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Exploring how structural and dynamic properties of bovine and canine serum albumins differ from human serum albumin

机译:探索牛和犬血清白蛋白的结构和动态性质如何不同人血清白蛋白

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Serum albumin (SA) is the most abundant protein in blood. SA carries a diverse range of nutrients and drugs. It has wide clinical and biochemical applications. Especially, administering human serum albumin (HSA) can increase albumin level and blood pressure in ill dogs and humans. Nonetheless, the use of HSA therapy is still controversial. Using albumin from other species is one of alternatives. Bovine serum albumin (BSA) is a homolog of HSA, but it shows different dynamics. Thus, understanding albumin properties from other species becomes crucial. Recently, the first crystal structure of canine serum albumin (CSA) has been solved. We thus employed Molecular Dynamics (MD) simulations to reveal structural and dynamic properties of CSA and BSA in comparison with HSA. The results indicate the motion of domains I and III is the key to define albumin characteristics. Among all, CSA is the most flexible. BSA and HSA are more alike in term of ligand-binding affinity. Many ligand-binding studies succeeded to employ BSA as a HSA substitute due to similar size and environment of binding pockets, however replacing HSA by BSA may fail in a dynamics-related process because of the more rigid BSA. For CSA, its properties deviate from BSA and HSA. CSA shows more flexibility and has larger and more water-exposed drug sites. Moreover, C34 on CSA is more reactive than that of BSA and HSA owing to more flexible side chain. An insight obtained can serve as a guideline for a future use of alternative albumins in clinical practice. (C) 2020 Elsevier Inc. All rights reserved.
机译:血清白蛋白(SA)是血液中最丰富的蛋白质。 SA携带各种营养和药物。它具有广泛的临床和生物化学应用。特别是,施用人血清白蛋白(HSA)可以增加未病犬和人类的白蛋白水平和血压。尽管如此,HSA治疗的使用仍然存在争议。使用来自其他物种的白蛋白是替代品之一。牛血清白蛋白(BSA)是HSA的同源物,但它显示出不同的动态。因此,了解来自其他物种的白蛋白性质变得至关重要。最近,已经解决了犬血清白蛋白(CSA)的第一晶体结构。因此,我们使用分子动力学(MD)模拟,以揭示CSA和BSA的结构和动态特性与HSA相比。结果表明域I和III的运动是定义白蛋白特征的关键。其中,CSA是最灵活的。 BSA和HSA在配体结合亲和力方面更相似。由于粘合袋的相似尺寸和环境,许多配体结合研究成功地使用BSA作为HSA替代品,但是由于BSA更换了与BSA的替代HSA可能会失败。对于CSA,其属性偏离BSA和HSA。 CSA显示出更多的灵活性,并且具有更大和更大的水暴露的药物。此外,CSA上的C34比BSA和HSA由于更柔软的侧链更具反应性。获得的洞察力可以作为未来在临床实践中使用替代白蛋白的指导方针。 (c)2020 Elsevier Inc.保留所有权利。

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