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Ex vivo Imaging of T Cells in Murine Lymph Node Slices with Widefield and Confocal Microscopes
Published on: July 15, 2011
Class IA phosphoinositide 3-kinase modulates basal lymphocyte motility in the lymph node
Melanie P Matheu1, Jonathan A Deane, Ian Parker
1Department of Physiology and Biophysics, University of California, Irvine, California 92697, USA.
Insights
Phosphoinositide 3-kinase (PI3K) is crucial for lymphocyte movement and homing. This study reveals PI3K
Area of Science:
- Immunology
- Cell Biology
- Molecular Signaling
Background:
- Phosphoinositide 3-kinase (PI3K) recruitment to the cell membrane is essential for lymphocyte proliferation and activation.
- Basal lymphocyte motility and homing are critical for immune surveillance within lymph nodes.
Purpose of the Study:
- To investigate the role of PI3K signaling in maintaining basal T and B lymphocyte motility and homing.
- To elucidate the specific functions of PI3K catalytic isoforms and regulatory subunits (p85alpha, p85beta) in lymphocyte behavior.
- To determine the impact of PI3K inhibition and genetic deficiency on lymphocyte morphology and function.
Main Methods:
- Pharmacological inhibition of PI3K catalytic isoforms in lymphocytes.
- Analysis of lymphocytes genetically deficient in class IA PI3K regulatory subunits (p85alpha and p85beta).
- Assessment of lymphocyte homing kinetics, localization within lymph nodes, cell velocities, and morphology.
Main Results:
- PI3K inhibition broadly affected basal lymphocyte motility, altering homing, B cell localization, and reducing cell velocities.
- Lymphocytes lacking p85alpha or p85beta regulatory subunits showed reduced velocities, varying by cell type and isoform.
- B cells deficient in p85alpha displayed significant morphological abnormalities, independent of PI3K catalytic activity.
Conclusions:
- Class IA PI3Ks are vital regulators of basal lymphocyte motility and homing.
- The p85alpha regulatory subunit is necessary for maintaining B cell morphology, irrespective of PI3K catalytic function.
- Distinct roles exist for PI3K catalytic and regulatory domains in governing lymphocyte motility, homing, and localization.
Abstract:
Recruitment of PI3K to the cell membrane is an indispensable step in normal lymphocyte proliferation and activation. In this study we identify PI3K as an important signaling molecule for maintaining basal T and B lymphocyte motility and homing in the intact lymph node. Pharmacological inhibition of PI3K catalytic isoforms exerted broad effects on basal lymphocyte motility, including changes in homing kinetics, localization of B cells within the lymph node, and reduced cell velocities. Lymphocytes deficient in either or both of the class IA PI3K regulatory subunits p85alpha and p85beta also exhibited reduced velocities, with the magnitude of reduction depending upon both cell type and isoform specificity. B cells deficient in p85alpha exhibited gross morphological abnormalities that were not evident in cells treated with a PI3K inhibitor. Our results show, for the first time, that class IA PI3Ks play an important role in regulating basal lymphocyte motility and that p85alpha regulatory subunit expression is required to maintain B cell morphology in a manner independent of PI3K catalytic function. Moreover, we demonstrate distinct roles for catalytic domain function and class IA PI3K regulatory domain activity in lymphocyte motility, homing, and homeostatic localization of mature resting B cells.
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