OBJECTIVE: Phosphatidylserine (PS) externalization by platelets upon activation is a key event in hemostasis and thrombosis. It is currently believed that strong stimulation of platelets forms 2 subpopulations, only 1 of which expresses PS. METHODS AND RESULTS: Here, we demonstrate that physiological stimulation leads to the formation of not 1 but 2 types of PS-expressing activated platelets, with dramatically different properties. One subpopulation sustained increased calcium level after activation, whereas another returned to the basal low-calcium state. High-calcium PS-positive platelets had smaller size, high surface density of fibrin(ogen), no active integrin α(IIb)β(3), depolarized mitochondrial membranes, gradually lost cytoplasmic membrane integrity, and were poorly aggregated. In contrast, the low-calcium PS-positive platelets had normal size, retained mitochondrial membrane potential and cytoplasmic membrane integrity, and combined retention of fibrin(ogen) with active α(IIb)β(3) and high proaggregatory function. Formation of low-calcium PS-positive platelets was promoted by platelet concentration increase or shaking and was decreased by integrin α(IIb)β(3) antagonists, platelet dilution, or in platelets from kindlin-3-deficient and Glanzmann thrombasthenia patients. CONCLUSIONS: Identification of a novel PS-expressing platelet subpopulation with low calcium regulated by integrin α(IIb)β(3) can be important for understanding the mechanisms of PS exposure and thrombus formation.
OBJECTIVE: Phosphatidylserine (PS) externalization by platelets upon activation is a key event in hemostasis and thrombosis. It is currently believed that strong stimulation of platelets forms 2 subpopulations, only 1 of which expresses PS. METHODS AND RESULTS: Here, we demonstrate that physiological stimulation leads to the formation of not 1 but 2 types of PS-expressing activated platelets, with dramatically different properties. One subpopulation sustained increased calcium level after activation, whereas another returned to the basal low-calcium state. High-calciumPS-positive platelets had smaller size, high surface density of fibrin(ogen), no active integrin α(IIb)β(3), depolarized mitochondrial membranes, gradually lost cytoplasmic membrane integrity, and were poorly aggregated. In contrast, the low-calciumPS-positive platelets had normal size, retained mitochondrial membrane potential and cytoplasmic membrane integrity, and combined retention of fibrin(ogen) with active α(IIb)β(3) and high proaggregatory function. Formation of low-calciumPS-positive platelets was promoted by platelet concentration increase or shaking and was decreased by integrin α(IIb)β(3) antagonists, platelet dilution, or in platelets from kindlin-3-deficient and Glanzmann thrombastheniapatients. CONCLUSIONS: Identification of a novel PS-expressing platelet subpopulation with low calcium regulated by integrin α(IIb)β(3) can be important for understanding the mechanisms of PS exposure and thrombus formation.
Authors: Anastasia A Abaeva; Matthias Canault; Yana N Kotova; Sergey I Obydennyy; Alena O Yakimenko; Nadezhda A Podoplelova; Vladimir N Kolyadko; Herve Chambost; Aleksei V Mazurov; Fazoil I Ataullakhanov; Alan T Nurden; Marie-Christine Alessi; Mikhail A Panteleev Journal: J Biol Chem Date: 2013-08-30 Impact factor: 5.157
Authors: Sergey I Obydennyi; Elena O Artemenko; Anastasia N Sveshnikova; Anastasia A Ignatova; Tatiana V Varlamova; Stepan Gambaryan; Galina Y Lomakina; Natalia N Ugarova; Igor I Kireev; Fazoil I Ataullakhanov; Galina A Novichkova; Aleksey A Maschan; Anna Shcherbina; Mikhail Panteleev Journal: Haematologica Date: 2019-07-05 Impact factor: 9.941
Authors: Natalia V Zakharova; Elena O Artemenko; Nadezhda A Podoplelova; Anastasia N Sveshnikova; Irina A Demina; Fazly I Ataullakhanov; Mikhail A Panteleev Journal: PLoS One Date: 2015-02-17 Impact factor: 3.240
Authors: Amanda J Unsworth; Alexander P Bye; Dionne S Tannetta; Michael J R Desborough; Neline Kriek; Tanya Sage; Harriet E Allan; Marilena Crescente; Parveen Yaqoob; Timothy D Warner; Chris I Jones; Jonathan M Gibbins Journal: Arterioscler Thromb Vasc Biol Date: 2017-06-15 Impact factor: 8.311