Panteleev M.A., Sveshnikova A.N. 2014. Platelets and hemostasis. Oncohematologia (Rus.). 9 (2), 65–73.
Sveshnikova A., Stepanyan M., Panteleev M., Sveshnikova A., Stepanyan M., Panteleev M. 2021. Platelet functional responses and signalling: The molecular relationship. Part 1: Responses. Systems Biology and Physiology Reports. 1 (1), 20.
Bergmeier W., Stefanini L. 2009. Novel molecules in calcium signaling in platelets. J. Thromb. Haemostasis. 7, 187–190.
Martyanov A., Panteleev M. 2021. Platelet functional responses and signalling: The molecular relationship. Part 2: Receptors. SBPR. 1 (3), 13–30.
Gear A.R. 1994. Platelet adhesion, shape change, and aggregation: Rapid initiation and signal transduction events. Can. J. Physiol. Pharmacol. 72 (3), 285–294.
Article CAS PubMed Google Scholar
Kaneva V.N., Martyanov A.A., Morozova D.S., Panteleev M.A., Sveshnikova A.N. 2019. Platelet Integrin αIIbβ3: Mechanisms of activation and clustering; Involvement into the formation of the thrombus heterogeneous structure. Biochem. (Moscow) Suppl. Series A, Membr. Cell Biol. 13 (2), 97–110.
Podoplelova N.A., Sveshnikova A.N., Kotova Y.N., Eckly A., Receveur N., Nechipurenko D.Yu., Obydennyi S.I., Kireev I.I., Gachet C., Ataullakhanov F.I., Mangin P.H., Panteleev M.A. 2016. Coagulation factors bound to procoagulant platelets concentrate in cap structures to promote clotting. Blood. 128 (13), 1745–1755.
Article CAS PubMed Google Scholar
Bryckaert M., Rosa J.-P., Denis C.V., Lenting P.J. 2015. Of von Willebrand factor and platelets. Cell. Mol. Life Sciences, CMLS. 72 (2), 307–326.
Article CAS PubMed Google Scholar
Poulter N.S., Pollitt A.Y., Owen D.M., Gardiner E.E., Andrews R.K., Shimizu H., Ishikawa D., Bihan D., Farndale R.W., Moroi M., Watson S.P., Jung S.M. 2017. Clustering of glycoprotein VI (GPVI) dimers upon adhesion to collagen as a mechanism to regulate GPVI signaling in platelets. J. Thromb. Haemost. 15 (3), 549–564.
Article CAS PubMed PubMed Central Google Scholar
Stepanyan M.G., Filkova A.A., Dasgupta A.G., Martyanov A.A., Sveshnikova A.N. 2021. Platelet activation through GPVI receptor: Variability of the response. Biochem. (Moscow) Suppl. Series A, Membr. Cell Biol. 15 (1), 73–81.
Johnson E.N., Brass L.F., Funk C.D. 1998. Increased platelet sensitivity to ADP in mice lacking platelet-type 12-lipoxygenase. Proc. Natl. Acad. Sci. USA. 95 (6), 3100–3105.
Article CAS PubMed PubMed Central Google Scholar
Pollitt A.Y., Poulter N.S., Gitz E., Navarro-Nuñez L., Wang Y.-J., Hughes C.E., Thomas S.G., Nieswandt B., Douglas M.R., Owen D.M., Jackson D.G., Dustin M.L., Watson S.P. 2014. Syk and Src family kinases regulate C-type lectin receptor 2 (CLEC-2)-mediated clustering of podoplanin and platelet adhesion to lymphatic endothelial cells. J. Biol. Chem. 289 (52), 35695–35710.
Article CAS PubMed PubMed Central Google Scholar
Garzon Dasgupta A.K., Martyanov A.A., Filkova A.A., Panteleev M.A., Sveshnikova A.N. 2020. Development of a simple kinetic mathematical model of aggregation of particles or clustering of receptors. Life. 10 (6), 97.
Article PubMed PubMed Central Google Scholar
Watson S.P., Herbert J.M.J., Pollitt A.Y. 2010. GPVI and CLEC-2 in hemostasis and vascular integrity. J. Thromb. Haemost. 8 (7), 1456–1467.
Article CAS PubMed Google Scholar
Rayes J., Watson S.P., Nieswandt B. 2019. Functional significance of the platelet immune receptors GPVI and CLEC-2. J. Clin. Invest. 129 (1), 12–23.
Article PubMed PubMed Central Google Scholar
Balabin F.A., Sveshnikova A.N. 2016. Computational biology analysis of platelet signaling reveals roles of feedbacks through phospholipase C and inositol 1,4,5-trisphosphate 3-kinase in controlling amplitude and duration of calcium oscillations. Math. Biosci. 276, 67–74.
Article CAS PubMed Google Scholar
Sveshnikova A.N., Balatskiy A.V., Demianova A.S., Shepelyuk T.O., Shakhidzhanov S.S., Balatskaya M.N., Pichugin A.V., Ataullakhanov F.I., Panteleev M.A. 2016. Systems biology insights into the meaning of the platelet’s dual-receptor thrombin signaling. J. Thromb. Haemost. 14 (10), 2045–2057.
Article CAS PubMed Google Scholar
Jackson S.P., Schoenwaelder S.M. 2010. Procoagulant platelets: Are they necrotic? Blood. 116 (12), 2011–2018.
Article CAS PubMed Google Scholar
Podoplelova N.A., Nechipurenko D.Y., Ignatova A.A., Sveshnikova A.N., Panteleev M.A. 2021. Procoagulant platelets: Mechanisms of generation and action. Hämostaseologie. 41 (02), 146–153.
Article CAS PubMed Google Scholar
Martyanov A.A., Balabin F.A., Dunster J.L., Panteleev M.A., Gibbins J.M., Sveshnikova A.N. 2020. Control of platelet CLEC-2-mediated activation by receptor clustering and tyrosine kinase signaling. Biophys. J. 118 (11), 2641–2655.
Article CAS PubMed PubMed Central Google Scholar
Moroi M., Jung S.M. 2004. Platelet glycoprotein VI: Its structure and function. Thromb. Res. 114 (4), 221–233.
Article CAS PubMed Google Scholar
Furihata K., Clemetson K.J., Deguchi H., Kunicki T.J. 2001. Variation in human platelet glycoprotein VI content modulates glycoprotein VI-specific prothrombinase activity. Arterioscler. Thromb. Vasc. Biol. 21 (11), 1857–1863.
Article CAS PubMed Google Scholar
Best D., Senis Y.A., Jarvis G.E., Eagleton H.J., Roberts D.J., Saito T., Jung S.M., Moroi M., Harrison P., Green F.R., Watson S.P. 2003. GPVI levels in platelets: Relationship to platelet function at high shear. Blood. 102 (8), 2811–2818.
Article CAS PubMed Google Scholar
Hoops S., Sahle S., Gauges R., Lee C., Pahle J., Simus N., Singhal M., Xu L., Mendes P., Kummer U. 2006. COPASI – a COmplex PAthway SImulator. Bioinformatics. 22 (24), 3067–3074.
Article CAS PubMed Google Scholar
Petzold L., Hindmarsh A. 1997. LSODA (Livermore solver of ordinary differential equations). Computing and Mathematics Research Division, Lawrence Livermore National Laboratory, Livermore, CA, 24.
Burkhart J.M., Vaudel M., Gambaryan S., Radau S., Walter U., Martens L., Geiger J., Sickmann A., Zahedi R.P. 2012. The first comprehensive and quantitative analysis of human platelet protein composition allows the comparative analysis of structural and functional pathways. Blood. 120 (15), e73–e82.
Article CAS PubMed Google Scholar
Back T. 1996. Evolutionary algorithms in theory and practice: Evolution strategies, evolutionary programming, genetic algorithms. Oxford: Oxford University Press.
Saltelli A., Ratto M., Tarantola S., Campolongo F. 2005. Sensitivity analysis for chemical models. Chem. Rev. 105 (7), 2811–2828.
Article CAS PubMed Google Scholar
Martyanov A.A., Balabin F.A., Mayorov A.S., Shamova E.V., Panteleev M.A., Sveshnikova A.N. 2018. Computer simulation of intracellular signalling during activation of blood platelets by fucoidan. Biol. Membrany (Rus.). 35 (5), 364–375.
Dunster J.L., Mazet F., Fry M.J., Gibbins J.M., Tindall M.J. 2015. Regulation of early steps of GPVI signal transduction by phosphatases: A systems biology approach. PLoS Comput. Biol. 11 (11), e1004589.
Article PubMed PubMed Central Google Scholar
Rayes J., Watson S.P., Nieswandt B. 2019. Functional significance of the platelet immune receptors GPVI and CLEC-2. J. Clin. Invest. 129 (1), 12–23.
Article PubMed PubMed Central Google Scholar
Senis Y.A., Mazharian A., Mori J. 2014. Src family kinases: At the forefront of platelet activation. Blood. 124 (13), 2013–2024.
Article CAS PubMed PubMed Central Google Scholar
Séverin S., Pollitt A.Y., Navarro-Nuñez L., Nash C.A., Mourão-Sá D., Eble J.A., Senis Y.A., Watson S.P. 2011. Syk-dependent phosphorylation of CLEC-2. J. Biol. Chem. 286 (6), 4107–4116.
Burkhart J.M., Vaudel M., Gambaryan S., Radau S., Walter U., Martens L., Geiger J., Sickmann A., Zahedi R.P. 2012. The first comprehensive and quantitative analysis of human platelet protein composition allows the comparative analysis of structural and functional pathways. Blood. 120 (15), e73–e82.
Article CAS PubMed Google Scholar
Quinter P.G., Quinton T.M., Dangelmaier C.A., Kunapuli S.P., Daniel J.L. 2005. Role of lipid rafts in GPVI agonist-induced platelet signaling. Blood. 106 (11), 3576.
Miura Y., Takahashi T., Jung S.M., Moroi M. 2002. Analysis of the interaction of platelet collagen receptor glycoprotein VI (GPVI) with collagen. A dimeric form of GPVI, but not the monomeric form, shows affinity to fibrous collagen. J. Biol. Chem. 277 (48), 46197–46204.
Article CAS PubMed Google Scholar
Kemble D.J., Wang Y.H., Sun G. 2006. Bacterial expression and characterization of catalytic loop mutants of Src protein tyrosine kinase. Biochemistry. 45 (49), 14749–14754.
Article CAS PubMed Google Scholar
Bradshaw J.M. 2010. The Src, Syk, and Tec family kinases: Distinct types of molecular switches. Cell. Signal. 22 (8), 1175–1184.
Comments (0)