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Biomedical Sciences | Adherens Junctions: from Molecular Mechanisms to Tissue Development and Disease

Adherens Junctions: from Molecular Mechanisms to Tissue Development and Disease

Series: Subcellular Biochemistry, Vol. 60

Harris, Tony (Ed.)

2012, VI, 434 p.

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  • Up-to-date reviews of adherens junction biology from internationally recognized experts in the field
  • Covers adherens junction biology from atoms to overall animal development and disease
  • A comprehensive resource for the research laboratory
  • A comprehensive teaching tool for advanced undergraduate and graduate courses in cell and developmental biology
  • Valuable for both newcomers and experts in the field

Cell–cell adhesion is fundamental for the development and homeostasis of animal tissues and organs.  Adherens junctions (AJs) are the best understood cell-cell adhesion complexes. 

In this volume, internationally recognized experts review AJ biology over a wide range of organization; from atoms to molecules, to protein complexes, molecular networks, cells, tissues, and overall animal development.  AJs have also been an integral part of animal evolution, and play central roles in cancer development, pathogen infection and other diseases.  This book addresses major questions encompassing AJ biology.

- How did AJs evolve?
- How do cadherins and catenins interact to assemble AJs and mediate adhesion?
- How do AJs interface with other cellular machinery to couple adhesion with the whole cell?
- How do AJs affect cell behaviour and multicellular development?
- How can abnormal AJ activity lead to disease?

Valuable for both newcomers and experts in the field, this book offers a comprehensive resource for the research laboratory and a teaching tool for advanced undergraduate and graduate courses in cell and developmental biology.

Content Level » Research

Keywords » adherens junctions - animal tissues - cell adhesion - disease - multicellular development

Related subjects » Biomedical Sciences - Cancer Research - Cell Biology - Evolutionary & Developmental Biology

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