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Citations to this article

SLFN14 mutations underlie thrombocytopenia with excessive bleeding and platelet secretion defects
Sarah J. Fletcher, … , Neil V. Morgan, on behalf of the UK Genotyping and Phenotyping of Platelets study group
Sarah J. Fletcher, … , Neil V. Morgan, on behalf of the UK Genotyping and Phenotyping of Platelets study group
Published August 17, 2015
Citation Information: J Clin Invest. 2015;125(9):3600-3605. https://doi.org/10.1172/JCI80347.
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Brief Report Hematology Article has an altmetric score of 5

SLFN14 mutations underlie thrombocytopenia with excessive bleeding and platelet secretion defects

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Abstract

Inherited thrombocytopenias are a group of disorders that are characterized by a low platelet count and are sometimes associated with excessive bleeding that ranges from mild to severe. We evaluated 36 unrelated patients and 17 family members displaying thrombocytopenia that were recruited to the UK Genotyping and Phenotyping of Platelets (GAPP) study. All patients had a history of excessive bleeding of unknown etiology. We performed platelet phenotyping and whole-exome sequencing (WES) on all patients and identified mutations in schlafen 14 (SLFN14) in 12 patients from 3 unrelated families. Patients harboring SLFN14 mutations displayed an analogous phenotype that consisted of moderate thrombocytopenia, enlarged platelets, decreased ATP secretion, and a dominant inheritance pattern. Three heterozygous missense mutations were identified in affected family members and predicted to encode substitutions (K218E, K219N, and V220D) within an ATPase-AAA-4, GTP/ATP-binding region of SLFN14. Endogenous SLFN14 expression was reduced in platelets from all patients, and mutant SLFN14 expression was markedly decreased compared with that of WT SLFN14 when overexpressed in transfected cells. Electron microscopy revealed a reduced number of dense granules in affected patients platelets, correlating with a decreased ATP secretion observed in lumiaggregometry studies. These results identify SLFN14 mutations as cause for an inherited thrombocytopenia with excessive bleeding, outlining a fundamental role for SLFN14 in platelet formation and function.

Authors

Sarah J. Fletcher, Ben Johnson, Gillian C. Lowe, Danai Bem, Sian Drake, Marie Lordkipanidzé, Isabel Sánchez Guiú, Ban Dawood, José Rivera, Michael A. Simpson, Martina E. Daly, Jayashree Motwani, Peter W. Collins, Steve P. Watson, Neil V. Morgan, on behalf of the UK Genotyping and Phenotyping of Platelets study group

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Citations to this article (44)

Title and authors Publication Year
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Nucleic Acids Research 2025
Novel mutation SLFN14 T853fs associated with inherited macrothrombocytopenia
Xie H, Tang S, Shao J, Yang M, Tong H, Zhang L, Zhong M, Yu X, Bi L, Wang Y, Ou R, Ling C, Zhu L
Molecular Therapy. Nucleic Acids 2025
Signaling by Type I Interferons in Immune Cells: Disease Consequences
Zannikou M, Fish EN, Platanias LC
Cancers 2024
Novel SLFN14 mutation associated with macrothrombocytopenia in a patient with severe haemorrhagic syndrome
Polokhov D, Fedorova D, Ignatova A, Ponomarenko E, Rashevskaya E, Martyanov A, Podoplelova N, Aleksenko M, Mersiyanova I, Seregina E, Poletaev A, Truchina E, Raykina E, Plyasunova S, Novichkova G, Zharkov P, Panteleev M
Orphanet Journal of Rare Diseases 2023
SLFN14 ribosomopathy and platelet dysfunction
Lee K, Poncz M
Blood 2023
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Ribosome dysfunction underlies SLFN14-related thrombocytopenia
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E Kim, M Weitzman
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Heterozygous mutation SLFN14 K208N in mice mediates species-specific differences in platelet and erythroid lineage commitment
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V Palma-Barqueros, N Revilla, A Sánchez, AZ Cánovas, A Rodriguez-Alén, A Marín-Quílez, JR González-Porras, V Vicente, ML Lozano, JM Bastida, J Rivera
International journal of molecular sciences 2021
Severe Congenital Thrombocytopenia Characterized by Decreased Platelet Sialylation and Moderate Complement Activation Caused by Novel Compound Heterozygous Variants in GNE
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Haematologica 2020
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Schlafen 12 Interaction with SerpinB12 and Deubiquitylases Drives Human Enterocyte Differentiation
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Identification of Two Mutations in PCDHGA4 and SLFN14 Genes in an Atrial Septal Defect Family
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Use of Targeted High-Throughput Sequencing for Genetic Classification of Patients with Bleeding Diathesis and Suspected Platelet Disorder
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Hereditary thrombocytopenias: a growing list of disorders
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Application of whole-exome sequencing to direct the specific functional testing and diagnosis of rare inherited bleeding disorders in patients from the Öresund Region, Scandinavia
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Schlafen 14 (SLFN14) is a novel antiviral factor involved in the control of viral replication
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Whole exome sequencing identifies genetic variants in inherited thrombocytopenia with secondary qualitative function defects
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