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The murine platelet and plasma factor V pools are biosynthetically distinct and sufficient for minimal hemostasis
Hongmin Sun1, Tony L Yang, Angela Yang
1Department of Internal Medicine, Division of Molecular Medicine and Genetics, University of Michigan, Ann Arbor, 48109,USA.
Abstract:
Coagulation factor V (FV) is a central regulator of the coagulation cascade. Circulating FV is found in plasma and within platelet alpha granules. The specific functions of these distinct FV pools are uncertain. We now report the generation of transgenic mice with FV gene expression restricted to either the liver or megakaryocyte/platelet lineage using bacterial artificial chromosome (BAC) constructs. Six of 6 independent albumin BAC transgenes rescue the neonatal lethal hemorrhage of FV deficiency. Rescued mice all exhibit liver-specific Fv expression at levels ranging from 6% to 46% of the endogenous Fv gene, with no detectable FV activity within the platelet pool. One of the 3 Pf4 BAC transgenes available for analysis also rescues the lethal FV null phenotype, with FV activity restricted to only the platelet pool (approximately 3% of the wild-type FV level). FV-null mice rescued by either the albumin or Pf4 BAC exhibit nearly normal tail bleeding times. These results demonstrate that Fv expression in either the platelet or plasma FV pool is sufficient for basal hemostasis. In addition, these findings indicate that the murine platelet and plasma FV pools are biosynthetically distinct, in contrast to a previous report demonstrating a plasma origin for platelet FV in humans.
Insights
Coagulation factor V (FV) produced in the liver or platelets is sufficient for normal blood clotting. This study shows distinct origins for platelet and plasma FV in mice, differing from human findings.
Area of Science:
- Hematology
- Molecular Biology
- Genetics
Background:
- Coagulation factor V (FV) is crucial for blood clotting.
- FV exists in plasma and platelets, but their specific roles are unclear.
Purpose of the Study:
- To investigate the distinct functions of plasma and platelet FV pools.
- To determine if liver or platelet expression of FV is sufficient for hemostasis.
Main Methods:
- Generated transgenic mice with liver-specific (albumin BAC) or platelet-specific (Pf4 BAC) FV expression.
- Assessed hemostasis and FV activity in rescued FV-deficient mice.
Main Results:
- Liver-specific FV expression rescued lethal hemorrhage in FV-null mice.
- Platelet-specific FV expression also rescued the lethal phenotype.
- Both rescued groups showed near-normal bleeding times.
- Murine platelet and plasma FV pools appear biosynthetically distinct.
Conclusions:
- Either plasma or platelet FV is sufficient for basal hemostasis.
- Murine platelet and plasma FV pools originate independently.