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Título
Novel variants in GALE cause syndromic macrothrombocytopenia by disrupting glycosylation and thrombopoiesis
Autor(es)
Palabras clave
Thrombocytopenia
UDPglucose 4-Epimerase
Humans
Blood Platelets
Galactose
Glycosylation
Integrin beta1
Megakaryocytes
Thrombopoiesis
Uridine Diphosphate
Clasificación UNESCO
24 Ciencias de la Vida
Fecha de publicación
2023-01-26
Citación
Marín-Quílez, A., Di Buduo, C. A., Díaz-Ajenjo, L., Abbonante, V., Vuelta, E., Soprano, P. M., ... & Bastida, J. M. (2023). Novel variants in GALE cause syndromic macrothrombocytopenia by disrupting glycosylation and thrombopoiesis. Blood, 141(4), 406-421.
Serie / N.º
23GMO;2
Resumen
[EN]Glycosylation is recognized as a key process for proper megakaryopoiesis and platelet formation. The enzyme uridine diphosphate (UDP)-galactose-4-epimerase, encoded by GALE, is involved in galactose metabolism and protein glycosylation. Here, we studied 3 patients from 2 unrelated families who showed lifelong severe thrombocytopenia, bleeding diathesis, mental retardation, mitral valve prolapse, and jaundice. Whole-exome sequencing revealed 4 variants that affect GALE, 3 of those previously unreported (Pedigree A, p.Lys78ValfsX32 and p.Thr150Met; Pedigree B, p.Val128Met; and p.Leu223Pro). Platelet phenotype analysis showed giant and/or grey platelets, impaired platelet aggregation, and severely reduced alpha and dense granule secretion. Enzymatic activity of the UDP-galactose-4-epimerase enzyme was severely decreased in all patients. Immunoblotting of platelet lysates revealed reduced GALE protein levels, a significant decrease in N-acetyl-lactosamine (LacNAc), showing a hypoglycosylation pattern, reduced surface expression of gylcoprotein Ibα-IX-V (GPIbα-IX-V) complex and mature β1 integrin, and increased apoptosis. In vitro studies performed with patients-derived megakaryocytes showed normal ploidy and maturation but decreased proplatelet formation because of the impaired glycosylation of the GPIbα and β1 integrin, and reduced externalization to megakaryocyte and platelet membranes. Altered distribution of filamin A and actin and delocalization of the von Willebrand factor were also shown. Overall, this study expands our knowledge of GALE-related thrombocytopenia and emphasizes the critical role of GALE in the physiological glycosylation of key proteins involved in platelet production and function.
URI
DOI
10.1182/blood.2022016995
Versión del editor
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- GMO. Artículos [24]












