CHARACTERIZATION OF A NEGATIVE RETINOIC ACID RESPONSE ELEMENT IN THE MURINE OCT4 PROMOTER

被引:92
作者
SCHOORLEMMER, J [1 ]
VANPUIJENBROEK, A [1 ]
VANDENEIJNDEN, M [1 ]
JONK, L [1 ]
PALS, C [1 ]
KRUIJER, W [1 ]
机构
[1] NETHERLANDS INST DEV BIOL, HUBRECHT LAB, 3584 CT UTRECHT, NETHERLANDS
关键词
D O I
10.1128/MCB.14.2.1122
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Expression of Oct4 in embryonic stem cells is controlled by a distal upstream stem cell-specific enhancer that is deactivated during retinoic acid (RA)-induced differentiation by an indirect mechanism not involving binding of RA receptors (H. Okazawa, K. Okamoto, F. Ishino, T. Ishino-kaneko, S. Takeda, Y. Toyoda, M. Muramatsu, and H. Hamada, EMBO J. 10:2997-3005, 1991). Here we report that in RA-treated P19 embryonal carcinoma cells the Oct4 promoter is also subject to negative regulation by RA. The minimal Oct4 promoter sequence mediating repression consists of a promoter-proximal sequence containing a GC-rich SP1 consensus-like sequence and several hormone response element half-site that can be arranged into direct repeats with different spacing. The GC box binds a nuclear factor that is invariable present in undifferentiated and RA-treated differentiated P19 cells. By contrast, the hormone response element-containing sequence binds factors that are induced following RA treatment. Mutational analysis and competition experiments show that the functional entity binding the RA-induced factor is a direct repeat sequence with a spacing of non nucleotide, previously shown to be a binding site for COUP transcription factors (COUP-TFs). Cotransfected orphan receptors COUP-TF2, ARP-1, and EAR-2 were able to repress the activity of Oct4 promoter-driven reporters in P19 EC cells, albeit with different efficiencies. Furthermore, the negative transcriptional effect of COUP-TFs is dominant over the activating effect of the Oct4 embryonic stem cell-specific enhancer. These results show that negative regulation of Oct4 expression during RA-induced differentiation of embryonic stem cells is controlled by two different mechanisms, including deactivation of the embryonic stem cell-specific enhancer and promoter silencing by orphan nuclear hormone receptors.
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页码:1122 / 1136
页数:15
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