Royal College of Surgeons in Ireland
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Unraveling coagulation factor–mediated cellular signaling

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Blood coagulation is initiated in response to blood vessel injury or proinflammatory stimuli, which activate coagulation factors to coordinate complex biochemical and cellular responses necessary for clot formation. In addition to these critical physiologic functions, plasma protein factors activated during coagulation mediate a spectrum of signaling responses via receptor-binding interactions on different cell types. In this review, we describe examples and mechanisms of coagulation factor signaling. We detail the molecular basis for cell signaling mediated by coagulation factor proteases via the protease-activated receptor family, considering new insights into the role of protease-specific cleavage sites, cofactor and coreceptor interactions, and distinct signaling intermediate interactions in shaping protease-activated receptor signaling diversity. Moreover, we discuss examples of how injury-dependent conformational activation of other coagulation proteins, such as fibrin(ogen) and von Willebrand factor, decrypts their signaling potential, unlocking their capacity to contribute to aberrant proinflammatory signaling. Finally, we consider the role of coagulation factor signaling in disease development and the status of pharmacologic approaches to either attenuate or enhance coagulation factor signaling for therapeutic benefit, emphasizing new approaches to inhibit deleterious coagulation factor signaling without impacting hemostatic activity.

Funding

Science Foundation Ireland Frontiers for the Future Award (21/FFP-A/8859)

The National Children’s Research Centre (C/18/3)

Health Research Board (ILP- POR-2022-060)

NIH for the Zimmerman Program (HL081588)

Science Foundation Ireland Frontiers for the Future Award (20/FFP-A/8952)

History

Comments

The original article is available at https://www.jthjournal.org/

Published Citation

O'Donnell JS, Fleming H, Noone D, Preston RJS. Unraveling coagulation factor-mediated cellular signaling. J Thromb Haemost. 2023;21(12):3342-3353.

Publication Date

28 June 2023

PubMed ID

7391097

Department/Unit

  • Irish Centre for Vascular Biology
  • School of Pharmacy and Biomolecular Sciences

Research Area

  • Health Professions Education
  • Vascular Biology

Publisher

Elsevier BV

Version

  • Accepted Version (Postprint)