A role of methionines in the functioning of oxidatively modified fibrinogen

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-04-04 DOI:10.1016/j.bbapap.2024.141013
L.V. Yurina , A.D. Vasilyeva , E.S. Gavrilina , V.S. Ivanov , S.I. Obydennyi , I.A. Chabin , M.I. Indeykina , A.S. Kononikhin , E.N. Nikolaev , M.A. Rosenfeld
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Abstract

Posttranslational modifications in fibrinogen resulting from induced oxidation or oxidative stress in the organism can have deleterious influence on optimal functioning of fibrinogen, causing a disturbance in assembly and properties of fibrin. The protective mechanism supporting the ability of fibrinogen to function in ROS-generating environment remains completely unexplored. The effects of very low and moderately low HOCl/OCl concentrations on fibrinogen oxidative modifications, the fibrin network structure as well as the kinetics of both fibrinogen-to-fibrin conversion and fibrin hydrolysis have been explored in the current study. As opposed to 25 Μm, HOCl/OCl, 10 μM HOCl/OCl did not affect the functional activity of fibrinogen. It is shown for the first time that a number of Met residues, AαMet476, AαMet517, AαMet584, BβMet367, γMet264, and γMet94, identified in 10 μM HOCl/–OCl fibrinogen by the HPLC-MS/MS method, operate as ROS scavengers, performing an important antioxidant function. In turn, this indicates that the fibrinogen structure is adapted to the detrimental action of ROS. The results obtained in our study provide evidence for a protective mechanism responsible for maintaining the structure and functioning of fibrinogen molecules in the bloodstream under conditions of mild and moderate oxidative stress.

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蛋氨酸在氧化修饰纤维蛋白原功能中的作用
生物体内的诱导氧化或氧化应激导致纤维蛋白原发生翻译后修饰,从而对纤维蛋白原的最佳功能产生有害影响,导致纤维蛋白的装配和特性发生紊乱。支持纤维蛋白原在产生 ROS 的环境中发挥作用的保护机制仍未完全探明。本研究探讨了极低和中等低浓度的 HOCl/OCl 对纤维蛋白原氧化修饰、纤维蛋白网络结构以及纤维蛋白原-纤维蛋白转化和纤维蛋白水解动力学的影响。与 25 Μm HOCl/-OCl 相比,10 μM HOCl/-OCl 不影响纤维蛋白原的功能活性。研究首次表明,通过 HPLC-MS/MS 方法在 10 μM HOCl/-OCl 纤维蛋白原中发现的一些 Met 残基(AαMet476、AαMet517、AαMet584、BβMet367、γMet264 和 γMet94)可作为 ROS 清除剂,发挥重要的抗氧化功能。这反过来又表明,纤维蛋白原的结构适应了 ROS 的有害作用。我们的研究结果为一种保护机制提供了证据,这种机制负责在轻度和中度氧化应激条件下维持血液中纤维蛋白原分子的结构和功能。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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