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Retinoid Signaling Pathways

Retinoid Signaling Pathways
Author:
Publisher: Academic Press
Total Pages: 612
Release: 2020-04-29
Genre: Science
ISBN: 0128201479

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Retinoid Signaling Pathways, Volume 637, the latest release in the Methods in Enzymology series, continues the legacy of this premier serial with quality chapters authored by leaders in the field. Sections in this release include The chemistry and biochemistry of Vitamin A and its natural derivative, Biosynthesis of retinoic acids, Biodegration of retinoic acids mediated by retinoid binding proteins, Retinoic acid homeostasis, Cryo Electron Microscopy to study retinol update via the STRA6 receptor, Immuno-detection of retinoic acid synthesis enzymes in the brain, classical pathway of gene regulation by retinoids, Protein-protein interactions in the regulation of retinoid acid receptors activity, and much more. Provides the authority and expertise of leading contributors from an international board of authors Presents the latest release in the Methods in Enzymology series Includes the latest information on retinoid signaling pathways


The Biochemistry of Retinoid Signaling II

The Biochemistry of Retinoid Signaling II
Author: Mary Ann Asson-Batres
Publisher: Springer
Total Pages: 0
Release: 2016-11-17
Genre: Medical
ISBN: 9789402409437

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The role of vitamin A in living organisms has been known throughout human history. In the last 100 years, the biochemical nature of vitamin A and its active derivative, retinoic acid, its physiological impact on growth processes, and the essential details of its mechanism of action have been revealed by investigations carried out by researchers using vertebrate and more recently invertebrate models to study a multiplicity of processes and conditions, encompassing embryogenesis, postnatal development to old age. A wealth of intercellular interactions, intracellular signaling systems, and molecular mechanisms have been described and the overall conclusion is that retinoic acid is essential for life. This book series, with chapters authored by experts in every aspect of this complex field, unifies the knowledge base and mechanisms currently known in detailed, engaging, well-illustrated, focused chapters that synthesize information for each specific area. In view of the recent information explosion in this field, it is timely to publish a contemporary, comprehensive, book series recapitulating the most exciting developments in the field and covering fundamental research in molecular mechanisms of vitamin A action, its role in physiology, development, and continued well-being, and the potential of vitamin A derivatives and synthetic mimetics to serve as therapeutic treatments for cancers and other debilitating human diseases. Volume II is divided into nine chapters contributed by prominent experts in their respective fields. Each chapter starts with the history of the area of research. Then, the key findings that contributed to development of the field are described, followed by a detailed look at key findings and progress that are being made in current, ongoing research. Each chapter is concluded with a discussion of the relevance of the research and a perspective on missing pieces and lingering gaps that the author recommends will be important in defining future directions in vitamin A research.


RETINOIC ACID RECEPTORS AND CELLULAR RETINOID BINDING PROTEINS

RETINOIC ACID RECEPTORS AND CELLULAR RETINOID BINDING PROTEINS
Author: Esther Ruberte
Publisher:
Total Pages:
Release: 1992
Genre:
ISBN:

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NOUS AVONS ETUDIE LA DISTRIBUTION DES ARN MESSAGERS CODANT POUR LES RECEPTEURS DE L'ACIDE RETINOIQUE ET POUR LES PROTEINES CYTOPLASMIQUES LORS DE L'EMBRYOGENESE DE LA SOURIS EN UTILISANT LA TECHNIQUE D'HYBRIDATION IN SITU. NOS RESULTATS MONTRENT QUE LES RECEPTEURS NUCLEAIRES ET LES PROTEINES CYTOPLASMIQUES ONT DES DISTRIBUTIONS SPECIFIQUES DANS LES TISSUS ET LES ORGANES EMBRYONNAIRES A DES MOMENTS OU LEUR DEVELOPPEMENT EST ALTERE PAR DES TAUX ANORMAUX DE RETINOIDES. LA CORRELATION DE CES DOMAINES D'EXPRESSION AVEC LES EFFETS MORPHOGENETIQUES DE LA VITAMINE A SUGGERENT QUE LA CELLULAR RETINOL BINDING PROTEIN EST IMPLIQUEE DANS LE PROCES DE TRANSFORMATION DU RETINOL EN ACIDE RETINOIQUE ET QUE LES CELLULAR RETINOIC ACID BINDING PROTEINS SONT RESPONSABLES DU CONTROLE DES TAUX D'ACIDE RETINOIQUE LIBRE DANS LES CELLULES. LE RECEPTEUR GAMMA POURRAIT JOUER UN ROLE SPECIFIQUE LORS DE LA CHONDROGENESE ET DE LA FORMATION DES EPITHELIUMS KERATINISES TANDIS QUE LE RECEPTEUR BETA AURAIT DES FONCTIONS PARTICULIERES AU COURS DU DEVELOPPEMENT DU SYSTEME NERVEUX ET DES EPITHELIUMS DES MUQUEUSES RESPIRATOIRES ET DIGESTIVES.


Retinoids: Their Physiological Function and Therapeutic Potential

Retinoids: Their Physiological Function and Therapeutic Potential
Author: G.V. Sherbet
Publisher: Elsevier
Total Pages: 313
Release: 1997-10-30
Genre: Medical
ISBN: 0080877176

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Retinoids have received considerable attention in recent years and due cognizance has been given to their versatility as biological response modifiers, as evidenced by the virtually explosive growth of literature in this field in the past few years. This volume has been designed to give a current state-of-the-art picture of retinoids. The perceived potential of retinoids in the treatment of certain disease stated has initiated attempts at identifying and synthesizing new retinoid derivatives with definable and selective effects on aberrant biological phenomena. Appropriately, therefore, we begin with the chemistry of retinoids and their derivatives together with discussions of their biological activity. Major advances have been made in understanding the mechanisms by which retinoids modulate physiological and phenotypic traits of cells. The transduction of retinoid signaling by the mediation of nuclear receptors of the steroid/thyroid receptor superfamily has now been studied extensively and the cloning and defining the characteristics of these receptors has been a focus of discussion in this volume. Retinoids also markedly modulate the transduction of extracellular signals such as those imparted by growth factors and hormones, and thus actively influence and control cellular proliferative patterns. Retinoids can alter epidermal growth factor receptor expression (Kawaguchi et al., 1994), responsiveness to thyroid hormone (Esfandiari et al., 1994; Pallet et al., 1994), inhibit the proliferative responses of hematopoietic progenitor cells to granulocyte colony stimulating factor (Smeland et al., 1994), and modulate secretion on interleukins by leukaemic cells (Balitrand et al., 1994), among other things. This has obvious implications for pharmacological manipulation of deregulated growth (Dickens and Colletta, 1993; Mulshine et al., 1993). Apoptosis is another component in the regulation of growth control. Apoptotic cell death is influenced by several agents and retinoids may function by interfering with apoptotic pathways of regulation of growth control and quite legitimately, therefore, the importance of this aspect of retinoid function has been duly recognized here.