Thymosin β4 is essential for thrombus formation by controlling the G-actin/F-actin equilibrium in platelets

Haematologica. 2022 Dec 1;107(12):2846-2858. doi: 10.3324/haematol.2021.278537.

Abstract

Coordinated rearrangements of the actin cytoskeleton are pivotal for platelet biogenesis from megakaryocytes but also orchestrate key functions of peripheral platelets in hemostasis and thrombosis, such as granule release, the formation of filopodia and lamellipodia, or clot retraction. Along with profilin (Pfn) 1, thymosin β4 (encoded by Tmsb4x) is one of the two main G-actin-sequestering proteins within cells of higher eukaryotes, and its intracellular concentration is particularly high in cells that rapidly respond to external signals by increased motility, such as platelets. Here, we analyzed constitutive Tmsb4x knockout (KO) mice to investigate the functional role of the protein in platelet production and function. Thymosin β4 deficiency resulted in a macrothrombocytopenia with only mildly increased platelet volume and an unaltered platelet life span. Megakaryocyte numbers in the bone marrow and spleen were unaltered, however, Tmsb4x KO megakaryocytes showed defective proplatelet formation in vitro and in vivo. Thymosin β4-deficient platelets displayed markedly decreased G-actin levels and concomitantly increased F-actin levels resulting in accelerated spreading on fibrinogen and clot retraction. Moreover, Tmsb4x KO platelets showed activation defects and an impaired immunoreceptor tyrosine-based activation motif (ITAM) signaling downstream of the activating collagen receptor glycoprotein VI. These defects translated into impaired aggregate formation under flow, protection from occlusive arterial thrombus formation in vivo and increased tail bleeding times. In summary, these findings point to a critical role of thymosin β4 for actin dynamics during platelet biogenesis, platelet activation downstream of glycoprotein VI and thrombus stability.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Actin Cytoskeleton / metabolism
  • Actins / metabolism
  • Animals
  • Blood Platelets* / metabolism
  • Mice
  • Mice, Knockout
  • Thrombosis* / genetics
  • Thrombosis* / metabolism
  • Thymosin* / genetics

Substances

  • Actins
  • thymosin beta(4)
  • Tmsb4x protein, mouse
  • Thymosin

Grants and funding

Funding: This work was supported by the Deutsche Forschungs-gemeinschaft (DFG, German Research Foundation; project number 374031971 – TRR 240 and NI 556/11-2 to BN) and the European Union (EFRE - Europäischer Fond für regionale Entwicklung, Bavaria). MB is supported by an Emmy Noether grant of the DFG (BE5084/3-2). ZN was supported by a grant of the German Excellence Initiative to the Graduate School of Life Sciences, University of Würzburg.