Mitogen-activated Protein Kinase Phosphatase-1 (MKP-1) Expression Is Induced by Low Oxygen Conditions Found in Solid Tumor Microenvironments
Экспрессия фосфатазы-1 митоген-активируемой протеинкиназы (MKP-1) индуцируется в условиях низкого содержания кислорода, характерных для микроокружения солидных опухолей
1999-04-01
SCID: 54.1/u27cmw4p
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MAPK phosphataseMKP-1 expressionSAPK/JNK activationc-Jun transcriptional activationtumor hypoxia
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Abstract (AI)
Pathophysiological hypoxia is an important modulator of gene expression in solid tumors and other pathologic conditions. We observed that transcriptional activation of the c-jun proto-oncogene in hypoxic tumor cells correlates with phosphorylation of the ATF2 transcription factor. This finding suggested that hypoxic signals transmitted to c-jun involve protein kinases that target AP-1 complexes (c-Jun and ATF2) that bind to its promoter region. Stress-inducible protein kinases capable of activating c-jun expression include stress-activated protein kinase/c-Jun N-terminal protein kinase (SAPK/JNK) and p38 members of the mitogen-activated protein kinase (MAPK) superfamily of signaling molecules. To investigate the potential role of MAPKs in the regulation of c-jun by tumor hypoxia, we focused on the activation SAPK/JNKs in SiHa human squamous carcinoma cells. Here, we describe the transient activation of SAPK/JNKs by tumor-like hypoxia, and the concurrent transcriptional activation of MKP-1, a stress-inducible member of the MAPK phosphatase (MKP) family of dual specificity protein-tyrosine phosphatases. MKP-1 antagonizes SAPK/JNK activation in response to diverse environmental stresses. Together, these findings identify MKP-1 as a hypoxia-responsive gene and suggest a critical role in the regulation of SAPK/JNK activity in the tumor microenvironment.
Key Findings
1
Hypoxia-induced c-jun transcriptional activation correlates with phosphorylation of the ATF2 transcription factor, implicating AP-1 signaling.
2
Hypoxic tumor conditions concurrently induce transcriptional activation of MKP-1, a stress-inducible dual-specificity MAPK phosphatase.
3
MKP-1 is identified as a hypoxia-responsive gene that may regulate SAPK/JNK activity in solid tumor microenvironments.
4
The findings suggest a feedback mechanism in which hypoxia-induced MKP-1 antagonizes SAPK/JNK signaling activated by tumor-like stress.
5
Tumor-like hypoxia transiently activates stress-activated protein kinase/c-Jun N-terminal kinase (SAPK/JNK) in SiHa human squamous carcinoma cells.
Research Object
MKP-1 expression and SAPK/JNK signaling in hypoxic SiHa human squamous carcinoma cells
Research Subject
Hypoxia-induced transcriptional activation of MKP-1 and transient SAPK/JNK activation, including their regulatory relationship in the tumor microenvironment
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1999-04-01
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