Lutz Birnbaumer – författare
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4 produkter
4 produkter
E-bok
PDF, Engelska, 19971 238 kr
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Hormones and Signaling focuses on the mechanism of gene regulation at the cellular level. It also covers the way hormones act to modulate gene regulation and animal development.Includes information on:- Nuclear receptors, coactivators, and corepressors- Membrane receptors, kinases, and phosphorylation on cascades- Hormonal regulation of development- Calcium channels and neurotransmitters- Chromatin, transcription factors, and regulation of gene expression- JAK/STAT pathways- Hormone-regulated development and gene "knock-out"
E-bok
PDF, Engelska, 2012672 kr
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Receptors and Hormone Action, Volume 1, provides an overview of the state of knowledge in hormone action. This book describes basic methodologies and model systems used in the exploration of the molecular bases of hormone action. The chapters present not only a rather extensive description of hormone receptors and their properties, but also basic aspects of structure and function of chromatin and membranes, the sites at which hormones and their receptors exert their action. The receptors discussed include soluble cytoplasmic and nuclear receptors for steroid hormones and vitamins, membrane-bound receptors for protein hormones and biogenic amines, and nuclear receptors for thyroid hormones. Receptor types are also covered in view of the large body of literature accumulated on the various functions of these fascinating but elusive molecules. This book is intended for a broad spectrum of readers, including those who have not yet worked in the field as well as those who have considerable expertise in one or another aspect of hormone action.
E-bok
Engelska, 2013988 kr
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Receptors and Hormone Action, Volume II, is part of a multivolume series that summarizes advances in the field of hormone action. The articles contained in these books are oriented toward a description of basic methodologies and model systems used in the exploration of the molecular bases of hormone action, and are aimed at a broad spectrum of readers including those who have not yet worked in the field as well as those who have considerable expertise in one or another aspect of hormone action. The book opens with a chapter on the relationship between steroid hormone-receptor binding and biologic response. This is followed by separate chapters on conformational forms of the estrogen receptor; the relationship of early responses of the cell to estrogen to DNA synthesis; the role of receptors in the anabolic action of androgens; and biology of progesterone receptors. Subsequent chapters deal with the molecular structure and analysis of progesterone receptors; the regulation of gene expression by glucocorticoid hormones; studies of the aldosterone receptor in the adrenalectomized rat kidney; and existence of gonadal steroid receptors in brain and pituitary tissue.
E-bok
Engelska, 2013979 kr
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Receptors and Hormone Action, Volume III, is part of a multivolume series that summarizes advances in the field of hormone action. The articles contained in these books are oriented toward a description of basic methodologies and model systems used in the exploration of the molecular bases of hormone action, and are aimed at a broad spectrum of readers including those who have not yet worked in the field as well as those who have considerable expertise in one or another aspect of hormone action. This book opens with a chapter on the physiological properties of the thyroid hormone receptors in the intact animal. This is followed by separate chapters on β-adrenergic receptors; the study of hormone-receptor interaction by measuring the biological responses induced by the actions of gonadotropins on Leydig cells; chemical and immunochemical properties of hCG and PMSG treated with glycosidases; and binding of follitropin (FSH) to rat testes. Subsequent chapters deal with the control of changes of gonadotropin responsiveness of the granulosa cell during follicular maturation; regulation of prolactin receptors by steroid hormones; and the role of membrane protein phosphorylation in the effects of neurotransmitters.