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Titlebook: Vasopressin and Oxytocin; Molecular, Cellular, Hans H. Zingg,Charles W. Bourque,Daniel G. Bichet Book 1998 The Editor(s) (if applicable) an

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书目名称Vasopressin and Oxytocin
副标题Molecular, Cellular,
编辑Hans H. Zingg,Charles W. Bourque,Daniel G. Bichet
视频video
丛书名称Advances in Experimental Medicine and Biology
图书封面Titlebook: Vasopressin and Oxytocin; Molecular, Cellular, Hans H. Zingg,Charles W. Bourque,Daniel G. Bichet Book 1998 The Editor(s) (if applicable) an
描述This monograph provides a comprehensive overview of recent advances in the field of vasopressin and oxytocin. In the summer of 1997, scientists from over 20 countries congregated in Montreal for the 1997 World Congress of Neurohypophysial Hormones, a conference that united the fields of vasopressin, neurohypophysis and oxytocin in a single joint meeting that gave rise to the present book. The organization of a joint meeting was prompted by several recent developments. Specifically the molecular characterization of the vasopressin/oxytocin receptor family made it mandatory to adopt an integrated view and to discuss the vasopressin/oxytocin ligand/receptor family as a whole. To ensure em­ phasis on novelty, the conference focused on advances made over the last two years and also included important contributions by scientists that had not previously been associated with the vasopressin/oxytocin field. Vasopressin and oxytocin are two neurohormones that exert a wide spectrum of cen­ tral and peripheral actions. Accordingly, the vasopressin/oxytocin field embraces a large number of different domains, ranging from neuroscience, endocrinology, and oncology to renal, reproductive, and card
出版日期Book 1998
关键词Bryophyte; Mammalia; cortex; forebrain; neurons; transcription; diabetes
版次1
doihttps://doi.org/10.1007/978-1-4615-4871-3
isbn_softcover978-1-4613-7210-3
isbn_ebook978-1-4615-4871-3Series ISSN 0065-2598 Series E-ISSN 2214-8019
issn_series 0065-2598
copyrightThe Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Science+Busines
The information of publication is updating

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Local Protein Synthesis in Magnocellular Dendrites) translational elements—rRNA, tRNA and translational factors (1,2); (c) certain mRNAs (1,3). Local synthesis of a variety of proteins has been demonstrated (4), as has the ability of dendrites to translate exogenously applied mRNAs (3).
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Cell-Specific Gene Expression in Oxytocin and Vasopressin Magnocellular Neuronsf all the neuroendocrine cell-types. Despite this, our understanding of the mechanisms that underly the cell-specific expression of the peptide genes in these neurons has remained obscure. Part of the reason for this may be related to the close apposition of the OT and VP genes in the chromosomal lo
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Hypothalamic Transcription Factors and the Regulation of the Hypothalamo-Neurohypophysial System different approaches have been taken to identify these factors and to elucidate molecular mechanisms of physiological gene regulation. In this chapter two transcription factor families are considered: homeodomain proteins and nuclear receptors. Their identification in the hypothalamus and actions o
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POU Domain Factors in Neural Developmentmparison of the biological roles of a series of individual members within a family permits some generalizations to be made regarding the developmental events that are likely to be regulated by a particular class of transcription factors. Here, we evidence that the developmental functions of the fami
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Local Protein Synthesis in Magnocellular Dendrites contain: (a) the relevant protein synthetic organelles—polyribosomes, rough endoplasmic reticulum (RER) and small elements of Golgi apparatus (1); (b) translational elements—rRNA, tRNA and translational factors (1,2); (c) certain mRNAs (1,3). Local synthesis of a variety of proteins has been demons
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Electrophysiological Distinctions Between Oxytocin and Vasopressin Neurons in the Supraoptic Nucleusrophysiological properties. In both sexes, oxytocin and vasopressin neurons are characterized by a prominent transient outward rectification which is conspicuously lacking in most perinuclear neurons. In addition, perinuclear neurons, some of which project to the supraoptic nucleus, exhibit a transi
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