Calpain-mediated regulation of platelet signaling pathways.

Curr Opin Hematol

Department of Pharmacology, University of Illinois College of Medicine, Chicago, IL 60612, USA.

Published: May 2007

AI Article Synopsis

  • Understanding the function of calpains in platelets is crucial for insights into platelet aggregation, spreading, and secretion pathways.
  • Recent studies using calpain-1 knockout mice show that calpain-1 is vital for proper platelet aggregation and clot retraction, with low tyrosine phosphorylation linked to these defects.
  • This review highlights new findings on calpain-1's role in platelets, emphasizing its significance in aggregation and clotting processes, as current research primarily utilizes calpain-1 null mice for further investigation.

Article Abstract

Purpose Of Review: There is considerable interest in understanding the function and mechanism of calpains in platelet aggregation, spreading, and granular secretion pathways. Recent insights from the calpain-1 knockout platelets suggest a pivotal role of these cysteine proteases in the regulation of outside-in signaling, aggregation, and clot retraction.

Recent Findings: The calpain-1 knockout mouse provided direct evidence for the role of calpain-1 in platelet aggregation and clot retraction. Reduced tyrosine phosphorylation of platelet proteins correlated with reduced platelet aggregation and clot retraction. Future investigations of the mechanism of platelet defects in calpain-1 null mice may unveil the physiological functions of this important and elusive protease in mammalian cells.

Summary: This review focuses on the role of calpains in platelets with a particular emphasis on recent findings in calpain-1 null platelets. Previous studies used synthetic inhibitors to study the role of calpains in platelet function yielding useful information about the identification of calpain substrates. The development of calpain-1 null mice demonstrated that calpain-1 plays an important function in the regulation of platelet aggregation and clot retraction. Since the combined deletion of calpain-1 and calpain-2 genes results in embryonic lethality, the calpain-1 null mouse remains the only experimental model available to study the physiological role of calpains in mammalian cells.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3959858PMC
http://dx.doi.org/10.1097/MOH.0b013e3280ef68f8DOI Listing

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