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The Biochemical Journal|March 23, 2000
Farnesylcysteine analogues inhibit store-regulated Ca2+ entry in human platelets: evidence for involvement of small GTP-binding proteins and actin cytoskeletonJ A Rosado, S O SageThe Journal of Physiology|November 18, 2000
Protein kinase C activates non-capacitative calcium entry in human plateletsJ A Rosado, S O SageThe Biochemical Journal|September 6, 2000
Coupling between inositol 1,4,5-trisphosphate receptors and human transient receptor potential channel 1 when intracellular Ca2+ stores are depletedJ A Rosado, S O SageThe Journal of Biological Chemistry|March 29, 2000
Phosphoinositides are required for store-mediated calcium entry in human plateletsJ A Rosado, S O SageThe Biochemical Journal|May 5, 2001
Activation of store-mediated calcium entry by secretion-like coupling between the inositol 1,4,5-trisphosphate receptor type II and human transient receptor potential (hTrp1) channels in human plateletsJ A Rosado, S O SageThe Journal of Biological Chemistry|April 5, 2000
Regulation of plasma membrane Ca2+-ATPase by small GTPases and phosphoinositides in human plateletsJ A Rosado, S O SageThe Journal of Physiology|July 15, 2000
The actin cytoskeleton in store-mediated calcium entryJ A Rosado, S O SageTrends in Cardiovascular Medicine|May 23, 2001
A role for the actin cytoskeleton in the initiation and maintenance of store-mediated calcium entry in human plateletsJ A Rosado, S O SageThe Journal of Biological Chemistry|March 30, 2001
Role of the ERK pathway in the activation of store-mediated calcium entry in human plateletsJ A Rosado, S O SageThe Biochemical Journal|October 12, 2000
Tyrosine kinases activate store-mediated Ca2+ entry in human platelets through the reorganization of the actin cytoskeletonJ A Rosado, D Graves, S O SagePageof 14