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Expression, Purification and Characterization of Recombinant Human Coagulation Factor XIIIa in . | LitMetric

AI Article Synopsis

  • FXIIIa plays a crucial role in blood coagulation, wound healing, and tissue repair, with its deficiency linked to hemorrhage and delayed recovery.
  • The study aimed to express and purify recombinant FXIIIa in Pichia pastoris, confirming its activity through various methods including PCR and western blotting.
  • Results indicated successful expression and purification of FXIIIa, demonstrating adequate biological activity, positioning it as a potential hemostatic agent in genetic engineering applications.

Article Abstract

Background: Coagulation factor XIIIa(FXIIIa) plays a critical role in the final stage of blood coagulation. It is extremely important in wound healing, tissue repairing and promoting cell adhesion. The deficiency of the coagulation factor can cause hemorrhage and slow wound healing.

Objective: In this study, recombinant pPICZαC-FXIIIa was expressed in Pichia pastoris, purified as well as its biological activity was determined.

Methods: The FXIIIa fragment obtained from the human placenta was inserted into pPICZαC to obtain pPICZαC-FXIIIa, which was transformed into X33 after linearization, and FXIIIa inserted into Pichia pastoris X33 was screened for methanol induction. The expressed product was identified by western blotting, then the supernatant was purified by affinity chromatography, and the purified product was determined by plasma coagulation experiment.

Results: Polymerase Chain Reaction(PCR) showed that the FXIIIa fragment of 2250 bp was inserted successfully into pPICZαC. The expression and purification products of the same molecular weight as target protein(about 83 kDa) were obtained, which solidified significantly when reacted with plasma.

Conclusion: The expression and purification products were successful, with sufficient biological activity, which can be used as a candidate FXIIIa hemostatic agent in genetic engineering.

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Source
http://dx.doi.org/10.2174/0929866527666200625203240DOI Listing

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