Abstract

Activating transcription factor (ATF) 3 plays a role in determining cell fate and generates a variety of alternatively spliced isoforms in stress response. We have reported previously that splice variant ATF3deltaZip2, which lacks the leucine zipper region, is induced in response to various stress stimuli. However, its biological function has not been elucidated. By using cells treated with tumor necrosis factor-alpha and actinomycin D or cells overexpressing ATF3deltaZip2, we showed that ATF3deltaZip2 sensitizes cells to apoptotic cell death in response to tumor necrosis factor-alpha, at least in part through suppressing nuclear factor (NF)-kappaB-dependent transcription of anti-apoptotic genes such as cIAP2 and XIAP. ATF3deltaZip2 interacts with a p65 (RelA)-cofactor complex containing CBP/p300 and HDAC1 at NF-kappaB sites of the proximal promoter region of the cIAP2 gene in vivo and down-regulates the recruitment of CBP/p300. Our study revealed that ATF3deltaZip2 counteracts anti-apoptotic activity of NF-kappaB, at least in part, by displacing positive cofactor CBP/p300 and provides insight into the mechanism by which ATF3 regulates cell fate through alternative splicing in stress response.

Highlights

  • Activating transcription factor (ATF)3 3 is a member of the ATF/ cyclic AMP-response element-binding protein (CREB) family of basic leucine zipper-type transcription factors

  • ATF3⌬Zip2 in determining cell fate, we first overexpressed it by adenovirus-mediated gene transfer, and we examined cell viability after treatment with TNF-␣

  • To test the possibility that down-regulation of cIAP2 or X chromosome-linked IAP (XIAP) is responsible for TNF-␣-induced apoptosis of ⌬Zip2 cells, we examined the effects of cIAP2 and XIAP on cell death

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Summary

Introduction

Activating transcription factor (ATF)3 3 is a member of the ATF/ CREB family of basic leucine zipper-type transcription factors. Proapoptosis by Stress Response Gene ATF3 Splice Variant contains two functional ␬B sites in the promoter [26], and the cIAP2 protein directly binds and inhibits effector caspases, such as caspase 3 and 7, as well as prevents activation of pro-caspase 6 and 9 [27].

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