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Mutations in tropomyosin 4 underlie a rare form of human macrothrombocytopenia

Platelets are anuclear cells that are essential for blood clotting. They are produced by large polyploid precursor cells called megakaryocytes. Previous genome-wide association studies in nearly 70,000 individuals indicated that single nucleotide variants (SNVs) in the gene encoding the actin cytosk...

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Autores principales: Pleines, Irina, Woods, Joanne, Chappaz, Stephane, Kew, Verity, Foad, Nicola, Ballester-Beltrán, José, Aurbach, Katja, Lincetto, Chiara, Lane, Rachael M., Schevzov, Galina, Alexander, Warren S., Hilton, Douglas J., Astle, William J., Downes, Kate, Nurden, Paquita, Westbury, Sarah K., Mumford, Andrew D., Obaji, Samya G., Collins, Peter W., Delerue, Fabien, Ittner, Lars M., Bryce, Nicole S., Holliday, Mira, Lucas, Christine A., Hardeman, Edna C., Ouwehand, Willem H., Gunning, Peter W., Turro, Ernest, Tijssen, Marloes R., Kile, Benjamin T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5330761/
https://www.ncbi.nlm.nih.gov/pubmed/28134622
http://dx.doi.org/10.1172/JCI86154
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author Pleines, Irina
Woods, Joanne
Chappaz, Stephane
Kew, Verity
Foad, Nicola
Ballester-Beltrán, José
Aurbach, Katja
Lincetto, Chiara
Lane, Rachael M.
Schevzov, Galina
Alexander, Warren S.
Hilton, Douglas J.
Astle, William J.
Downes, Kate
Nurden, Paquita
Westbury, Sarah K.
Mumford, Andrew D.
Obaji, Samya G.
Collins, Peter W.
Delerue, Fabien
Ittner, Lars M.
Bryce, Nicole S.
Holliday, Mira
Lucas, Christine A.
Hardeman, Edna C.
Ouwehand, Willem H.
Gunning, Peter W.
Turro, Ernest
Tijssen, Marloes R.
Kile, Benjamin T.
author_facet Pleines, Irina
Woods, Joanne
Chappaz, Stephane
Kew, Verity
Foad, Nicola
Ballester-Beltrán, José
Aurbach, Katja
Lincetto, Chiara
Lane, Rachael M.
Schevzov, Galina
Alexander, Warren S.
Hilton, Douglas J.
Astle, William J.
Downes, Kate
Nurden, Paquita
Westbury, Sarah K.
Mumford, Andrew D.
Obaji, Samya G.
Collins, Peter W.
Delerue, Fabien
Ittner, Lars M.
Bryce, Nicole S.
Holliday, Mira
Lucas, Christine A.
Hardeman, Edna C.
Ouwehand, Willem H.
Gunning, Peter W.
Turro, Ernest
Tijssen, Marloes R.
Kile, Benjamin T.
author_sort Pleines, Irina
collection PubMed
description Platelets are anuclear cells that are essential for blood clotting. They are produced by large polyploid precursor cells called megakaryocytes. Previous genome-wide association studies in nearly 70,000 individuals indicated that single nucleotide variants (SNVs) in the gene encoding the actin cytoskeletal regulator tropomyosin 4 (TPM4) exert an effect on the count and volume of platelets. Platelet number and volume are independent risk factors for heart attack and stroke. Here, we have identified 2 unrelated families in the BRIDGE Bleeding and Platelet Disorders (BPD) collection who carry a TPM4 variant that causes truncation of the TPM4 protein and segregates with macrothrombocytopenia, a disorder characterized by low platelet count. N-Ethyl-N-nitrosourea–induced (ENU-induced) missense mutations in Tpm4 or targeted inactivation of the Tpm4 locus led to gene dosage–dependent macrothrombocytopenia in mice. All other blood cell counts in Tpm4-deficient mice were normal. Insufficient TPM4 expression in human and mouse megakaryocytes resulted in a defect in the terminal stages of platelet production and had a mild effect on platelet function. Together, our findings demonstrate a nonredundant role for TPM4 in platelet biogenesis in humans and mice and reveal that truncating variants in TPM4 cause a previously undescribed dominant Mendelian platelet disorder.
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spelling pubmed-53307612017-03-08 Mutations in tropomyosin 4 underlie a rare form of human macrothrombocytopenia Pleines, Irina Woods, Joanne Chappaz, Stephane Kew, Verity Foad, Nicola Ballester-Beltrán, José Aurbach, Katja Lincetto, Chiara Lane, Rachael M. Schevzov, Galina Alexander, Warren S. Hilton, Douglas J. Astle, William J. Downes, Kate Nurden, Paquita Westbury, Sarah K. Mumford, Andrew D. Obaji, Samya G. Collins, Peter W. Delerue, Fabien Ittner, Lars M. Bryce, Nicole S. Holliday, Mira Lucas, Christine A. Hardeman, Edna C. Ouwehand, Willem H. Gunning, Peter W. Turro, Ernest Tijssen, Marloes R. Kile, Benjamin T. J Clin Invest Research Article Platelets are anuclear cells that are essential for blood clotting. They are produced by large polyploid precursor cells called megakaryocytes. Previous genome-wide association studies in nearly 70,000 individuals indicated that single nucleotide variants (SNVs) in the gene encoding the actin cytoskeletal regulator tropomyosin 4 (TPM4) exert an effect on the count and volume of platelets. Platelet number and volume are independent risk factors for heart attack and stroke. Here, we have identified 2 unrelated families in the BRIDGE Bleeding and Platelet Disorders (BPD) collection who carry a TPM4 variant that causes truncation of the TPM4 protein and segregates with macrothrombocytopenia, a disorder characterized by low platelet count. N-Ethyl-N-nitrosourea–induced (ENU-induced) missense mutations in Tpm4 or targeted inactivation of the Tpm4 locus led to gene dosage–dependent macrothrombocytopenia in mice. All other blood cell counts in Tpm4-deficient mice were normal. Insufficient TPM4 expression in human and mouse megakaryocytes resulted in a defect in the terminal stages of platelet production and had a mild effect on platelet function. Together, our findings demonstrate a nonredundant role for TPM4 in platelet biogenesis in humans and mice and reveal that truncating variants in TPM4 cause a previously undescribed dominant Mendelian platelet disorder. American Society for Clinical Investigation 2017-01-30 2017-03-01 /pmc/articles/PMC5330761/ /pubmed/28134622 http://dx.doi.org/10.1172/JCI86154 Text en Copyright © 2017 Pleines et al. http://creativecommons.org/licenses/by/4.0/ This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Research Article
Pleines, Irina
Woods, Joanne
Chappaz, Stephane
Kew, Verity
Foad, Nicola
Ballester-Beltrán, José
Aurbach, Katja
Lincetto, Chiara
Lane, Rachael M.
Schevzov, Galina
Alexander, Warren S.
Hilton, Douglas J.
Astle, William J.
Downes, Kate
Nurden, Paquita
Westbury, Sarah K.
Mumford, Andrew D.
Obaji, Samya G.
Collins, Peter W.
Delerue, Fabien
Ittner, Lars M.
Bryce, Nicole S.
Holliday, Mira
Lucas, Christine A.
Hardeman, Edna C.
Ouwehand, Willem H.
Gunning, Peter W.
Turro, Ernest
Tijssen, Marloes R.
Kile, Benjamin T.
Mutations in tropomyosin 4 underlie a rare form of human macrothrombocytopenia
title Mutations in tropomyosin 4 underlie a rare form of human macrothrombocytopenia
title_full Mutations in tropomyosin 4 underlie a rare form of human macrothrombocytopenia
title_fullStr Mutations in tropomyosin 4 underlie a rare form of human macrothrombocytopenia
title_full_unstemmed Mutations in tropomyosin 4 underlie a rare form of human macrothrombocytopenia
title_short Mutations in tropomyosin 4 underlie a rare form of human macrothrombocytopenia
title_sort mutations in tropomyosin 4 underlie a rare form of human macrothrombocytopenia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5330761/
https://www.ncbi.nlm.nih.gov/pubmed/28134622
http://dx.doi.org/10.1172/JCI86154
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