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Leukemia ; 31(7): 1570-1581, 2017 07.
Article in English | MEDLINE | ID: mdl-27890927

ABSTRACT

Despite therapeutic advances, multiple myeloma (MM) remains an incurable disease, predominantly because of the development of drug resistance. The activator protein-1 (AP-1) transcription factor family has been implicated in a multitude of physiologic processes and tumorigenesis; however, its role in MM is largely unknown. Here we demonstrate specific and rapid induction of the AP-1 family member JunB in MM cells when co-cultured with bone marrow stromal cells. Supporting a functional key role of JunB in MM pathogenesis, knockdown of JUNB significantly inhibited in vitro MM cell proliferation and survival. Consistently, induced silencing of JUNB markedly decreased tumor growth in a murine MM model of the microenvironment. Subsequent gene expression profiling revealed a role for genes associated with apoptosis, DNA replication and metabolism in driving the JunB-mediated phenotype in MM cells. Importantly, knockdown of JUNB restored the response to dexamethasone in dexamethasone-resistant MM cells. Moreover, 4-hydroxytamoxifen-induced activation of a JunB-ER fusion protein protected dexamethasone-sensitive MM cells against dexamethasone- and bortezomib-induced cytotoxicity. In summary, our results demonstrate for the first time a specific role for AP-1/JunB in MM cell proliferation, survival and drug resistance, thereby strongly supporting that this transcription factor is a promising new therapeutic target in MM.


Subject(s)
Bone Marrow/pathology , Multiple Myeloma/pathology , Transcription Factors/physiology , Tumor Microenvironment , Animals , Bortezomib/pharmacology , Cell Proliferation , Dexamethasone/pharmacology , Drug Resistance, Neoplasm , Female , Humans , Mice , Multiple Myeloma/drug therapy , Multiple Myeloma/mortality , NF-kappa B/physiology
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