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ER-associated degradation pathway protein SEL1L plays an evolutionarily conserved role in platelet adhesion
Anna R. Dahlgren, Francesca Careddu, Jeffrey W. Norris, Christian A. Di Buduo, Livia Stanger, Reheman Adili, Erin M. Kropp, Qing Li, Michael Holinstat, Ida Biunno, Alessandra Balduini, Fern Tablin, Jordan A. Shavit, Carrie J. Finno
Anna R. Dahlgren, Francesca Careddu, Jeffrey W. Norris, Christian A. Di Buduo, Livia Stanger, Reheman Adili, Erin M. Kropp, Qing Li, Michael Holinstat, Ida Biunno, Alessandra Balduini, Fern Tablin, Jordan A. Shavit, Carrie J. Finno
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Research Article Genetics Hematology Vascular biology

ER-associated degradation pathway protein SEL1L plays an evolutionarily conserved role in platelet adhesion

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Abstract

SEL1L is a well-known protein in the ER-associated degradation (ERAD) pathway. While it is known to be expressed in platelets, SEL1L has never been shown to play an active role. Here, we present evidence that SEL1L regulates platelet function. We first identified SEL1L through the study of Atypical Equine Thrombasthenia (AET), an autosomal recessive platelet disorder found in thoroughbred horses. A missense variant in SEL1L (c.1810A>G p.Ile604Val) was found in AET-affected horses, which we show is associated with decreased protein expression. SEL1L is intracellular in equine platelets and localizes to the surface upon activation with thrombin. Platelets from homozygous horses exhibited substantially decreased spreading on immobilized collagen. Human megakaryocytes were found to have 2 SEL1L protein isoforms that increase in expression during megakaryopoiesis, although only 1 isoform was delivered to mature platelets. Studies using inducible mouse and constitutive zebrafish KOs demonstrated that SEL1L is necessary for efficient platelet or thrombocyte (fish equivalent) adhesion to sites of endothelial injury. These data reveal a previously undescribed and conserved role for the ERAD pathway in the etiology of AET and platelet function, and GWAS data suggest that it may play a role in human platelet disorders as well.

Authors

Anna R. Dahlgren, Francesca Careddu, Jeffrey W. Norris, Christian A. Di Buduo, Livia Stanger, Reheman Adili, Erin M. Kropp, Qing Li, Michael Holinstat, Ida Biunno, Alessandra Balduini, Fern Tablin, Jordan A. Shavit, Carrie J. Finno

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Figure 5

SEL1L is expressed in human cord blood megakaryocytes and platelets.

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SEL1L is expressed in human cord blood megakaryocytes and platelets.
(A)...
(A) Flow cytometry analyses of human megakaryocytic surface markers from differentiated cord blood. CD61hiCD42bhi megakaryocytes are observed after 2 weeks of differentiation. (B) Phase contrast microscopy of mature human megakaryocytes and (C) proplatelets. Scale bars: 50 μm. (D) Representative Western blot analysis of SEL1L during megakaryopoiesis and in platelets from peripheral blood. (E) Densitometric analyses of SEL1L isoforms (n = 7, results are presented as mean ± SD). **P < 0.01, ***P < 0.001, and ****P < 0.0001 by 1-way ANOVA with post hoc pairwise comparisons. (F and G) Immunofluorescence microscopy of megakaryocytes extending proplatelets. Scale bars: 30 μm. (H) Analysis of SEL1L fluorescence intensity in the megakaryocytic cell body and proplatelet tips. ****P < 0.0001 by 2-tailed Student’s t test.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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