
RGS Protein Physiology and Pathophysiology by Rory A Fisher
RGS Protein Physiology and Pathophysiology describes the current, state-of-the-art research occurring in the laboratories of leaders in the RGS protein field that utilize genetic mouse models to interrogate the function of RGS proteins in vivo. Each chapter describes the elucidated role of a specific RGS protein or family of RGS proteins in normal physiology and/or disease with particular emphasis on how these discoveries inform healthcare and drug discovery. The work is a timely reference as drugs targeting G protein coupled receptors represent 40% of currently marketed therapeutics.- Foundation of Microfluidics Device Technology
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Design and Applications of Cell-Free Systems Part B
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Artificial Intelligence for Multi-omics Analysis Part A
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Autism
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Receptor Endocytosis and Signalling in Health and Disease - Part A
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Prions and Neurodegenerative Diseases
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Autophagy in Health and Disease
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CRISPR-Cas-Based Genome Editing for Treating Human Diseases - Part B
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The Microbiome in Health and Disease
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Dancing Protein Clouds: Intrinsically Disordered Proteins in Health and Disease, Part B
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Progress in Molecular Biology and Translational Science
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Receptor Endocytosis and Signalling in Health and Disease - Part B
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G Protein Signaling Pathways in Health and Disease
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Cancer Immunotherapy
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Reprogramming the Genome: CRISPR-Cas-based Human Disease Therapy
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Computational Approaches for Understanding Dynamical Systems: Protein Folding and Assembly
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Advances in Aggregation Induced Emission Materials in Biosensing and Imaging for Biomedical Applications - Part A
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Osmolytes and Intrinsically Disordered Proteins: From Functional Regulation to Disease Pathogenesis
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Curing Genetic Diseases through Genome Reprogramming
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Advances in CRISPR/Cas and Related Technologies
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Molecular and Cell Biology of Pain
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Reprogramming the Genome: Applications of CRISPR-Cas in non-mammalian systems part B
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Oligomerization in Health and Disease: From Enzymes to G Protein-Coupled Receptors
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Molecular Basis of Olfaction
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Molecular and Cellular Regulation of Adaptation to Exercise
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Trafficking of GPCRs
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The Molecular Basis of Viral Infection
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Molecular Biology of Eye Disease
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Dancing Protein Clouds: Intrinsically Disordered Proteins in the Norm and Pathology, Part C
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The Molecular Basis of Drug Addiction
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Regulatory T Cells in Health and Disease
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Growth Hormone in Health and Disease
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Micro/Nanofluidics and Lab-on-Chip Based Emerging Technologies for Biomedical and Translational Research Applications - Part A
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Dancing protein clouds: Intrinsically disordered proteins in health and disease, Part A
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Phage Therapy - Part B
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Human Microbiome in Health and Disease - Part B
Dr. Fisher is a 1983 graduate of Iowa State University (Ph.D.), who performed post-doctoral research at the University of Texas Health Science Center, San Antonio, before joining the faculty in Pharmacology at the University of Iowa in 1987. He was promoted to associate professor in 1993 and to professor in 2004. He has a secondary appointment in the Department of Internal Medicine and is a member of the Molecular and Cellular Biology interdisciplinary graduate program, the Holden Cancer Center, the Medical Scientist Training Program, and the Gene Therapy Center. His research focuses on the biology and signaling of RGS proteins and G proteins. He has served on numerous NIH study sections and his funding includes an R01 to study novel actions of RGS6 in tumor suppression and DNA damage signaling.
| SKU | Unavailable |
| ISBN 13 | 9780128029381 |
| ISBN 10 | 0128029382 |
| Title | RGS Protein Physiology and Pathophysiology |
| Author | Rory A Fisher |
| Series | Progress In Molecular Biology And Translational Science |
| Condition | Unavailable |
| Binding Type | Hardback |
| Publisher | Elsevier Science Publishing Co Inc |
| Year published | 2015-06-23 |
| Number of pages | 226 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |


































