Literature DB >> 18761725

Identification of a novel, actin-rich structure, the actin nodule, in the early stages of platelet spreading.

S D J Calaminus1, S Thomas, O J T McCarty, L M Machesky, S P Watson.   

Abstract

BACKGROUND: During platelet spreading, the actin cytoskeleton undergoes marked changes, forming filopodia, lamellipodia and stress fibres. In the present study, we report the identification of a novel actin-rich structure, termed an actin nodule, which appears prior to lamellipodia and stress fibre formation.
METHODS: Platelet spreading was monitored using human platelets and mouse GFP-actin platelets using real-time and end-point DIC, and fluorescent and electron microscopy (EM).
RESULTS: We identified a small, novel actin structure, the actin nodule, in the early stages of adhesion and spreading, which we hypothesize to be a precursor of lamellipodia and stress fibres. Nodule formation shows an inverse correlation to Rho kinase and myosin-II activity, is independent of PI3-kinase, but dependent on Src kinase activity. Actin nodules contain multiple proteins, including Arp2/3, Fyn, Rac, and beta1- and beta3- integrins, but not Src. EM analysis revealed that actin filaments extend in all directions from the nodules. Actin nodules are present on multiple matrices, including fibrinogen, laminin and VWF + botrocetin.
CONCLUSION: This work identifies a novel platelet actin structure, which we propose is a precursor to both lamellipodia and stress fibres and acts to drive platelet spreading.

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Year:  2008        PMID: 18761725     DOI: 10.1111/j.1538-7836.2008.03141.x

Source DB:  PubMed          Journal:  J Thromb Haemost        ISSN: 1538-7836            Impact factor:   5.824


  19 in total

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4.  Targeted gene inactivation reveals a functional role of calpain-1 in platelet spreading.

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8.  Tissue inducible Lifeact expression allows visualization of actin dynamics in vivo and ex vivo.

Authors:  Hannah Schachtner; Ang Li; David Stevenson; Simon D J Calaminus; Steve Thomas; Steve P Watson; Michael Sixt; Roland Wedlich-Soldner; Douglas Strathdee; Laura M Machesky
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Review 9.  Rho GTPase regulation of reactive oxygen species generation and signalling in platelet function and disease.

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10.  Fibrin activates GPVI in human and mouse platelets.

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