Transcriptional activation of tobacco E2F is repressed by co-transfection with the retinoblastoma-related protein: cyclin D expression overcomes this repressor activity

Plant Molecular Biology - Tập 57 - Trang 83-100 - 2005
Kenji Uemukai1, Hidekazu Iwakawa1, Shunichi Kosugi2, Sarah de Uemukai3, Ko Kato1, Eva Kondorosi4, James AH Murray3, Masaki Ito5, Atsuhiko Shinmyo1, Masami Sekine1
1Graduate School of Biological Sciences, Nara Institute of Science and Technology (NAIST), Ikoma, Japan
2Institute of Advanced Biosciences, Keio University, Tsuruoka, Japan
3Institute of Biotechnology, University of Cambridge, Cambridge, United Kingdom
4Institut des Sciences Végétales, CNRS, Gif sur Yvette, France
5Department of Regulation of Biological Signals, Graduate School of Bioagricultural Sciences, Nagoya University, Chikusa, Japan

Tóm tắt

Evidence is emerging that the E2F family of transcription factors plays an important role in the regulation of gene expression at the G1/S transition in plants. Here, we show that in the tobacco proliferating cell nuclear antigen (PCNA), whose transcript is specifically expressed at G1/S phase, the two E2F binding sites are synergistically responsible for transcriptional activation at G1/S phase in synchronized tobacco BY-2 cells transformed with promoter constructs fused to a reporter gene. In addition, we have isolated the tobacco DP cDNA (NtDP) and showed that significant activation of the reporter gene was observed in transient expression assays by concomitantly transfecting with plasmids expressing NtE2F and NtDP. This transcriptional activation was repressed by co-transfection with a plasmid expressing NtRBR1; in vitro pull-down assays also revealed that NtRBR1 binds directly to NtE2F, thereby potentially blocking the transcriptional activation of NtE2F. Importantly, this repressor activity was cancelled when NtRBR1 was further co-transfected with a plasmid expressing cyclin D but not with cyclin A or cyclin B. These results are discussed with respect to the repression activity of NtRBR1 on the NtE2F/NtDP complex.

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