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Titlebook: G Protein-Coupled Receptor Kinases; Vsevolod V. Gurevich,Eugenia V. Gurevich,John J.G. Book 2016 Springer Science+Business Media New York

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https://doi.org/10.1007/978-3-642-17267-0ed in numerous aspects of chemosensation, from regulation of specialized sensory structures to circadian control over chemosensory sensitivity. In this chapter, we discuss the functions of both in detail and, to avoid confusion with the mammalian gene names, we refer to the . genes as . and ., respectively.
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GRK Roles in ,ed in numerous aspects of chemosensation, from regulation of specialized sensory structures to circadian control over chemosensory sensitivity. In this chapter, we discuss the functions of both in detail and, to avoid confusion with the mammalian gene names, we refer to the . genes as . and ., respectively.
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1557-2153 range of studies from invertebrates to humans.Provides pracThis collection explores up-to-date descriptions of known G protein-coupled receptor kinase (GRK)-dependent mechanisms, both associated with G protein-coupled receptor (GPCR) functions and the receptor-independent. The chapters cover a wide
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,Leistungen der Unterstützungskasse,hese enzymes interact with membranes and how they might be regulated. This review highlights these advances and discusses why GRK4 subfamily members may be more predisposed than other GRKs to phosphorylate both active and inactive forms of GPCRs.
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Molecular Basis for Targeting, Inhibition, and Receptor Phosphorylation in the G Protein-Coupled Rechese enzymes interact with membranes and how they might be regulated. This review highlights these advances and discusses why GRK4 subfamily members may be more predisposed than other GRKs to phosphorylate both active and inactive forms of GPCRs.
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Book 2016-coupled receptor (GPCR) functions and the receptor-independent. The chapters cover a wide range of studies from invertebrates to humans, with sections of the volume covering GRK structure, mechanisms of activation, and interaction with GPCRs, GRKs in cell signaling, as well as physiological and pat
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https://doi.org/10.1007/978-3-322-83060-9phorylation (the “barcode”) result in distinct consequences in receptor function and signaling. Here, we review these recent findings and discuss the ramifications of this phenomenon in biology and medicine.
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Structure and Function of G-Protein-Coupled Receptor Kinases 1 and 7olecular basis of GRK activation and interactions with GPCR substrates, as well as the GRK interactions with cellular membranes and inhibitors. Here, we focused on retinal GRKs, or photopigment kinases, rhodopsin kinase (GRK1), and GRK7, in the context of major general advances in the GRK field.
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