Differential Roles for αMβ2 Integrin Clustering or Activation in the Control of Apoptosis via Regulation of Akt and ERK Survival Mechanisms

Author:

Whitlock Ben B.1,Gardai Shyra2,Fadok Valerie2,Bratton Donna2,Henson Peter M.2

Affiliation:

1. Program in Cell Biology, Department of Pediatrics, National Jewish Medical and Research Center, Denver, Colorado 80206

2. Departments of Pathology and Immunology, University of Colorado Health Sciences Center, Denver, Colorado 80262

Abstract

The role of integrins in leukocyte apoptosis is unclear, some studies suggest enhancement, others inhibition. We have found that β2-integrin engagement on neutrophils can either inhibit or enhance apoptosis depending on the activation state of the integrin and the presence of proapoptotic stimuli. Both clustering and activation of αMβ2 delays spontaneous, or unstimulated, apoptosis, maintains mitochondrial membrane potential, and prevents cytochrome c release. In contrast, in the presence of proapoptotic stimuli, such as Fas ligation, TNFα, or UV irradiation, ligation of active αMβ2 resulted in enhanced mitochondrial changes and apoptosis. Clustering of inactive integrins did not show this proapoptotic effect and continued to inhibit apoptosis. This discrepancy was attributed to differential signaling in response to integrin clustering versus activation. Clustered, inactive αMβ2 was capable of stimulating the kinases ERK and Akt. Activated αMβ2 stimulated Akt, but not ERK. When proapoptotic stimuli were combined with either αMβ2 clustering or activation, Akt activity was blocked, allowing integrin activation to enhance apoptosis. Clustered, inactive αMβ2 continued to inhibit stimulated apoptosis due to maintained ERK activity. Therefore, β2-integrin engagement can both delay and enhance apoptosis in the same cell, suggesting that integrins can play a dual role in the apoptotic progression of leukocytes.

Publisher

Rockefeller University Press

Subject

Cell Biology

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