)通过激活晚期糖基化终产物(AGE)的受体(RAGE),导致多种代谢疾病的发病机制。gSA-RAGE 相互作用的许多方面仍然未知。本文的目的是使用分子建模方法研究糖化人白蛋白(gHSA)与 RAGE 的相互作用。制备了 10 种不同赖氨酸残基被羧甲基化赖氨酸修饰的 gHSA 模型。使用大分子对接方法获得 gHSA-RAGE 复合物,随后进行分子动力学模拟(MD)。根据 MD,与 Lys233、Lys64、Lys525、Lys262 和 Lys378 糖化的 gHSA 的 RAGE 复合物最强。提出了 gHSA 与 RAGE 二聚体的三维模型。额外的计算实验表明,脂肪酸(FA)与 HSA 的结合不会影响 Lys525(最易反应的赖氨酸)糖化的能力。相反,Lys525 的修饰降低了白蛋白对 FA 的亲和力。讨论了白蛋白的种间分子结构差异,这可能影响 gSA-RAGE 相互作用的机制。所得结果将有助于我们更多地了解血清白蛋白参与 AGE/RAGE 轴的分子基础,并改进涉及 RAGE 的细胞信号通路的研究方法。