scholarly journals A Response Unit in the First Exon of the β-Amyloid Precursor Protein Gene Containing Thyroid Hormone Receptor and Sp1 Binding Sites Mediates Negative Regulation by 3,5,3′-Triiodothyronine

2004 ◽  
Vol 18 (4) ◽  
pp. 863-873 ◽  
Author(s):  
Ana Villa ◽  
Jorge Santiago ◽  
Borja Belandia ◽  
Angel Pascual
1992 ◽  
Vol 1 (4) ◽  
pp. 306-309 ◽  
Author(s):  
C.T. Jones ◽  
S. Morris ◽  
C.M. Yates ◽  
A. Moffoot ◽  
C. Sharpe ◽  
...  

Nature ◽  
1991 ◽  
Vol 353 (6347) ◽  
pp. 844-846 ◽  
Author(s):  
Marie-Christine Chartier-Harlin ◽  
Fiona Crawford ◽  
Henry Houlden ◽  
Andrew Warren ◽  
David Hughes ◽  
...  

2013 ◽  
Vol 289 (3) ◽  
pp. 1313-1328 ◽  
Author(s):  
Preeti Ramadoss ◽  
Brian J. Abraham ◽  
Linus Tsai ◽  
Yiming Zhou ◽  
Ricardo H. Costa-e-Sousa ◽  
...  

Triiodothyronine (T3) regulates key metabolic processes in the liver through the thyroid hormone receptor, TRβ1. However, the number of known target genes directly regulated by TRβ1 is limited, and the mechanisms by which positive and especially negative transcriptional regulation occur are not well understood. To characterize the TRβ1 cistrome in vivo, we expressed a biotinylated TRβ1 in hypo- and hyperthyroid mouse livers, used ChIP-seq to identify genomic TRβ1 targets, and correlated these data with gene expression changes. As with other nuclear receptors, the majority of TRβ1 binding sites were not in proximal promoters but in the gene body of known genes. Remarkably, T3 can dictate changes in TRβ1 binding, with strong correlation to T3-induced gene expression changes, suggesting that differential TRβ1 binding regulates transcriptional outcome. Additionally, DR-4 and DR-0 motifs were significantly enriched at binding sites where T3 induced an increase or decrease in TRβ1 binding, respectively, leading to either positive or negative regulation by T3. Taken together, the results of this study provide new insights into the mechanisms of transcriptional regulation by TRβ1 in vivo.


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