Direct binding of the N-terminus of HTLV-1 tax oncoprotein to cyclin-dependent kinase 4 is a dominant path to stimulate the kinase activity.
The involvement of Tax oncoprotein in the INK4-CDK4/6-Rb pathway has been regarded as a key factor for immortalization and transformation of human T-cell leukemia virus 1 (HTLV-1) infected cells. In both p16 -/- and +/+ cells, expression of Tax has been correlated with an increase in CDK4 activity, which subsequently ... increases the phosphorylation of Rb and drives the infected cells into cell cycle progression. In relation to these effects, Tax has been shown to interact with two components of the INK4-CDK4/6-Rb pathway, p16 and cyclin D(s). While Tax competes with CDK4 for p16 binding, thus suppressing p16 inhibition of CDK4, Tax also binds to cyclin D(s) with concomitant increases in both CDK4 activity and the phosphorylation of cyclin D(s). Here we show that both Tax and residues 1-40 of the N-terminus of Tax, Tax40N, bind to and activate CDK4 in vitro. In the presence of INK4 proteins, binding of Tax and Tax40N to CDK4 counteracts against the inhibition of p16 and p18 and acts as the major path to regulate Tax-mediated activation of CDK4. We also report that Tax40N retains the transactivation ability. These results of in vitro studies demonstrate a potentially novel, p16-independent route to regulate CDK4 activity by the Tax oncoprotein in HTLV-1 infected cells.
Mesh Terms:
Amino Acid Motifs, Carrier Proteins, Cloning, Molecular, Cyclin-Dependent Kinase 4, Cyclin-Dependent Kinase Inhibitor p16, Cyclin-Dependent Kinases, Enzyme Inhibitors, Escherichia coli, Gene Products, tax, Genes, Viral, Glutathione Transferase, Humans, Molecular Sequence Data, Proto-Oncogene Proteins, Recombinant Proteins, Sequence Tagged Sites, Transcription, Genetic, Transcriptional Activation, Two-Hybrid System Techniques
Amino Acid Motifs, Carrier Proteins, Cloning, Molecular, Cyclin-Dependent Kinase 4, Cyclin-Dependent Kinase Inhibitor p16, Cyclin-Dependent Kinases, Enzyme Inhibitors, Escherichia coli, Gene Products, tax, Genes, Viral, Glutathione Transferase, Humans, Molecular Sequence Data, Proto-Oncogene Proteins, Recombinant Proteins, Sequence Tagged Sites, Transcription, Genetic, Transcriptional Activation, Two-Hybrid System Techniques
Biochemistry
Date: Jun. 10, 2003
PubMed ID: 12779347
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