Abstract

To gain a broader insight into the role of Bcl-2 proteins in apoptosis induced after mitotic arrest, we investigated the subcellular location, oligomeric structure, and protein interactions of Bax, Bcl-2, and Bcl-xL in vinblastine-treated KB-3 cells. Vinblastine induced the translocation of Bax from the cytosol to the mitochondria, which was accompanied by conformational activation and oligomerization of Bax. Bcl-2 was located in the mitochondria, underwent multisite phosphorylation after vinblastine treatment, and was strictly monomeric under all conditions. In contrast, in control cells, Bcl-xL existed in both monomeric (30 kDa) and oligomeric (150 kDa) forms. Treatment with agents that induced Bcl-xL phosphorylation (microtubule inhibitors) caused loss of the 150-kDa form, but this species was unaffected by apoptotic stimuli that did not stimulate phosphorylation. Vinblastine also promoted Bax activation and Bax oligomerization in HCT116 colon cancer cells. Both wild-type and Bax-deficient HCT116 cells expressed the 150-kDa form of Bcl-xL, which was depleted similarly in both cell lines upon vinblastine treatment. Co-immunoprecipitation studies revealed that in untreated KB-3 cells inactive cytosolic Bax interacted with Bcl-xL, whereas in vinblastine-treated cells, activated mitochondrial Bax did not interact with Bcl-xL. Interaction of Bcl-2 with Bax was not observed under any condition. Overexpression of Bcl-xL inhibited vinblastine-induced Bax activation and Bax dimerization and in parallel inhibited apoptosis. The results indicate that vinblastine-induced apoptosis requires translocation, activation, and oligomerization of Bax and is associated with specific changes in the oligomeric properties of Bcl-xL, which occur independently of Bax.

Highlights

  • Vated BH3 proteins play a key role in the activation of multidomain Bax subfamily proteins

  • These agents have in common the ability to suppress the dynamic instability of spindle microtubules, leading to mitotic arrest and cell death by apoptosis [7]

  • These results suggest that factors in addition to or other than Bax activation are important for apoptosis induced by microtubule inhibitors

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Summary

Introduction

Vated BH3 proteins play a key role in the activation of multidomain Bax subfamily proteins. To determine whether vinblastine induced Bax oligomerization, KB-3 cells were treated with or without vinblastine, permeabilized with digitonin, and incubated with or without the crosslinking agent, DSP, as described under “Experimental Procedures.” Particulate fractions were prepared and extracted with CHAPS, and samples were subjected to immunoblotting for Bax. Bax migrated as a monomer of 21 kDa in control cells; after 36-h vinblastine treatment, a proportion of Bax migrated at 42 kDa. The 42-kDa form was only observed following DSP treatment and in the absence of ␤-mercaptoethanol.

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