Bruschi Maurizio, Candiano Giovanni, Santucci Laura, Ghiggeri Gian Marco
Laboratory on Pathophysiology of Uremia, Istituto Giannina Gaslini, Genoa, Italy.
Biochim Biophys Acta. 2013 Dec;1830(12):5473-9. doi: 10.1016/j.bbagen.2013.04.017. Epub 2013 Apr 22.
Proteins are extremely reactive to oxidants and should represent a potential target of instable reactive oxygen. This may represent a problem for plasma proteins since they may be directly modified in vivo in a compartment where antioxidant enzymatic systems are scarcely represented. On the other hand, it is possible that some plasma components have evolved over time to guarantee protection, in which case they can be considered as anti-oxidants.
To present and discuss main studies which addressed the role of albumin in plasma antioxidant activity mainly utilizing in vitro models of oxidation. To present some advances on structural features of oxidized albumin deriving from studies carried out on in vitro models as well as albumin purified in vivo from patients affected by clinical conditions characterized by oxidative stress.
There are different interaction with HOCl and chloramines. In the former case, HOCl produces an extensive alteration of (238)Trp and (162)Tyr, (425)Tyr, (47)Tyr, while thiol groups are only partially involved. Chloramines are extremely reactive with the unique free SH group of albumin ((34)Cys) with the formation of sulfenic and sulfinic acid as intermediates and sulfonic acid as end-product. Oxidized albumin has a modified electrical charge for the addition of an acidic residue and presents α-helix and random coil reorganization with subtle changes in domain orientation.
Albumin, is the major antioxidants in plasma with a concentration (0.8mM) higher than other antioxidants by an exponential factor. Functional and protective roles in the presence of oxidative stress must be defined. This article is part of a Special Issue entitled Serum Albumin.
蛋白质对氧化剂具有极高的反应性,应是不稳定活性氧的潜在作用靶点。这可能给血浆蛋白带来问题,因为它们可能在体内抗氧化酶系统几乎不存在的区室中被直接修饰。另一方面,一些血浆成分可能随时间进化以提供保护,在这种情况下它们可被视为抗氧化剂。
介绍并讨论主要利用体外氧化模型研究白蛋白在血浆抗氧化活性中作用的研究。介绍体外模型研究以及从患有以氧化应激为特征的临床病症的患者体内纯化的白蛋白所获得的氧化白蛋白结构特征方面的一些进展。
与次氯酸(HOCl)和氯胺存在不同的相互作用。在前一种情况下,HOCl会使(238)色氨酸、(162)酪氨酸、(425)酪氨酸、(47)酪氨酸发生广泛改变,而巯基仅部分参与。氯胺与白蛋白唯一的游离巯基((34)半胱氨酸)反应性极强,形成亚磺酸和亚磺酰酸作为中间体,磺酸作为终产物。氧化白蛋白因添加酸性残基而电荷发生改变,并呈现α - 螺旋和无规卷曲的重组,结构域取向有细微变化。
白蛋白是血浆中的主要抗氧化剂,其浓度(0.8mM)比其他抗氧化剂高出指数倍。必须明确其在氧化应激存在时的功能和保护作用。本文是名为《血清白蛋白》的特刊的一部分。