Rosenfeld Mark A, Bychkova Anna V, Shchegolikhin Alexander N, Leonova Vera B, Biryukova Marina I, Kostanova Elizaveta A
N. M. Emanuel Institute of Biochemical Physics, Russian Academy of Sciences, 4, Kosygina str., 119334 Moscow, Russia.
Biochim Biophys Acta. 2013 Dec;1834(12):2470-9. doi: 10.1016/j.bbapap.2013.08.001. Epub 2013 Aug 12.
The plasma fibrin-stabilizing factor (pFXIII) function is to maintain a hemostasis by the fibrin clot stabilization. The conversion of pFXIII to the active form of the enzyme (FXIIIа) is a multistage process. Ozone-induced oxidation of pFXIII has been investigated at different stages of its enzyme activation. The biochemical results point to a decrease of an enzymatic activity of FXIIIа depending largely on the stage of the pFXIII conversion into FXIIIа at which oxidation was carried out. UV-, FTIR- and Raman spectroscopy demonstrated that chemical transformation of cyclic, NH, SH and S-S groups mainly determines the oxidation of amino acid residues of pFXIII polypeptide chains. Conversion of pFXIII to FXIIIa proved to increase protein sensitivity to oxidation in the order: pFXIII<pFXIII activated by thrombin<pFXIII in the presence of calcium ions<FXIIIa. The dynamic light scattering data indicate that the three-dimensional structure of pFXIII becomes loosened due to oxidative modification. ESR spectroscopy data also point to conformational changes of the fibrin-stabilizing factor under oxidation. Taking into account these new findings it seems reasonable to assume that the inhibitory/carrier FXIII-B subunits can serve as scavengers of ROS. Hypothetically, this mechanism could help to protect the key amino acid residues of the FXIII-A subunits responsible for the enzymatic function of FXIIIa.
血浆纤维蛋白稳定因子(pFXIII)的功能是通过稳定纤维蛋白凝块来维持止血。pFXIII转化为酶的活性形式(FXIIIα)是一个多阶段过程。已在pFXIII酶激活的不同阶段研究了臭氧诱导的pFXIII氧化。生化结果表明,FXIIIα的酶活性降低,这在很大程度上取决于进行氧化时pFXIII转化为FXIIIα的阶段。紫外、傅里叶变换红外和拉曼光谱表明,环状、NH、SH和S-S基团的化学转化主要决定了pFXIII多肽链氨基酸残基的氧化。事实证明,pFXIII向FXIIIa的转化会按以下顺序增加蛋白质对氧化的敏感性:pFXIII<凝血酶激活的pFXIII<存在钙离子时的pFXIII<FXIIIa。动态光散射数据表明,氧化修饰使pFXIII的三维结构变得松散。电子自旋共振光谱数据也表明氧化作用下纤维蛋白稳定因子的构象发生了变化。考虑到这些新发现,假设抑制性/载体FXIII-B亚基可作为活性氧的清除剂似乎是合理的。从理论上讲,这种机制可能有助于保护负责FXIIIa酶功能的FXIII-A亚基的关键氨基酸残基。