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Functional redundancy between RAP1 isoforms in murine platelet production and function. | LitMetric

AI Article Synopsis

  • RAP GTPases are key regulators in platelet function, with a focus on the isoform RAP1B, which is found to be partially involved in platelet activation but not crucial for platelet count.
  • Mice with a specific deletion of RAP isoforms displayed significant abnormalities in platelet production and functions, such as impaired aggregation and clot retraction.
  • The study highlights that while RAP signaling is vital for platelet integrin activation and production, it is not necessary for maintaining vascular integrity during development or inflammation.

Article Abstract

RAP GTPases, important regulators of cellular adhesion, are abundant signaling molecules in the platelet/megakaryocytic lineage. However, mice lacking the predominant isoform, RAP1B, display a partial platelet integrin activation defect and have a normal platelet count, suggesting the existence of a RAP1-independent pathway to integrin activation in platelets and a negligible role for RAP GTPases in megakaryocyte biology. To determine the importance of individual RAP isoforms on platelet production and on platelet activation at sites of mechanical injury or vascular leakage, we generated mice with megakaryocyte-specific deletion () of and/or Interestingly, mice displayed a marked macrothrombocytopenia due to impaired proplatelet formation by megakaryocytes. In platelets, RAP isoforms had redundant and isoform-specific functions. Deletion of RAP1B, but not RAP1A, significantly reduced α-granule secretion and activation of the cytoskeleton regulator RAC1. Both isoforms significantly contributed to thromboxane A generation and the inside-out activation of platelet integrins. Combined deficiency of RAP1A and RAP1B markedly impaired platelet aggregation, spreading, and clot retraction. Consistently, thrombus formation in physiological flow conditions was abolished in , but not or , platelets. mice were strongly protected from experimental thrombosis and exhibited a severe defect in hemostasis after mechanical injury. Surprisingly, platelets were indistinguishable from controls in their ability to prevent blood-lymphatic mixing during development and hemorrhage at sites of inflammation. In summary, our studies demonstrate an essential role for RAP1 signaling in platelet integrin activation and a critical role in platelet production. Although important for hemostatic/thrombotic plug formation, platelet RAP1 signaling is dispensable for vascular integrity during development and inflammation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6213319PMC
http://dx.doi.org/10.1182/blood-2018-03-838714DOI Listing

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