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Impaired microtubule dynamics contribute to microthrombocytopenia in RhoB-deficient mice

Megakaryocytes are large cells in the bone marrow that give rise to blood platelets. Platelet biogenesis involves megakaryocyte maturation, the localization of the mature cells in close proximity to bone marrow sinusoids, and the formation of protrusions, which are elongated and shed within the circ...

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Autores principales: Englert, Maximilian, Aurbach, Katja, Becker, Isabelle C., Gerber, Annika, Heib, Tobias, Wackerbarth, Lou M., Kusch, Charly, Mott, Kristina, Araujo, Gabriel H. M., Baig, Ayesha A., Dütting, Sebastian, Knaus, Ulla G., Stigloher, Christian, Schulze, Harald, Nieswandt, Bernhard, Pleines, Irina, Nagy, Zoltan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Hematology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9631634/
https://www.ncbi.nlm.nih.gov/pubmed/35819450
http://dx.doi.org/10.1182/bloodadvances.2021006545
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author Englert, Maximilian
Aurbach, Katja
Becker, Isabelle C.
Gerber, Annika
Heib, Tobias
Wackerbarth, Lou M.
Kusch, Charly
Mott, Kristina
Araujo, Gabriel H. M.
Baig, Ayesha A.
Dütting, Sebastian
Knaus, Ulla G.
Stigloher, Christian
Schulze, Harald
Nieswandt, Bernhard
Pleines, Irina
Nagy, Zoltan
author_facet Englert, Maximilian
Aurbach, Katja
Becker, Isabelle C.
Gerber, Annika
Heib, Tobias
Wackerbarth, Lou M.
Kusch, Charly
Mott, Kristina
Araujo, Gabriel H. M.
Baig, Ayesha A.
Dütting, Sebastian
Knaus, Ulla G.
Stigloher, Christian
Schulze, Harald
Nieswandt, Bernhard
Pleines, Irina
Nagy, Zoltan
author_sort Englert, Maximilian
collection PubMed
description Megakaryocytes are large cells in the bone marrow that give rise to blood platelets. Platelet biogenesis involves megakaryocyte maturation, the localization of the mature cells in close proximity to bone marrow sinusoids, and the formation of protrusions, which are elongated and shed within the circulation. Rho GTPases play important roles in platelet biogenesis and function. RhoA-deficient mice display macrothrombocytopenia and a striking mislocalization of megakaryocytes into bone marrow sinusoids and a specific defect in G-protein signaling in platelets. However, the role of the closely related protein RhoB in megakaryocytes or platelets remains unknown. In this study, we show that, in contrast to RhoA deficiency, genetic ablation of RhoB in mice results in microthrombocytopenia (decreased platelet count and size). RhoB-deficient platelets displayed mild functional defects predominantly upon induction of the collagen/glycoprotein VI pathway. Megakaryocyte maturation and localization within the bone marrow, as well as actin dynamics, were not affected in the absence of RhoB. However, in vitro–generated proplatelets revealed pronouncedly impaired microtubule organization. Furthermore, RhoB-deficient platelets and megakaryocytes displayed selective defects in microtubule dynamics/stability, correlating with reduced levels of acetylated α-tubulin. Our findings imply that the reduction of this tubulin posttranslational modification results in impaired microtubule dynamics, which might contribute to microthrombocytopenia in RhoB-deficient mice. Importantly, we demonstrate that RhoA and RhoB are localized differently and have selective, nonredundant functions in the megakaryocyte lineage.
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spelling pubmed-96316342022-11-04 Impaired microtubule dynamics contribute to microthrombocytopenia in RhoB-deficient mice Englert, Maximilian Aurbach, Katja Becker, Isabelle C. Gerber, Annika Heib, Tobias Wackerbarth, Lou M. Kusch, Charly Mott, Kristina Araujo, Gabriel H. M. Baig, Ayesha A. Dütting, Sebastian Knaus, Ulla G. Stigloher, Christian Schulze, Harald Nieswandt, Bernhard Pleines, Irina Nagy, Zoltan Blood Adv Platelets and Thrombopoiesis Megakaryocytes are large cells in the bone marrow that give rise to blood platelets. Platelet biogenesis involves megakaryocyte maturation, the localization of the mature cells in close proximity to bone marrow sinusoids, and the formation of protrusions, which are elongated and shed within the circulation. Rho GTPases play important roles in platelet biogenesis and function. RhoA-deficient mice display macrothrombocytopenia and a striking mislocalization of megakaryocytes into bone marrow sinusoids and a specific defect in G-protein signaling in platelets. However, the role of the closely related protein RhoB in megakaryocytes or platelets remains unknown. In this study, we show that, in contrast to RhoA deficiency, genetic ablation of RhoB in mice results in microthrombocytopenia (decreased platelet count and size). RhoB-deficient platelets displayed mild functional defects predominantly upon induction of the collagen/glycoprotein VI pathway. Megakaryocyte maturation and localization within the bone marrow, as well as actin dynamics, were not affected in the absence of RhoB. However, in vitro–generated proplatelets revealed pronouncedly impaired microtubule organization. Furthermore, RhoB-deficient platelets and megakaryocytes displayed selective defects in microtubule dynamics/stability, correlating with reduced levels of acetylated α-tubulin. Our findings imply that the reduction of this tubulin posttranslational modification results in impaired microtubule dynamics, which might contribute to microthrombocytopenia in RhoB-deficient mice. Importantly, we demonstrate that RhoA and RhoB are localized differently and have selective, nonredundant functions in the megakaryocyte lineage. American Society of Hematology 2022-09-06 /pmc/articles/PMC9631634/ /pubmed/35819450 http://dx.doi.org/10.1182/bloodadvances.2021006545 Text en © 2022 by The American Society of Hematology. Licensed under Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0), permitting only noncommercial, nonderivative use with attribution. All other rights reserved.
spellingShingle Platelets and Thrombopoiesis
Englert, Maximilian
Aurbach, Katja
Becker, Isabelle C.
Gerber, Annika
Heib, Tobias
Wackerbarth, Lou M.
Kusch, Charly
Mott, Kristina
Araujo, Gabriel H. M.
Baig, Ayesha A.
Dütting, Sebastian
Knaus, Ulla G.
Stigloher, Christian
Schulze, Harald
Nieswandt, Bernhard
Pleines, Irina
Nagy, Zoltan
Impaired microtubule dynamics contribute to microthrombocytopenia in RhoB-deficient mice
title Impaired microtubule dynamics contribute to microthrombocytopenia in RhoB-deficient mice
title_full Impaired microtubule dynamics contribute to microthrombocytopenia in RhoB-deficient mice
title_fullStr Impaired microtubule dynamics contribute to microthrombocytopenia in RhoB-deficient mice
title_full_unstemmed Impaired microtubule dynamics contribute to microthrombocytopenia in RhoB-deficient mice
title_short Impaired microtubule dynamics contribute to microthrombocytopenia in RhoB-deficient mice
title_sort impaired microtubule dynamics contribute to microthrombocytopenia in rhob-deficient mice
topic Platelets and Thrombopoiesis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9631634/
https://www.ncbi.nlm.nih.gov/pubmed/35819450
http://dx.doi.org/10.1182/bloodadvances.2021006545
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