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Titlebook: Receptor Regulation; R. J. Lefkowitz (Professor of Medicine) Book 1981 Springer Science+Business Media Dordrecht 1981 biology.cell.cell bi

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书目名称Receptor Regulation
编辑R. J. Lefkowitz (Professor of Medicine)
视频video
丛书名称World Crop Series
图书封面Titlebook: Receptor Regulation;  R. J. Lefkowitz (Professor of Medicine) Book 1981 Springer Science+Business Media Dordrecht 1981 biology.cell.cell bi
描述ROBERT J. LEFKOWITZ, M. D. Receptor Regulation (Receptors and Recognition, Series B, Volume 13) Edited by R. J. Lefkowitz Published in 1981 by Chapman and Hall, 11 New Fetter Lane, London EC4P 4EE © 1981 Chapman and Hall The study of hormone and drug receptors has become one of the most excit­ ing and rapidly moving areas of biomedical research. Elucidation of receptor mechanisms and receptor structure has become the common goal of many scientists from diverse backgrounds. The rapid advances achieved have been due, in large part, to the concentrated effort of workers from a variety of disciplines including classical pharmacology, biochemistry, endocrinology, cell biology, genetics‘ and molecular biology, among others. Hormone and drug receptors appear to be of three major types, which may be classified by their cellular locations. Found in the plasma membranes of cells are the receptors for a wide variety of polypeptide hormones, catecholamines and a variety of neurotransmitters. Included within this group are those receptors coupled to the enzyme adenylate cyclase. The second group of receptors are the soluble cytoplasmic receptors for the steroid hormones. A third type of hormone
出版日期Book 1981
关键词biology; cell; cell biology; cells; chemistry; cytoplasm; endocrinology; growth; membrane; molecular biology;
版次1
doihttps://doi.org/10.1007/978-94-009-5822-7
isbn_softcover978-94-009-5824-1
isbn_ebook978-94-009-5822-7
copyrightSpringer Science+Business Media Dordrecht 1981
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EGF: Receptor Interactions and the Stimulation of Cell Growth,nter, 1978), this manuscript will attempt to focus primarily on the interactions of EGF with membrane receptors. This has been for the past five years a rapidly evolving area of investigation by a number of groups. Although many gross facets of receptor control have been explored, little is actually
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Regulation of Prolactin Receptors in Target Cells,s important in regulating the functions of many organs in many species. In the mammals, the mammary gland is undoubtedly one of the principal target organs of prolactin. In this tissue, prolactin is a lactogenic and a mitogenic hormone (Cowie and Tindal, 1971; Ceriani, 1974). The biological actions
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Regulation of Adrenergic Receptors,ntinues to invoke investigative effort after many years of research. It has become apparent that both the release and biological actions of these mediators are modulated very specifically by pharmacological and pathological states. An understanding of the mechanisms of modulation of adrenergic actio
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Denervation: Cholinergic Receptors of Skeletal Muscle, denervation supersensitivity in any denervated tissue is considered in keeping with Cannon’s ‘Law’ (see Cannon and Rosenblueth, 1949). With no . reason to expect it, physiologists have found that denervated tissues responded to the appropriate neurotransmitter with heightened sensitivity. Do the sa
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Myasthenia Gravis and the Nicotinic Cholinergic Receptor,her the cause of this autoimmune response, nor a specific treatment for curing MG is known. However, a great deal has been learned about the pathological mechanisms by which the autoimmune response to AChR impairs neuromuscular transmission, thereby causing muscular weakness. Much of our understandi
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EGF: Receptor Interactions and the Stimulation of Cell Growth, known with certainty about the finer biochemical details. Within the limitations of this framework, we will attempt to integrate and evaluate present thinking concerning EGF:receptor interactions, focusing primarily on the work from the authors’ laboratories.
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