Basic Information

Gene Symbol
ewg
Assembly
GCA_029255805.1
Location
JARACZ010000001.1:9083708-9093337[-]

Transcription Factor Domain

TF Family
Nrf1
Domain
Nrf1_DNA-bind domain
PFAM
PF10491
TF Group
Basic Domians group
Description
In Drosophila, the erect wing (ewg) protein is required for proper development of the central nervous system and the indirect flight muscles. The fly ewg gene encodes a novel DNA-binding domain that is also found in four genes previously identified in sea urchin, chicken, zebrafish, and human [1]. Nuclear respiratory factor-1 is a transcriptional activator that has been implicated in the nuclear control of respiratory chain expression in vertebrates. The first 26 amino acids of nuclear respiratory factor-1 are required for the binding of dynein light chain. The interaction with dynein light chain is observed for both ewg and Nrf-1, transcription factors that are structurally and functionally similar between humans and Drosophila [2]. The highest level of expression of both ewg and Nrf-1 was found in the central nervous system, somites, first branchial arch, optic vesicle, and otic vesicle. In the mouse Nrf-1 protein, Swiss-Prot:Q8C4C0 there is also an NLS domain at 88-116, and a DNA binding and dimerisation domain at 127-282. Ewg is a site-specific transcriptional activator, and evolutionarily conserved regions of ewg contribute both positively and negatively to transcriptional activity [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 4 4.1e-107 3.5e-103 344.8 0.0 1 212 83 301 83 302 0.96
2 4 6.8e-06 0.059 14.0 0.0 193 212 313 332 309 333 0.90
3 4 6.8e-06 0.059 14.0 0.0 193 212 344 363 340 364 0.90
4 4 6.8e-06 0.059 14.0 0.0 193 212 375 394 371 395 0.90

Sequence Information

Coding Sequence
ATGGTCCGAGATTCAGACCAAGAAACGGAACAAGAGCAAAACTTCATCATGAACTCTGCCGTCAGCACCGAGTCTATGGACATGGCTGAGGAGGACATGTCGGCGGTAGAGGGATGCGGGCTGTCCGGCGGCTCTGAGGAGGAGGATGAGTGCGCATCATCGCCCGCCGGGTCCGCGTATGACGACAGCGGGGACATCATCAAGACCGCCATGAATGATGAAGTCACCAAACAGCTGGCTGCCGCTGGCCCAGTGGGAATGGCAGCCGCCGCTGCTATAGCGTCATCCAAGAAGCGCAAGAGACCGCACTCGTTCGAGACCAACCCGTCGGTACGCAAGCGTCACCAGAACAGACTACTTAGGAAACTCAGGCAAACGATAGAAGAGTTCGCGACCCGCGTGGGGCAGCAGGCCGTGGTGCTGGTGGCGACGCCCGGCAAGCCCAACACCTCGTACCGCGTGTTCGGCGCTAAGCCGCTCGAGGACGTGATCCGCAACCTGCGCTGCATGATCATGGAGGAGCTGGAGAACGCGCTCGCACAACAGTTCGGTCTGGGCGCGGGCGGGcaggcgccgccgccgccggccgaGGACCCCGCGCTGTTCGAGCTGCCGCCGCTGATCATCGACGGCATCCCCACGCCCGTCGAGAAGATGACGCAGGCGCAGCTCCGCGCCTTCATACCGCTCATGCTCAAGTACTCCATGGTGCGCGGCAAGCCGGGCTGGGGGCGGGACTCGACGCGGCCCCCGTGGTGGCCCAAGGACCTGCCGTGGGCCAACGTTCGCATGGACGCGCGCACCGAGGACGAGAAGCAGAAGATGTCCTGGACGCACGCGCTGCGCCAGATCGTCATCAACTGCTACAAGTACCACGGCCGCGAGGACCTGCTGCCCGCCTTCACTGATGACGACGACAAGCCGCACACGCCGCAGCAGACTATCGTCATCAACTGCTACAAGTACCGCGGCCGCGAGGACCTGCTGCCCGCCTTCACTGATGACGACGACAAGCCGCACACGCCGCAGCAGACTATCGTCATCAACTGCTACAAGTACCGCGGCCGCGAGGACCTGCTGCCCGCCTTCACTGATGACGACGACAAGCCGCACACGCCGCAGCAGACTATCGTCATCAACTGCTACAAGTACCGCGGCCGCGAGGACCTGCTGCCCGCCTTCACTGATGACGACGACAAGCCGCACACGCCGCAGCAGACTGTATCGAGCTGCATGTCGAGCTCGCACGACTCGCCCGGCGGGACCGGCAGCACCAGCcgccagcagcagcagcagatgACCACGCAGCAAGTCTGCATCGATCAGATGACGCTGGCTGATGTTGATATGTCAGGTTACGCGCCAGCAGTTCTTCAGACGATCACGAACCCGGACGGGTCGGTGTCGCTGATCCAAGTGGACCCCAACAACCCCATCATCACGCTGCCGGACGGAACCACGGCGCAAGTCCTTCACAGCGGCGAGGGCGGCGTAGTGCAGGCCATGGACGGCGAGGTGGCGGTCGACCTGAACGCGGTCGCCGAGGCCACGCTCAACCACGACGGGCAGATCATACTCACCGGCGAGGACGGCCATGGCTACCCGGTGTCGGTGTCGGGCGTGATCACGGTGCCGGTGTCGGCCAGCGTGTACCAGTCGATGGTGGCCAGCATGCAGGCGCAGGACGGCGTGTGCGTCGCGCCCATCGTGCAGGTGCCCATTAAGCTCGAGCCTTACGACACCTAG
Protein Sequence
MVRDSDQETEQEQNFIMNSAVSTESMDMAEEDMSAVEGCGLSGGSEEEDECASSPAGSAYDDSGDIIKTAMNDEVTKQLAAAGPVGMAAAAAIASSKKRKRPHSFETNPSVRKRHQNRLLRKLRQTIEEFATRVGQQAVVLVATPGKPNTSYRVFGAKPLEDVIRNLRCMIMEELENALAQQFGLGAGGQAPPPPAEDPALFELPPLIIDGIPTPVEKMTQAQLRAFIPLMLKYSMVRGKPGWGRDSTRPPWWPKDLPWANVRMDARTEDEKQKMSWTHALRQIVINCYKYHGREDLLPAFTDDDDKPHTPQQTIVINCYKYRGREDLLPAFTDDDDKPHTPQQTIVINCYKYRGREDLLPAFTDDDDKPHTPQQTIVINCYKYRGREDLLPAFTDDDDKPHTPQQTVSSCMSSSHDSPGGTGSTSRQQQQQMTTQQVCIDQMTLADVDMSGYAPAVLQTITNPDGSVSLIQVDPNNPIITLPDGTTAQVLHSGEGGVVQAMDGEVAVDLNAVAEATLNHDGQIILTGEDGHGYPVSVSGVITVPVSASVYQSMVASMQAQDGVCVAPIVQVPIKLEPYDT

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

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