Activation of the CDK7 Gene, Coding for the Catalytic Subunit of the Cyclin-Dependent Kinase (CDK)-Activating Kinase (CAK) and General Transcription Factor II H, by the Trans-Activator Protein Tax of Human T-Cell Leukemia Virus Type-1.
Mashiro ShirasawaRinka NakajimaYaxuan ZhouLin ZhaoMariana FikriyantiRitsuko IwanagaAndrew P BradfordKenta KurayoshiKeigo ArakiKiyoshi OhtaniPublished in: Genes (2024)
Human T-cell leukemia virus type-1 (HTLV-1) is the etiological agent of adult T-cell leukemia (ATL). The trans-activator protein Tax of HTLV-1 plays crucial roles in leukemogenesis by promoting proliferation of virus-infected cells through activation of growth-promoting genes. However, critical target genes are yet to be elucidated. We show here that Tax activates the gene coding for cyclin-dependent kinase 7 (CDK7), the essential component of both CDK-activating kinase (CAK) and general transcription factor TFIIH. CAK and TFIIH play essential roles in cell cycle progression and transcription by activating CDKs and facilitating transcriptional initiation, respectively. Tax induced CDK7 gene expression not only in human T-cell lines but also in normal peripheral blood lymphocytes (PHA-PBLs) along with increased protein expression. Tax stimulated phosphorylation of CDK2 and RNA polymerase II at sites reported to be mediated by CDK7. Tax activated the CDK7 promoter through the NF-κB pathway, which mainly mediates cell growth promotion by Tax. Knockdown of CDK7 expression reduced Tax-mediated induction of target gene expression and cell cycle progression. These results suggest that the CDK7 gene is a crucial target of Tax-mediated trans-activation to promote cell proliferation by activating CDKs and transcription.
Keyphrases
- cell cycle
- cell proliferation
- transcription factor
- gene expression
- signaling pathway
- genome wide identification
- endothelial cells
- genome wide
- peripheral blood
- dna methylation
- protein kinase
- bone marrow
- pi k akt
- copy number
- induced apoptosis
- nuclear factor
- dna binding
- induced pluripotent stem cells
- high glucose
- cell death
- young adults
- oxidative stress
- small molecule
- inflammatory response
- cell cycle arrest
- amino acid
- lps induced
- binding protein
- genome wide analysis
- heat shock protein