View conserved binding sites


Gene
VV02G03370
Description
name=GSVIVG01019385001;
Alias
GSVIVG01019385001;GSVIVT01019385001;GSVIVG01019385001
Binding siteNameDescriptionLocationPosition
Motif_15AMYBOX2amylase box; amylase element; Conserved sequence found in 5'upstream region of alpha-amylase gene of rice, wheat, barleyDownstream1444
Motif_174SREATMSDsugar-repressive element (SRE) found in 272 of the 1592 down-regulated genes after main stem decapitation in ArabidopsisDownstream1443
Motif_182MYB2CONSENSUSATMYB recognition site found in the promoters of the dehydration-responsive gene rd22 and many other genes in Arabidopsis; see MYB2 and MYBATRD22Downstream1440
Motif_194EBOXBNNAPAE-box of napA storage-protein gene of Brassica napus;This sequence is also known as RRE (R response element); MYC recognition site found in the promoters of the dehydration-responsive gene rd22 and many other genes in Arabidopsis; Binding site of ATMYC2 (previously known as rd22BP1); see E-box and MYCATRD22; MYC recognition sequence in CBF3 promoter; Binding site of ICE1 (inducer of CBF expression 1) that regulates the transcription of CBF/DREB1 genes in the cold in Arabidopsis; ICE1Downstream1448
Motif_221MYBCOREBinding site for all animal MYB and at least two plant MYB proteins ATMYB1 and ATMYB2, both isolated from Arabidopsis; ATMYB2 is involved in regulation of genes that are responsive to water stress in Arabidopsis; A petunia MYB protein (MYB.Ph3) is involved in regulation of flavonoid biosynthesisDownstream1440
Motif_307TATCCAYMOTIFOSRAMY3DTATCCAY motif found in rice RAmy3D alpha-amylase gene promoter; a GATA motif as its antisense sequence; TATCCAY motif and G motif are responsible for sugar repressionDownstream1444
Motif_317GAREATGARE (GA-responsive element); Occurrence of GARE in GA-inducible, GA-responsible, and GA-nonresponsive genes found in Arabidopsis seed germination was 20, 18, and 12%, respectivelyDownstream1450
Motif_336MYBMOUSEBinding site for mouse c-myb proteinDownstream1440
Motif_520AMYBOX1amylase box; Conserved sequence found in 5'-upstream region of alpha-amylase gene of rice, wheat, barleyDownstream1450
Motif_609AP2The floral homeotic protein APETALA2 recognizes and acts through an AT-rich sequence elementDownstream1450
Motif_614MYBGAHVCentral element of gibberellin (GA) response complex (GARC) in high-pI alpha-amylase gene in barley; Similar to c-myb and v-myb consensus binding site; GAmyb binds specifically to the TAACAAA box in vitro; GAmyb is the sole GA-regulated transcriptional factor required for transcriptional activation of the high-pI alpha-amylase; GARC consist of the pyrimidine, TAACAAA and TATCCAC boxes; GARE in RAmy1A gene; GARE and pyrimidine box in RAmy1A are partially involved in sugar repressionDownstream1450
Motif_628TATCCAOSAMYTATCCA element found in alpha-amylase promoters of rice at positions ca.90 to 150bp upstream of the transcription start sites; Binding sites of OsMYBS1, OsMYBS2 and OsMYBS3 which mediate sugar and hormone regulation of alpha-amylase gene expression; See also AMYBOX2Downstream1444
Motif_645BES1A brassinosteroid transcriptional network revealed by genome-wide identification of BESI target genes in Arabidopsis thalianaUpstream-443
Motif_658GT1CONSENSUSConsensus GT-1 binding site in many light-regulated genes, e.g., RBCS from many species, PHYA from oat and rice, spinach RCA and PETA, and bean CHS15; GT-1 can stabilize the TFIIA-TBP-DNA (TATA box) complex; The activation mechanism of GT-1 may be achieved through direct interaction between TFIIA and GT-1; Binding of GT-1-like factors to the PR-1a promoter influences the level of SA-inducible gene expressionUpstream-316
Motif_672AP2The floral homeotic protein APETALA2 recognizes and acts through an AT-rich sequence elementDownstream1450
Motif_682GT1GMSCAM4GT-1 motif found in the promoter of soybean CaM isoform, SCaM-4; Plays a role in pathogen- and salt-induced SCaM-4 gene expressionUpstream-316
Motif_69CTRMCAMV35SCT-rich motif (inverted GAGA) found in a 60-nucleotide region (S1) downstream of the transcription start site of the CaMV 35S RNA; Can enhance gene expression; Inverted GAGAUpstream-308
Upstream-306
Upstream-304