Sigma proteins : evolution of the concept of sigma receptors / Felix J. Kim, Gavril W. Pasternak, editors.
Contributor(s): Kim, Felix J.,, editor literario | Pasternak, Gavril W.,, editor literario
Material type:
E-bookSeries: (Handbook of experimental pharmacology, 1865-0325 ; volume 244).Publisher: Cham, Switzerland : Springer International Publishing, 2017Copyright date: 2017Description: 1 recurso en línea (viii, 330 páginas) : ilustraciones (algunas a color).ISBN: 3319658530; 9783319658537.Subject: Medicamentos -- Efectos fisiológicos
| Item type | Current library | Collection | Call number | Status | Date due | Barcode | Item holds | |
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LIBRO-E NO PRÉSTAMO
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Madrid Digital Acceso Electrónico (UEM) | Ciencias de la Salud | RM301.41 2017 EB (Browse shelf(Opens below)) | Acceso electrónico | eBook.20024192 |
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| RM301.37 2022 EB Cell Therapy : cGMP Facilities and Manufacturing | RM301.4 D376 2014 EB Mucosal delivery of biopharmaceuticals : biology, challenges and strategies | RM301.4 R673 2016 EB Algae-Based Biopharmaceuticals | RM301.41 2017 EB Sigma proteins : evolution of the concept of sigma receptors | RM301.41 C666 2006 EB Insights into Receptor Function and New Drug Development Targets | RM301.41 S546 2017 EB Sigma receptors : their role in disease and as therapeutic targets | RM301.45 .K36 2017 EB Bioequivalence requirements in various global jurisdictions |
Springer Biomedical and Life Sciences eBooks 2017 English+International
Incluye referencias bibliográficas
Introduction to sigma proteins: evolution of the concept of sigma receptors / Felix J. Kim -- Structural insights into sigma1 function / Andrew Kruse -- 3d homology model of sigma1 receptor / Erik Laurini, Domenico Marson, Maurizio Fermeglia, Sabrina Pricl -- Medicinal chemistry of [sigma]1 receptor ligands: pharmacophore models, synthesis, structure affinity relationships, and pharmacological applications / Frauke Weber, Bernhard Wünsch -- Sigma-1 ([sigma]1) receptor in memory and neurodegenerative diseases / Tangui Maurice, Nino Goguadze -- Sigma-1 receptor and neuronal excitability / Saïd Kourrich -- Sigma-1 receptor and pain / Manuel Merlos, Luz Romero, Daniel Zamanillo, Carlos Plata-Salamán, José Miguel Vela -- Allosteric modulation of opioid g-protein coupled receptors by sigma1 receptors / Gavril W. Pasternak -- A role for sigma receptors in stimulant self-administration and addiction / Jonathan L. Katz, Takato Hiranita, Weimin C. Hong, Martin O. Job, Christopher R. McCurdy -- Sigma receptors and alcohol use disorders / Valentina Sabino, Pietro Cottone -- Sigma1 pharmacology in the context of cancer / Felix J. Kim, Christina M. Maher -- Molecular probes for imaging the sigma-2 receptor: in vitro and in vivo imaging studies / Chenbo Zeng, Elizabeth S. McDonald, Robert H. Mach.
"Two sigma receptor subtypes have been proposed, sigma1 and 2. Much of our understanding of this system is based on biochemical and pharmacological characterization of the cloned sigma1 receptor subtype (Sigma1). It has become clear that sigma receptors are not canonical receptors. Sigma1 is highly conserved among mammalian species, however, it does not share significant homology with any other mammalian protein. Although a range of structurally diverse small molecules bind Sigma1 with high affinity, and it has been associated with a broad range of signaling systems, Sigma1 itself has no known signaling or enzymatic activity. The evolution of this field over nearly four decades has more recently led to a fundamental shift in the concept of "sigma receptors" to what may more accurately and generally be called sigma proteins. Largely based on traditional pharmacologic approaches, the Sigma1 protein has been associated with a broad range of signaling systems, including G-protein coupled receptors, NMDA receptors, and ion channels. Sigma proteins have been linked to a range of physiological processes, including intracellular calcium signaling, neuroprotection, learning, memory, and cognition. Emerging genetic, clinical, and mechanism focused molecular pharmacology data demonstrate the involvement of proteins in a range of pathophysiologies and disorders including neurodegenerative disease, pain, addiction, psychomotor stimulant abuse, and cancer. However, an understanding of the physiological role of sigma proteins has remained elusive. Emerging data associate Sigma1 with chaperone-like activities or molecular scaffold functions. This book aims to provide an updated perspective on this rapidly evolving field undergoing changes in fundamental concepts of key importance to the discipline of pharmacology. It focusses on the reported roles of sigma proteins in pathophysiology and on emergent therapeutic initiatives"--Publisher's description.
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