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January 13, 2007Civil War Book Review1,655 citationsOpen Access

Structural Basis of Integrin Regulation and Signaling

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BLBing‐Hao LuoCCChristopher V. CarmanTSTimothy A. Springer

Key Points

  • The aim is to clarify how integrin structure influences its regulation and signaling mechanisms.
  • Reviewed structural, biochemical, and biophysical studies on integrins.
  • Analyzed how signaling affects cell adhesion and immune system functions.
  • Discussed conformational changes associated with ligand binding.
  • Described large-scale ectodomain reorientations of up to 200 A linked to binding site changes.
  • Identified dynamics of alpha and beta subunit associations with transmembrane domains.
  • Highlighted the modulation of integrin affinity and its impact on cellular signaling.

Abstract

Integrins are cell adhesion molecules that mediate cell-cell, cell-extracellular matrix, and cell-pathogen interactions. They play critical roles for the immune system in leukocyte trafficking and migration, immunological synapse formation, costimulation, and phagocytosis. Integrin adhesiveness can be dynamically regulated through a process termed inside-out signaling. In addition, ligand binding transduces signals from the extracellular domain to the cytoplasm in the classical outside-in direction. Recent structural, biochemical, and biophysical studies have greatly advanced our understanding of the mechanisms of integrin bidirectional signaling across the plasma membrane. Large-scale reorientations of the ectodomain of up to 200 A couple to conformational change in ligand-binding sites and are linked to changes in alpha and beta subunit transmembrane domain association. In this review, we focus on integrin structure as it relates to affinity modulation, ligand binding, outside-in signaling, and cell surface distribution dynamics.

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Cite This Study

Luo et al. (2007) studied this question.

synapsesocial.com/papers/69d7584edf21310ab048f656https://doi.org/10.1146/annurev.immunol.25.022106.141618
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