A Novel Fibrinolytic Protein From Pheretima vulgaris: Purification, Identification, Antithrombotic Evaluation, and Mechanisms Investigation

Author:

Liu Hai,Yang Jianqiong,Li Yamei,Ma Yunnan,Wang Wenjie,Zhong Wanling,Li Pengyue,Du Shouying

Abstract

Thrombotic diseases have been considered major causes of death around the world. Treatments with thrombolytic drugs, such as recombinant tissue-plasminogen activator, urokinase, and streptokinase, are reported to have a life-threatening bleeding tendency. On the contrary, lumbrokinase, identified from Lumbricus rubellus, is specific to fibrin and does not cause excessive bleeding. It possesses fibrinolytic activity and activation of plasminogen to dissolve fibrin. Hence, the purification of fibrinolytic protein monomer from earthworm and antithrombotic evaluation and investigation of mechanisms are needed. In this study, a novel fibrinolytic protein EPF3, with strong fibrinolytic activity, was purified from Pheretima vulgaris by ion exchange and size exclusion chromatography. SDS PAGE, bottom-up proteomics analysis, de novo sequencing, and circular dichroism (CD) analysis were carried out for identification and characterization of it. EPF3, with a molecular weight of 25136.24 Da, consisted of 241 amino acids and contained various forms of secondary structures, including α-helix (3.9%), β-sheet (42.8%), β-turn (21.2%), and random coil (32.1%). It was a trypsin-like serine protease and stable at pH 7.0 to 11.0 and below 40°C. EPF3 was confirmed to possess an antithrombotic effect by ex vivo clot lysis test and fibrinogen-thrombin time (Fib-TT) assay. The three-dimensional structure of EPF3 was predicted by SWISS-MODEL. Molecular docking analysis predicted that EPF3 could directly interact with antithrombotic target proteins (fibrin, fibrinogen, and plasminogen), which was further confirmed by further studies. The antithrombotic mechanism of EPF3 was clarified to be outstanding direct fibrinolysis, fibrinogenolytic activity, and certain activation of plasminogen. EPF3 possesses the potential to be developed into a promising antithrombotic agent.

Funder

Fundamental Research Funds for the Central Universities

Publisher

Frontiers Media SA

Subject

Biochemistry, Genetics and Molecular Biology (miscellaneous),Molecular Biology,Biochemistry

Reference33 articles.

1. The Fibrin Plate Method for Estimating Fibrinolytic Activity;Astrup;Arch. Biochem. Biophys.,1952

2. Determination of Biological Activity of Recombinant Reteplase Using Clot Lysis Time and Activated Partial Thromboplastin Time (APTT) Lysis Methods: A Comparative Study;Babaee;Iran J. Pharm. Res.,2018

3. Purification and Biochemical Characterization of a Novel Fibrinolytic Enzyme from Streptomyces Sp. P3;Cheng;J. Microbiol. Biotechnol.,2015

4. Purification and Characterization of Six Fibrinolytic Serine-Proteases from Earthworm Lumbricus Rubellus;Cho;BMB Rep.,2004

5. Purification and Characterization of a Novel Thermoacid-Stable Fibrinolytic Enzyme from Staphylococcus Sp. Strain AJ Isolated from Korean Salt-Fermented Anchovy-Joet;Choi;J. Ind. Microbiol. Biotechnol.,2009

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