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PlantRegMap/PlantTFDB v5.0
Plant Transcription
Factor Database
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Home TFext BLAST Prediction Download Help About Links PlantRegMap |
Species | TF ID | Description |
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Ro01_G01326 | FAR1 family protein | |
Ro01_G27445 | FAR1 family protein | |
Ro02_G04036 | FAR1 family protein | |
Ro02_G08790 | FAR1 family protein | |
Ro02_G10941 | FAR1 family protein | |
Ro02_G10943 | FAR1 family protein | |
Ro02_G15129 | FAR1 family protein | |
Ro02_G19343 | FAR1 family protein | |
Ro02_G23738 | FAR1 family protein | |
Ro02_G35511 | FAR1 family protein | |
Ro02_G35602 | FAR1 family protein | |
Ro03_G10006 | FAR1 family protein | |
Ro03_G10173 | FAR1 family protein | |
Ro03_G11123 | FAR1 family protein | |
Ro03_G26345 | FAR1 family protein | |
Ro03_G32363 | FAR1 family protein | |
Ro03_G33013 | FAR1 family protein | |
Ro04_G13335 | FAR1 family protein | |
Ro04_G16087 | FAR1 family protein | |
Ro04_G21698 | FAR1 family protein | |
Ro04_G22286 | FAR1 family protein | |
Ro04_G26096 | FAR1 family protein | |
Ro04_G36266 | FAR1 family protein | |
Ro04_G36384 | FAR1 family protein | |
Ro04_G36412 | FAR1 family protein | |
Ro05_G13854 | FAR1 family protein | |
Ro05_G13874 | FAR1 family protein | |
Ro05_G26265 | FAR1 family protein | |
Ro05_G27840 | FAR1 family protein | |
Ro05_G31170 | FAR1 family protein | |
Ro06_G08427 | FAR1 family protein | |
Ro06_G09251 | FAR1 family protein | |
Ro06_G17330 | FAR1 family protein | |
Ro06_G20929 | FAR1 family protein | |
Ro06_G27219 | FAR1 family protein | |
Ro06_G27495 | FAR1 family protein | |
Ro06_G28421 | FAR1 family protein | |
Ro06_G28772 | FAR1 family protein | |
Ro07_G08947 | FAR1 family protein | |
Ro07_G11489 | FAR1 family protein | |
Ro07_G15143 | FAR1 family protein | |
Ro07_G18572 | FAR1 family protein | |
Ro07_G19867 | FAR1 family protein | |
Ro07_G19883 | FAR1 family protein | |
Ro07_G24890 | FAR1 family protein | |
Ro07_G25647 | FAR1 family protein | |
Ro07_G33459 | FAR1 family protein | |
Ro07_G34179 | FAR1 family protein |
We show that Arabidopsis FHY3 and FAR1, which encode two proteins related to Mutator-like transposases, act together to modulate phyA signaling by directly activating the transcription of FHY1 and FHL, whose products are essential for light-induced phyA nuclear accumulation and subsequent light responses. FHY3 and FAR1 have separable DNA binding and transcriptional activation domains that are highly conserved in Mutator-like transposases. Further, expression of FHY3 and FAR1 is negatively regulated by phyA signaling. We propose that FHY3 and FAR1 represent transcription factors that have been co-opted from an ancient Mutator-like transposase(s) to modulate phyA-signaling homeostasis in higher plants.
We next used a yeast one-hybrid assay to delineate the DNA sequences to which FHY3 and FAR1 bind. GAD-FHY3 or GAD-FAR1 fusion proteins (GAD, GAL4 transcriptional activation domain), but not GAD alone, activated the LacZ reporter genes driven by the FHY1 and FHL promoters. Deletion analysis narrowed down the FHY3/FAR1 binding site to a 39-bp promoter subfragment located on the "a" fragment for both FHY1 and FHL. Notably, these subfragments share a stretch of consensus sequence, 5'-TTCACGCGCC-3'. Mutating the core sequence "CACGCGC" of this motif (m2 and m3 for FHY1, m5 for FHL) abolished the reporter gene activation by both GAD-FHY3 and GAD-FAR1. Mutating the flanking sequences (m1 and m4) did not obviously affect the reporter gene activation by GAD-FAR1, but clearly reduced activation by GAD-FHY3. Thus, "CACGCGC" likely defines a cis-element that confers specific binding for FHY3 and FAR1 and is named FBS for FHY3-FAR1 binding site.
Lin R, Ding L, Casola C, Ripoll DR, Feschotte C, Wang H.
Transposase-derived transcription factors regulate light signaling in Arabidopsis.
Science, 2007. 318(5854): p. 1302-5.
PMID: 18033885