Department of Molecular Biology of Cancer, Medical University of Lodz, 6/8 Mazowiecka Street, 92-215 Lodz, Poland.
Department of Hematology, Comprehensive Cancer Center and Traumatology, Copernicus Memorial Hospital, Pabianicka Street 62, 93-513 Lodz, Poland.
Int J Mol Sci. 2023 Jan 12;24(2):1534. doi: 10.3390/ijms24021534.
Free drug concentration in the blood sera is crucial for its appropriate activity. Serum albumin, the universal blood carrier protein, is responsible for transporting drugs and releasing them into the bloodstream. Therefore, a drug's binding to SA is especially important for its bioavailability and it is a key problem in the drug design process. In this paper, we present crystal structures of three animal serum albumin complexes: ovine, caprine, and leporine, with diclofenac, a popular non-steroidal anti-inflammatory drug that is used in therapy of chronic and acute pain. Details of diclofenac binding mode by the presented serum albumins are compared with analogous complexes of human and equine serum albumins. The analysis of the occupied binding pockets in crystal structures of the investigated serum albumins from different mammals shows that they have two common and a number of unique diclofenac binding sites. The most intriguing is the fact that the albumins from the described species are able to bind different numbers of molecules of this popular anti-inflammatory drug, but none of the binding sites overlap with ones in the human serum albumin.
血药游离浓度对药物的活性至关重要。血清白蛋白是一种普遍存在的血液载体蛋白,负责运输药物并将其释放到血液中。因此,药物与 SA 的结合对其生物利用度尤为重要,这也是药物设计过程中的关键问题。在本文中,我们展示了三种动物血清白蛋白(绵羊、山羊和兔)与双氯芬酸(一种常用于治疗慢性和急性疼痛的常用非甾体抗炎药)复合物的晶体结构。本文比较了所研究的血清白蛋白与人和马血清白蛋白类似物的双氯芬酸结合模式的细节。对来自不同哺乳动物的被调查血清白蛋白的晶体结构中占据的结合口袋的分析表明,它们具有两个共同的和一些独特的双氯芬酸结合位点。最有趣的是,所描述的物种的白蛋白能够结合这种流行的抗炎药物的不同数量的分子,但没有一个结合位点与人类血清白蛋白的结合位点重叠。