Title : Trifluoperazine inhibits insulin action on glucose metabolism in fat cells without affecting inhibition of lipolysis.

Pub. Date : 1984 Jan

PMID : 6582491






5 Functional Relationships(s)
Download
Sentence
Compound Name
Protein Name
Organism
1 One of the specific inhibitors of calmodulin action, trifluoperazine, blocked the stimulating action of insulin on 2-deoxyglucose uptake and glucose metabolism. Trifluoperazine CaM5 Triticum aestivum
2 One of the specific inhibitors of calmodulin action, trifluoperazine, blocked the stimulating action of insulin on 2-deoxyglucose uptake and glucose metabolism. Deoxyglucose CaM5 Triticum aestivum
3 One of the specific inhibitors of calmodulin action, trifluoperazine, blocked the stimulating action of insulin on 2-deoxyglucose uptake and glucose metabolism. Glucose CaM5 Triticum aestivum
4 Other less potent calmodulin inhibitors also inhibited glucose metabolism in fat cells but in a nonspecific manner. Glucose CaM5 Triticum aestivum
5 The possible involvement of calmodulin or another related Ca2+-dependent regulatory protein in the exocytic (fusion) reaction that recruits glucose-transport activity from storage sites to the plasma membranes is discussed. Glucose CaM5 Triticum aestivum