4.7 Article

The Structure of Blood Coagulation Factor XIII Is Adapted to Oxidation

期刊

BIOMOLECULES
卷 10, 期 6, 页码 -

出版社

MDPI
DOI: 10.3390/biom10060914

关键词

bloodcoagulation factor XIII (FXIII); hypochlorite-induced oxidation; oxidative modifications; reactive oxygen species (ROS); HPLC-MS/MS; structural adaptation

资金

  1. Russian Science Foundation [16-14-00181]
  2. [0084-2014-0001]
  3. [01201253311]
  4. [0084-2014-0005]
  5. [01201253307]
  6. Russian Science Foundation [19-14-11022] Funding Source: Russian Science Foundation

向作者/读者索取更多资源

The blood coagulation factor XIII (FXIII) plays a critical role in supporting coagulation and fibrinolysis due to both the covalent crosslinking of fibrin polymers, rendering them resistant to plasmin lysis, and the crosslinking of fibrin to proteins of the fibrinolytic system. The hypochlorite-mediated oxidation of the blood coagulation factor XIII (FXIII) at the different stages of its enzymatic activation is studied for the first time in this paper. The consolidated results obtained with the aid of MS/MS, electrophoresis, and colorimetry demonstrate that in the process of FXIII's conversion into FXIIIa, the vulnerability of FXIII to hypochlorite-induced oxidation increased as follows: native FXIII < FXIII + Ca2+ << FXIII + Ca2+/thrombin. The modification sites were detected among all the structural regions of the catalytic FXIII-A subunit, except for the activation peptide, and embraced several sushi domains of the FXIII-B subunit. Oxidized amino acid residues belonging to FXIII-A are surface-exposed residues and can perform an antioxidant role. The regulatory FXIII-B subunits additionally contribute to the antioxidant defense of the catalytic center of the FXIII-A subunits. Taken together, the present data along with the data from previous studies demonstrate that the FXIII proenzyme structure is adapted to oxidation.

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