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Gain-of-Function Mutation in Filamin A Potentiates Platelet Integrin αIIbß3 Activation.

Berrou, Eliane; Adam, Frédéric; Lebret, Marilyne; Planche, Virginie; Fergelot, Patricia; Issertial, Odile; Coupry, Isabelle; Bordet, Jean-Claude; Nurden, Paquita; Bonneau, Dominique; Colin, Estelle; Goizet, Cyril; Rosa, Jean-Philippe; Bryckaert, Marijke.
Arterioscler Thromb Vasc Biol; 37(6): 1087-1097, 2017 06.
Artigo em Inglês | MEDLINE | ID: mdl-28428218


Dominant mutations of the X-linked filamin A (FLNA) gene are responsible for filaminopathies A, which are rare disorders including brain periventricular nodular heterotopia, congenital intestinal pseudo-obstruction, cardiac valves or skeleton malformations, and often macrothrombocytopenia.


We studied a male patient with periventricular nodular heterotopia and congenital intestinal pseudo-obstruction, his unique X-linked FLNA allele carrying a stop codon mutation resulting in a 100-amino acid-long FLNa C-terminal extension (NP_001447.2: p.Ter2648SerextTer101). Platelet counts were normal, with few enlarged platelets. FLNa was detectable in all platelets but at 30% of control levels. Surprisingly, all platelet functions were significantly upregulated, including platelet aggregation and secretion, as induced by ADP, collagen, or von Willebrand factor in the presence of ristocetin, as well as thrombus formation in blood flow on a collagen or on a von Willebrand factor matrix. Most importantly, patient platelets stimulated with ADP exhibited a marked increase in αIIbß3 integrin activation and a parallel increase in talin recruitment to ß3, contrasting with normal Rap1 activation. These results are consistent with the mutant FLNa affecting the last step of αIIbß3 activation. Overexpression of mutant FLNa in the HEL megakaryocytic cell line correlated with an increase (compared with wild-type FLNa) in PMA-induced fibrinogen binding to and in talin and kindlin-3 recruitment by αIIbß3.


Altogether, our results are consistent with a less binding of mutant FLNa to ß3 and the facilitated recruitment of talin by ß3 on platelet stimulation, explaining the increased αIIbß3 activation and the ensuing gain-of-platelet functions.
Selo DaSilva