Basic Information

Gene Symbol
-
Assembly
GCA_001594055.1
Location
NW:463293-475038[+]

Transcription Factor Domain

TF Family
zf-BED
Domain
zf-BED domain
PFAM
PF02892
TF Group
Zinc-Coordinating Group
Description
The BED finger, which was named after the Drosophila proteins BEAF and DREF, is found in one or more copies in cellular regulatory factors and transposases from plants, animals and fungi. The BED finger is an about 50 to 60 amino acid residues domain that contains a characteristic motif with two highly conserved aromatic positions, as well as a shared pattern of cysteines and histidines that is predicted to form a zinc finger. As diverse BED fingers are able to bind DNA, it has been suggested that DNA-binding is the general function of this domain [3].
Hmmscan Out
# of c-Evalue i-Evalue score bias hmm coord from hmm coord to ali coord from ali coord to env coord from env coord to acc
1 7 0.003 2.1 7.7 1.3 7 44 57 94 55 94 0.82
2 7 0.00011 0.076 12.3 3.0 3 44 110 147 109 147 0.94
3 7 0.019 14 5.1 3.2 6 44 221 259 219 259 0.88
4 7 6.1e-07 0.00044 19.5 2.5 3 44 275 313 274 313 0.95
5 7 2.9e-06 0.0021 17.3 3.9 6 44 386 424 383 424 0.85
6 7 0.00036 0.25 10.7 3.1 3 44 440 477 439 477 0.91
7 7 2.7e-05 0.019 14.2 0.8 4 44 480 516 479 516 0.92

Sequence Information

Coding Sequence
ATGGATGCAAACAAGGATATAACTCTAAGAAAAACGAAACGTCAAGAAGCTTCAtctaattcaacaaatttatcTGACAATTTGTATGAATGTGCAGAAGGAACAGAAGCAATTAATGAggCAACAACATACAATTTAATCCCAATCCGTCGCTGGATGCGTGAACATTACACAAGGTTGACAGGGAATGCCAGAGCAACATGCAATCATTGTgacgtaaaatttaatatagatataaactACTTACTACCTTTTCATAAGCACTTGGTTAAAACACATCCAGACAAATTAatagaagaagagaagaatgaAGTGCAATTCCATTGGGTTTGGGATTATTATATCGTGAAAAACGAGAGACAAGCAACATGCAAACGATGCacatcaataattatatgcgACACAGCTGCTTTAAAGAAACACTTAAAAAGAATGCACAAGATATCAGTTCCTTCAGATAATGTAACAGATAACGAAATCAATTCAGATGATGAAAGGGATGCAAACAAGGATATAACTCTAAGAAAAGCAAAACGTCAAGAAGCTTCATCTAATTTAACAAACTTATCTGACAGTTTAAACGAATATACAGAAGGAATAAAAGGACTTAATGAGGAAGCACAAAACAATTTGGTCCCAGTTCGGCTCTGGATACGTGGACATTACACAGAATTGACAAGGACTAACGAAACAAAATGCATTCattgtaatgtaatattcCCCATATATATGAACAAATTAGATACTTTACACAAGCACTTGGTAGAGACACATTCAGACAAATTAGCAGAAGAacagaagaaagaaattaaattccatTGGATTTGggattattatattgaaaaaaacgaTAGACATGCAACATGCAAACGATGCAAAAGAATAATCATGTACAACTCAACAAGTGATTTAGGAAGACACTTAAAAGAAACACACAAGATATCAGGTCCAACTTCAGATAATGTAATAGATAACGAAGAAAGCAGTTTAGATGATGACATGGATATAACTCTAAGAAAAGCGAAACATCAAGAAGCTTCAtctaattcaacaaatttatcTGACAATTTGTACGAATATGCAGAAGGAACAGAAGCAATAATTAACGAagAAGCAGCAGACAATTTTATTCCAGTTCGTTGCTGGATACGTGAACATTACACAAAATTAACAAGAAGTAATGAAGCAACATGCAATCACTGTAATGCAAAAttcgttatacatatatctaacttaattattttacataagcaTTTGGTAGAAGCACATCCAGACAAATTAGCAAAAGAACAgaagaatgaaattaaattccatTGGATTTGGGACCATTATATCGCAAAAAGCGATAGAGAAGCATCATGCAACCGATGCAAAACAATAGTCATATGCGACATAACTGCTTTGAAAAAACACTTAAGAAGAATTCACAATTGGCCCTGGgactattttactttaaaagacTGTATGTCaatatgcaaaatatgtaAAGCAGCAATTAGGAGCAGAGATGTAACTCAATTTAAAggacacttaaaaaaatatcacaaGATATTCGGTCCCGGTTCAGATAATGACATAGATAACGAGAACAATTCGGATAATTATATGGATGCAGATACGActgtaaaaaatgcaaaacatCAAGAAGACTTATCTAACTCAACAGaAACTTATGACATAGCTCGTAAAATGGAGAAAGAGGCAACTAATGTTTCTACAAATGAAGGACGATTTCAAGCATTGAGTCAAAATTGTTTGACAACACCCAAAAAGAGAATGatcaaaaaatttcttgaagaaattaaagaagCTGCCAACATTACACATGTTACGAAGAAATTAAAGAGCGTGCCATCGCCACcttcaaattataaagttaataataaaaataacctGACATCTGTGCATCTGTCTACTTCAACGAGTAATATTGATTATGACACAGAATCTAATGaatttgtaaaaaaaaaaaattctgtgcCAATTTCTTCGTCCACTCATATGGACTCATCTAATGTGTCTGCATCCGTATATCGTTTTACTTCCACTGCAAAGAGTAACATGGGCATCAATGATAAAGTAAATgAATATGTACGTAATAATACAAGCACTGACAACTTTGAACAAGATGATATACGTAATAATATAAGCACTGCCAACTCTAAAGAAGTAGATGATGTTTCACGTGTACGTAATGAAAACTtcttggaaaaaaatgttagagtGGAAGACAATACTGAGTATGCAAAGAGTAATACggatatcaataataaagtaaatgaatttctaaaaaaggCAAATTCTGTGCTAATTTCTTCGTCCACTCATATGGACTCACCTGTGTCTGCATCCGTGTATCGTTCCACTTCCACTGCAAAGAGTAACATAGACAGCAGTGATAAAGTAAATgAATATGTACGTAATAATACATGCACTGACAACTTTGAACAAGATGATACACGTAATAATATAAGCACTGACAACTCTGAAGAAGTAGTTGATGTTTCACGTGTACGTAATGAAAACTTCTTGGAAGACAATGTTAGAGTGGAAGACAATACTGAGTTTGAATCACAATCTACAAGAGGTATAAACGGAGAGCAAAAGATGCTATTCTGGccattgtatatgtattggcCTCCctcaatatctccgctattatatgtagcgaatcctaatgattacttatga
Protein Sequence
MDANKDITLRKTKRQEASSNSTNLSDNLYECAEGTEAINEATTYNLIPIRRWMREHYTRLTGNARATCNHCDVKFNIDINYLLPFHKHLVKTHPDKLIEEEKNEVQFHWVWDYYIVKNERQATCKRCTSIIICDTAALKKHLKRMHKISVPSDNVTDNEINSDDERDANKDITLRKAKRQEASSNLTNLSDSLNEYTEGIKGLNEEAQNNLVPVRLWIRGHYTELTRTNETKCIHCNVIFPIYMNKLDTLHKHLVETHSDKLAEEQKKEIKFHWIWDYYIEKNDRHATCKRCKRIIMYNSTSDLGRHLKETHKISGPTSDNVIDNEESSLDDDMDITLRKAKHQEASSNSTNLSDNLYEYAEGTEAIINEEAADNFIPVRCWIREHYTKLTRSNEATCNHCNAKFVIHISNLIILHKHLVEAHPDKLAKEQKNEIKFHWIWDHYIAKSDREASCNRCKTIVICDITALKKHLRRIHNWPWDYFTLKDCMSICKICKAAIRSRDVTQFKGHLKKYHKIFGPGSDNDIDNENNSDNYMDADTTVKNAKHQEDLSNSTETYDIARKMEKEATNVSTNEGRFQALSQNCLTTPKKRMIKKFLEEIKEAANITHVTKKLKSVPSPPSNYKVNNKNNLTSVHLSTSTSNIDYDTESNEFVKKKNSVPISSSTHMDSSNVSASVYRFTSTAKSNMGINDKVNEYVRNNTSTDNFEQDDIRNNISTANSKEVDDVSRVRNENFLEKNVRVEDNTEYAKSNTDINNKVNEFLKKANSVLISSSTHMDSPVSASVYRSTSTAKSNIDSSDKVNEYVRNNTCTDNFEQDDTRNNISTDNSEEVVDVSRVRNENFLEDNVRVEDNTEFESQSTRGINGEQKMLFWPLYMYWPPSISPLLYVANPNDYL

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

100% Identity
-
90% Identity
-
80% Identity
-