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Tight Junctions: Molecular Biology Intelligence Unit

Editat de Lorenza González-Mariscal
en Limba Engleză Hardback – 9 iun 2006
ight junctions (TJs) are cell-ceil adhesion belts that encircle epithelial and endothelial cells at the limit between the apical and the lateral Tmembrane. These junctions are crucial for the establishment of separate compartments in multicellular organisms and for the exchange of substances between the internal milieu and the external environment. The perception of TJs has changed over the years. From being regarded as static paracellular seals, they have come to be perceived as dynamic structures that adjust their morphol­ ogy and function in response to physiological, pharmacological and pathologi­ cal challenges. The roles that TJs play in epithelial and endothelial cells has also widened, and nowadays this structure is regarded not only as a fence that limits within the membrane, the movement of proteins and lipids between the apical and basolateral membranes, or as a gate that regulates in a size and charge selec­ tive manner the transit of ion and molecules through the paracellular pathway, but also as a structure integrated by molecules that participate in the control of cell proliferation. These observations highlight the importance of understand­ ing TJ physiology in order to develop effective strategies for the treatment of pathological conditions such as cancer and autoimmune diseases. This broader perception of TJs is reflected in all the chapters of the book and has been attained thanks to the identification in recent years of a wide array of proteins that constitute TJs in epithelial and endothelial cells as well as in central nervous system myelin.
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Specificații

ISBN-13: 9780387332017
ISBN-10: 0387332014
Pagini: 224
Ilustrații: XI, 224 p.
Dimensiuni: 155 x 235 x 18 mm
Greutate: 0.49 kg
Ediția:2006
Editura: Springer Us
Colecția Springer
Seria Molecular Biology Intelligence Unit

Locul publicării:New York, NY, United States

Public țintă

Research

Cuprins

Evolution of the Transporting Epithelium Phenotype.- Occludin, a Constituent of Tight Junctions.- Tight Junction Channels.- JAM Family Proteins.- Cingulin, a Cytoskeleton-Associated Protein of the Tight Junction.- ZO Proteins and Tight Junction Assembly.- TJ Proteins That Make Round Trips to the Nucleus.- Tight Junctions and the Regulation of Epithelial Cell Proliferation and Gene Expression.- Tight Junction Proteins and Cancer.- Regulation of Paracellular Transport across Tight Junctions by the Actin Cytoskeleton.- Regulation of Tight Junctions’ Functional Integrity.- Tight Junctions during Development.- Tight Junctions and the Blood-Brain Barrier.- Tight Junctions in CNS Myelin.- Tight Junction Modulation and Its Relationship to Drug Delivery.

Caracteristici

Tight Junctions is particularly relevant to students and scientists in the field of cell biology, physiology, cell differentiation, and cancer research Deals with TJs of central nervous system myelin and at the blood brain barrier, thus shedding new light on autoimmune diseases and the protection of the microenvironment of the central nervous system Includes supplementary material: sn.pub/extras

Notă biografică

Dr. Lorenza González-Mariscal is a Profesor Titular in the Departamento de Fisiología Biofísica y Neurociencias, at the Centro de Investigación y Estudios Avanzados in Mexico City, Mexio. 

Textul de pe ultima copertă

This volume explores the dynamic topic of tight junctions. The book focuses on tight junctions' role in sealing adjacent epithelial cells in a narrow band just beneath their apical surface. The book explains how tight junctions consist of a network of claudins and other proteins, and delves into how they hold cells together and form functional and protective barriers, regulating the passage of molecules and ions through the space between cells.

The book opens with a discussion of the evolution of research on tight junctions, discussing a range of primary areas of growth, including the current knowledge on the particular physiological function of different claudins due to the development of an array of knock out mice. The chapters also explore in-depth studies of tight junctions in specific tissues (gut, lung and endothelia). This book offers a comprehensive understanding on post-translational modifications of occludin and its impact on tight junction function, as well as the molecular composition and function of tricellular tight junctions. This volume is particularly relevant to students and scientists in neuroscience, cell biology, physiology, cell differentiation, and cancer research.