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Caught red handed: modeling and confirmation of the myeloperoxidase ceruloplasmin alpha-thrombin complex.


ABSTRACT: The work is devoted to the study of the structural characteristics of the myeloperoxidase-ceruloplasmin-thrombin complex using small-angle neutron scattering methods in combination with computer modeling, as well as surface plasmon resonance and solid-phase enzyme assay. We have previously shown that the functioning of active myeloperoxidase during inflammation, despite the presence in the blood of an excess of ceruloplasmin which inhibits its activity, is possible due to the partial proteolysis of ceruloplasmin by thrombin. In this study, the myeloperoxidase-ceruloplasmin-thrombin heterohexamer was obtained in vitro. The building of a heterohexamer full-atomic model in silico, considering the glycosylation of the constituent proteins, confirmed the absence of steric barriers for the formation of protein-protein contacts. It was shown that the partial proteolysis of ceruloplasmin does not affect its ability to bind to myeloperoxidase, and a structural model of the heterohexamer was obtained using the small-angle neutron scattering method.

SUBMITTER: Zabrodskaya YA 

PROVIDER: S-EPMC9375587 | biostudies-literature | 2022 Dec

REPOSITORIES: biostudies-literature

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Caught red handed: modeling and confirmation of the myeloperoxidase ceruloplasmin alpha-thrombin complex.

Zabrodskaya Yana A YA   Egorov Vladimir V VV   Sokolov Alexey V AV   Shvetsov Alexey V AV   Gorshkova Yulia E YE   Ivankov Oleksandr I OI   Kostevich Valeria A VA   Gorbunov Nikolay P NP   Ramsay Edward S ES   Fedorova Natalya D ND   Bondarenko Andrey B AB   Vasilyev Vadim B VB  

Biometals : an international journal on the role of metal ions in biology, biochemistry, and medicine 20220813 6


The work is devoted to the study of the structural characteristics of the myeloperoxidase-ceruloplasmin-thrombin complex using small-angle neutron scattering methods in combination with computer modeling, as well as surface plasmon resonance and solid-phase enzyme assay. We have previously shown that the functioning of active myeloperoxidase during inflammation, despite the presence in the blood of an excess of ceruloplasmin which inhibits its activity, is possible due to the partial proteolysis  ...[more]

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