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Citations to this article

Quantitative Assessment of Polymerized and Depolymerized Platelet Microtubules: CHANGES CAUSED BY AGGREGATING AGENTS
M. Steiner, Y. Ikeda
M. Steiner, Y. Ikeda
Published March 1, 1979
Citation Information: J Clin Invest. 1979;63(3):443-448. https://doi.org/10.1172/JCI109321.
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Quantitative Assessment of Polymerized and Depolymerized Platelet Microtubules: CHANGES CAUSED BY AGGREGATING AGENTS

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Abstract

The equilibrium between assembled and disassembled microtubules was studied in human platelets exposed to aggregating agents. Soluble and insoluble tubulin were “frozen” by addition of a glycerol-dimethyl sulfoxide-containing medium. The two pools were estimated by measuring the colchicine binding activities of total and polymerized tubulin. Resting platelets were found to contain an average of 56.2 μg tubulin/1 × 109 cells of which 56.7% was in polymerized form. Platelet aggregation induced by thrombin, ADP, epinephrine, or collagen produced a transient decrease in the pool of polymerized tubulin which was evident within 15 s after addition of the aggregating agent. A return to base-line values occurred within 1-4 min depending upon the specific aggregating agent used. Neither secretory release nor aggregation of platelets were found to be prerequisites for the temporary disturbance of the equilibrium between soluble and polymerized tubulin. With thrombin as the aggregating agent a clear threshold concentration could be demonstrated above with a dose-dependent dissociation response of microtubules was evident. We conclude that microtubules exist in a dynamic equilibrium between polymerized and depolymerized forms in human platelets, which is transiently disturbed by their interaction with aggregating agents.

Authors

M. Steiner, Y. Ikeda

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Total citations by year

Year: 2021 2018 2017 2015 2013 2010 2008 2007 2003 2001 2000 1994 1993 1991 1989 1988 1987 1986 1985 1984 1983 1982 1981 1980 Total
Citations: 1 2 1 1 1 1 1 1 1 1 1 1 1 2 4 4 2 2 3 3 5 2 2 5 48
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal. Not all publishers participate in CrossRef, so this information is not comprehensive. Additionally, data may not reflect the most current citations to this article, and the data may differ from citation information available from other sources (for example, Google Scholar, Web of Science, and Scopus).

Citations to this article (48)

Title and authors Publication Year
Platelet Shape Changes during Thrombus Formation: Role of Actin-Based Protrusions
M Bender, R Palankar
Hämostaseologie 2021
Method for the simulation of blood platelet shape and its evolution during activation
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PLoS computational biology 2018
The platelet shape change: biophysical basis and physiological consequences
AE Moskalensky, AL Litvinenko
Platelets 2018
Platelets in Thrombotic and Non-Thrombotic Disorders
P Gresele, NS Kleiman, JA Lopez, CP Page
Platelets in Thrombotic and Non-Thrombotic Disorders 2017
New explanations for old observations: marginal band coiling during platelet activation
K Sadoul
Journal of Thrombosis and Haemostasis 2015
Histone deacetylase 6-mediated deacetylation of  -tubulin coordinates cytoskeletal and signaling events during platelet activation
JE Aslan, KG Phillips, LD Healy, A Itakura, J Pang, OJ McCarty
American journal of physiology. Cell physiology 2013
This Month in APR
JY Lee
Archives of Pharmacal Research 2010
Visualization of microtubule growth in living platelets reveals a dynamic marginal band with multiple microtubules
S Patel-Hett, JL Richardson, H Schulze, K Drabek, NA Isaac, K Hoffmeister, RA Shivdasani, JC Bulinski, N Galjart, JH Hartwig, JE Italiano
Blood 2008
Dual role of tubulin-cytoskeleton in store-operated calcium entry in human platelets
PC Redondo, AG Harper, SO Sage, JA Rosado
Cellular Signalling 2007
Dynamic regulation of microtubule coils in ADP-induced platelet shape change by p160 ROCK (Rho-kinase)
BZ Paul, S Kim, C Dangelmaier, C Nagaswami, J Jin, JH Hartwig, JW Weisel, JL Daniel, SP Kunapuli
Platelets 2003
Single Site α-Tubulin Mutation Affects Astral Microtubules and Nuclear Positioning during Anaphase in Saccharomyces cerevisiae : Possible Role for Palmitoylation of α-Tubulin
JM Caron, LR Vega, J Fleming, R Bishop, F Solomon, JR McIntosh
Molecular biology of the cell 2001
Platelets
JN George
The Lancet 2000
Calcium signalling in platelets and other nonexcitable cells
P Sargeant, SO Sage
Pharmacology & Therapeutics 1994
Vitamin E: More than an antioxidant
M Steiner
Clinical Cardiology 1993
Involvement of the microtubular system in the endothelin-1 secretion from porcine aortic endothelial cells
K Kitazumi, M Mio, K Tasaka
Biochemical Pharmacology 1991
Megakaryocytes, Platelets, Macrophages, and Eosinophils
JR Harris
1991
Time resolved analysis of tubulin phosphorylation during platelet activation
S Berry, DD Dawicki, M Steiner
Biochemical and Biophysical Research Communications 1989
The aggregation of human platelet induced by ganodermic acid S
CN Wang, JC Chen, MS Shiao, CT Wang
Biochimica et Biophysica Acta (BBA) - Biomembranes 1989
1 Megakaryocyte and platelet morphology
T Hovig
Baillière's Clinical Haematology 1989
The role of microtubules in platelet secretory release
S Berry, DD Dawicki, KC Agarwal, M Steiner
Biochimica et Biophysica Acta (BBA) - Molecular Cell Research 1989
Real-time models of morphogenetic processes
DA Deranleau
Experientia 1988
Changes in both calcium pool size and morphology of human platelets incubated in various concentrations of calcium ion. Calcium-specific bleb formation on platelet-membrane surface
WJ Tsai, JC Chen, CT Wang
Biochimica et Biophysica Acta (BBA) - Biomembranes 1988
Effects of taxol and colchicine on platelet membrane properties
M Shiba, E Watanabe, S Sasakawa, Y Ikeda
Thrombosis Research 1988
Agonist-induced changes of platelet tubulin phosphorylation
S Berry, D Dawicki, M Steiner
Biochemical and Biophysical Research Communications 1988
Blood platelet shape change ABCs
DA Deranleau
Trends in Biochemical Sciences 1987
Immunogold staining of microtubules in resting and activated platelets
G Escolar, J Sauk, ML Bravo, M Krumwiede, JG White
American Journal of Hematology 1987
Stochastic response of human blood platelets to stimulation of shape changes and secretion
DA Deranleau, R Lüthy, EF Lüscher
Proceedings of the National Academy of Sciences 1986
Isolation of microtubule coils from platelets after exposure to aggregating agents
JG White, M Krumwiede, SM Burris, B Heagan
The American Journal of Pathology 1986
The Platelets
SM Stahl
The Platelets 1985
Platelet activation
MB Zucker, VT Nachmias
Arteriosclerosis (Dallas, Tex.) 1985
Calcium in Biological Systems
RP Rubin, GB Weiss, JW Putney
1985
Morphometry of platelet internal contraction
JG White, SM Burris
The American Journal of Pathology 1984
Platelet activation studied by fluorescence polarization
M Steiner, EF Lüscher
Biochimica et Biophysica Acta (BBA) - Molecular Cell Research 1984
Microtubules
P Dustin
1984
Membrane-bound tubulin in human platelets
M Steiner
Biochimica et Biophysica Acta (BBA) - Biomembranes 1983
Influence of a microtubule stabilizing agent on platelet structural physiology
JG White, GH Rao
The American Journal of Pathology 1983
Ultrastructural physiology of platelets with randomly dispersed rather than circumferential band microtubules
JG White
The American Journal of Pathology 1983
The Physiology of Hemostasis
D Ogston
1983
Isolation of microtubule protein from chicken erythrocytes and determination of the critical concentration for tubulin polymerization in vitro and in vivo
DB Murphy, KT Wallis
The Journal of biological chemistry 1983
125I-thrombin binds to clustered receptors on noncoated regions of mouse embryo cell surfaces
DH Carney, JS Bergmann
The Journal of Cell Biology 1982
The interaction of sodium nitroprusside with human endothelial cells and platelets: nitroprusside and prostacyclin synergistically inhibit platelet function
RI Levin, BB Weksler, EA Jaffe
Circulation 1982
Long-Term Storage of Functional Platelets in vitro
JG White
Vox Sanguinis 1981
The role of calcium in platelet microtubule assembly-disassembly
Y Ikeda, M Kikuchi, M Handa, Y Yoshii, K Toyama, M Yamamoto, K Watanabe, Y Ando
Thrombosis Research 1981
Ionophore-induced disassembly of blood platelet microtubules: Effect of cyclic AMP and indomethacin
DM Kenney, FC Chao
Journal of Cellular Physiology 1980
Colchicine-binding properties of the hepatic tubulin/microtubule system
RB Jennett, DJ Tuma, MF Sorrell
Archives of Biochemistry and Biophysics 1980
Fluorescence studies of platelet tubulin
M Steiner
Biochemistry 1980
Interaction of fibrinogen with its platelet receptor as part of a multistep reaction in ADP-induced platelet aggregation
GA Marguerie, TS Edgington, EF Plow
The Journal of biological chemistry 1980
Induction of the fibrinogen receptor on human platelets by epinephrine and the combination of epinephrine and ADP
EF Plow, GA Marguerie
The Journal of biological chemistry 1980

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