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Signaling through G protein coupled receptors

期刊

PLANT SIGNALING & BEHAVIOR
卷 4, 期 10, 页码 942-947

出版社

TAYLOR & FRANCIS INC
DOI: 10.4161/psb.4.10.9530

关键词

heterotrimeric G proteins; GPCRs; seven-transmembrane receptors; signal transduction; stress signaling

资金

  1. Department of Science and Technology (DST), Government of India

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Heterotrimeric G proteins (G alpha, G beta/G gamma subunits) constitute one of the most important components of cell signaling cascade. G Protein Coupled Receptors (GPCRs) perceive many extracellular signals and transduce them to heterotrimeric G proteins, which further transduce these signals intracellular to appropriate downstream effectors and thereby play an important role in various signaling pathways. GPCRs exist as a superfamily of integral membrane protein receptors that contain seven transmembrane a-helical regions, which bind to a wide range of ligands. Upon activation by a ligand, the GPCR undergoes a conformational change and then activate the G proteins by promoting the exchange of GDP/GTP associated with the G alpha subunit. This leads to the dissociation of G beta/G gamma. dimer from Ga. Both these moieties then become free to act upon their downstream effectors and thereby initiate unique intracellular signaling responses. After the signal propagation, the GTP of G alpha-GTP is hydrolyzed to GDP and G alpha becomes inactive (G alpha-GDP), which leads to its re-association with the G alpha/G gamma dimer to form the inactive heterotrimeric complex. The GPCR can also transduce the signal through G protein independent pathway. GPCRs also regulate cell cycle progression. Till to date thousands of GPCRs are known from animal kingdom with little homology among them, but only single GPCR has been identified in plant system. The Arabidopsis GPCR was reported to be cell cycle regulated and also involved in ABA and in stress signaling. Here I have described a general mechanism of signal transduction through GPCR/G proteins, structure of GPCRs, family of GPCRs and plant GPCR and its role.

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