Inhibition of an inwardly rectifying K+ channel by G-protein α-subunits
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[1] B. Hille,et al. Ionic channels of excitable membranes , 2001 .
[2] Y. Jan,et al. Evidence that direct binding of Gβγ to the GIRK1 G protein-gated inwardly rectifying K+ channel is important for channel activation , 1995, Neuron.
[3] T. Katada,et al. Gβγ Directly Binds to the Carboxyl Terminus of the G Protein-Gated Muscarinic K+ Channel, GIRK1 , 1995 .
[4] M. Lazdunski,et al. Heterologous multimeric assembly is essential for K+ channel activity of neuronal and cardiac G-protein-activated inward rectifiers. , 1995, Biochemical and biophysical research communications.
[5] H. Lester,et al. The inward rectifier potassium channel family , 1995, Current Opinion in Neurobiology.
[6] D. Clapham,et al. The G-protein-gated atrial K+ channel IKAch is a heteromultimer of two inwardly rectifying K+-channel proteins , 1995, Nature.
[7] N. Davidson,et al. A G protein-gated K channel is activated via beta 2-adrenergic receptors and G beta gamma subunits in Xenopus oocytes , 1995, The Journal of general physiology.
[8] A. Gilman,et al. Purification of Recombinant G Proteins from Sf9 Cells by Hexahistidine Tagging of Associated Subunits , 1995, The Journal of Biological Chemistry.
[9] M. Ashford,et al. Cloning and functional expression of a rat heart KATP channel , 1994, Nature.
[10] Y. Jan,et al. Activation of the cloned muscarinic potassium channel by G protein βγ subunits , 1994, Nature.
[11] P. Casey,et al. Lipid modifications of G proteins. , 1994, Current opinion in cell biology.
[12] D. Clapham,et al. Recombinant G-protein βγ-subunits activate the muscarinic-gated atrial potassium channel , 1994, Nature.
[13] H. Lester,et al. Atrial G protein-activated K+ channel: expression cloning and molecular properties. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[14] David E. Clapham,et al. New roles for G-protein (βγ-dimers in transmembrane signalling , 1993, Nature.
[15] Yoshihiro Kubo,et al. Primary structure and functional expression of a rat G-protein-coupled muscarinic potassium channel , 1993, Nature.
[16] R. Taussig,et al. Inhibition of adenylyl cyclase by Gi alpha. , 1993, Science.
[17] M. Simon,et al. G protein beta gamma subunits synthesized in Sf9 cells. Functional characterization and the significance of prenylation of gamma. , 1992, The Journal of biological chemistry.
[18] T. Katada,et al. On the mechanism of G protein beta gamma subunit activation of the muscarinic K+ channel in guinea pig atrial cell membrane. Comparison with the ATP-sensitive K+ channel , 1992, The Journal of general physiology.
[19] Melvin I. Simon,et al. Diversity of G proteins in signal transduction , 1991, Science.
[20] J. Gordon,et al. Lipid modifications of G protein subunits. Myristoylation of Go alpha increases its affinity for beta gamma. , 1991, The Journal of biological chemistry.
[21] A. Brown,et al. A G protein directly regulates mammalian cardiac calcium channels. , 1987, Science.
[22] J T Williams,et al. Mu and delta receptors belong to a family of receptors that are coupled to potassium channels. , 1987, Proceedings of the National Academy of Sciences of the United States of America.
[23] D. Clapham,et al. The βγ subunits of GTP-binding proteins activate the muscarinic K+ channel in heart , 1987, Nature.
[24] B. Hille,et al. GTP-binding proteins couple cardiac muscarinic receptors to a K channel , 1985, Nature.
[25] G. Szabó,et al. Uncoupling of cardiac muscarinic and β-adrenergic receptors from ion channels by a guanine nucleotide analogue , 1985, Nature.
[26] J. Hescheler,et al. Regulation of cardiac L-type calcium current by phosphorylation and G proteins. , 1990, Annual review of physiology.
[27] A. Gilman,et al. G proteins: transducers of receptor-generated signals. , 1987, Annual review of biochemistry.