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Functional genomics in zebrafish permits rapid characterization of novel platelet membrane proteins

In this study, we demonstrate the suitability of the vertebrate Danio rerio (zebrafish) for functional screening of novel platelet genes in vivo by reverse genetics. Comparative transcript analysis of platelets and their precursor cell, the megakaryocyte, together with nucleated blood cell elements,...

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Autores principales: O'Connor, Marie N., Salles, Isabelle I., Cvejic, Ana, Watkins, Nicholas A., Walker, Adam, Garner, Stephen F., Jones, Chris I., Macaulay, Iain C., Steward, Michael, Zwaginga, Jaap-Jan, Bray, Sarah L., Dudbridge, Frank, de Bono, Bernard, Goodall, Alison H., Deckmyn, Hans, Stemple, Derek L., Ouwehand, Willem H.
Formato: Texto
Lenguaje:English
Publicado: American Society of Hematology 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2680375/
https://www.ncbi.nlm.nih.gov/pubmed/19109564
http://dx.doi.org/10.1182/blood-2008-06-162693
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author O'Connor, Marie N.
Salles, Isabelle I.
Cvejic, Ana
Watkins, Nicholas A.
Walker, Adam
Garner, Stephen F.
Jones, Chris I.
Macaulay, Iain C.
Steward, Michael
Zwaginga, Jaap-Jan
Bray, Sarah L.
Dudbridge, Frank
de Bono, Bernard
Goodall, Alison H.
Deckmyn, Hans
Stemple, Derek L.
Ouwehand, Willem H.
author_facet O'Connor, Marie N.
Salles, Isabelle I.
Cvejic, Ana
Watkins, Nicholas A.
Walker, Adam
Garner, Stephen F.
Jones, Chris I.
Macaulay, Iain C.
Steward, Michael
Zwaginga, Jaap-Jan
Bray, Sarah L.
Dudbridge, Frank
de Bono, Bernard
Goodall, Alison H.
Deckmyn, Hans
Stemple, Derek L.
Ouwehand, Willem H.
author_sort O'Connor, Marie N.
collection PubMed
description In this study, we demonstrate the suitability of the vertebrate Danio rerio (zebrafish) for functional screening of novel platelet genes in vivo by reverse genetics. Comparative transcript analysis of platelets and their precursor cell, the megakaryocyte, together with nucleated blood cell elements, endothelial cells, and erythroblasts, identified novel platelet membrane proteins with hitherto unknown roles in thrombus formation. We determined the phenotype induced by antisense morpholino oligonucleotide (MO)–based knockdown of 5 of these genes in a laser-induced arterial thrombosis model. To validate the model, the genes for platelet glycoprotein (GP) IIb and the coagulation protein factor VIII were targeted. MO-injected fish showed normal thrombus initiation but severely impaired thrombus growth, consistent with the mouse knockout phenotypes, and concomitant knockdown of both resulted in spontaneous bleeding. Knockdown of 4 of the 5 novel platelet proteins altered arterial thrombosis, as demonstrated by modified kinetics of thrombus initiation and/or development. We identified a putative role for BAMBI and LRRC32 in promotion and DCBLD2 and ESAM in inhibition of thrombus formation. We conclude that phenotypic analysis of MO-injected zebrafish is a fast and powerful method for initial screening of novel platelet proteins for function in thrombosis.
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spelling pubmed-26803752009-05-19 Functional genomics in zebrafish permits rapid characterization of novel platelet membrane proteins O'Connor, Marie N. Salles, Isabelle I. Cvejic, Ana Watkins, Nicholas A. Walker, Adam Garner, Stephen F. Jones, Chris I. Macaulay, Iain C. Steward, Michael Zwaginga, Jaap-Jan Bray, Sarah L. Dudbridge, Frank de Bono, Bernard Goodall, Alison H. Deckmyn, Hans Stemple, Derek L. Ouwehand, Willem H. Blood Platelets and Thrombopoiesis In this study, we demonstrate the suitability of the vertebrate Danio rerio (zebrafish) for functional screening of novel platelet genes in vivo by reverse genetics. Comparative transcript analysis of platelets and their precursor cell, the megakaryocyte, together with nucleated blood cell elements, endothelial cells, and erythroblasts, identified novel platelet membrane proteins with hitherto unknown roles in thrombus formation. We determined the phenotype induced by antisense morpholino oligonucleotide (MO)–based knockdown of 5 of these genes in a laser-induced arterial thrombosis model. To validate the model, the genes for platelet glycoprotein (GP) IIb and the coagulation protein factor VIII were targeted. MO-injected fish showed normal thrombus initiation but severely impaired thrombus growth, consistent with the mouse knockout phenotypes, and concomitant knockdown of both resulted in spontaneous bleeding. Knockdown of 4 of the 5 novel platelet proteins altered arterial thrombosis, as demonstrated by modified kinetics of thrombus initiation and/or development. We identified a putative role for BAMBI and LRRC32 in promotion and DCBLD2 and ESAM in inhibition of thrombus formation. We conclude that phenotypic analysis of MO-injected zebrafish is a fast and powerful method for initial screening of novel platelet proteins for function in thrombosis. American Society of Hematology 2009-05-07 /pmc/articles/PMC2680375/ /pubmed/19109564 http://dx.doi.org/10.1182/blood-2008-06-162693 Text en © 2009 by The American Society of Hematology
spellingShingle Platelets and Thrombopoiesis
O'Connor, Marie N.
Salles, Isabelle I.
Cvejic, Ana
Watkins, Nicholas A.
Walker, Adam
Garner, Stephen F.
Jones, Chris I.
Macaulay, Iain C.
Steward, Michael
Zwaginga, Jaap-Jan
Bray, Sarah L.
Dudbridge, Frank
de Bono, Bernard
Goodall, Alison H.
Deckmyn, Hans
Stemple, Derek L.
Ouwehand, Willem H.
Functional genomics in zebrafish permits rapid characterization of novel platelet membrane proteins
title Functional genomics in zebrafish permits rapid characterization of novel platelet membrane proteins
title_full Functional genomics in zebrafish permits rapid characterization of novel platelet membrane proteins
title_fullStr Functional genomics in zebrafish permits rapid characterization of novel platelet membrane proteins
title_full_unstemmed Functional genomics in zebrafish permits rapid characterization of novel platelet membrane proteins
title_short Functional genomics in zebrafish permits rapid characterization of novel platelet membrane proteins
title_sort functional genomics in zebrafish permits rapid characterization of novel platelet membrane proteins
topic Platelets and Thrombopoiesis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2680375/
https://www.ncbi.nlm.nih.gov/pubmed/19109564
http://dx.doi.org/10.1182/blood-2008-06-162693
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