Amac033004.1
Basic Information
- Insect
- Anaspis maculata
- Gene Symbol
- Runx1
- Assembly
- GCA_949128115.1
- Location
- OX421966.1:65366911-65377133[+]
Transcription Factor Domain
- TF Family
- Runt
- Domain
- Runt domain
- PFAM
- PF00853
- TF Group
- Beta-Scaffold Factors
- Description
- The AML1 gene is rearranged by the t(8;21) translocation in acute myeloid leukemia [1]. The gene is highly similar to the Drosophila melanogaster segmentation gene runt and to the mouse transcription factor PEBP2 alpha subunit gene [1]. The region of shared similarity, known as the Runt domain, is responsible for DNA-binding and protein-protein interaction.In addition to the highly-conserved Runt domain, the AML-1 gene product carries a putative ATP-binding site (GRSGRGKS), and has a C-terminal region rich in proline and serine residues. The protein (known as acute myeloid leukemia 1 protein, oncogene AML-1, core-binding factor (CBF), alpha-B subunit, etc.) binds to the core site, 5'-pygpyggt-3', of a number of enhancers and promoters.
- 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 2 0.62 5.4e+03 -1.8 0.0 11 34 45 68 39 74 0.78 2 2 6.6e-52 5.7e-48 163.0 0.0 4 93 298 387 295 391 0.97
Sequence Information
- Coding Sequence
- ATGTCATCAAACAAAGGAACAAGCTGTGGACGAGGCCGAGGAAGAGGCTGGATGAATAATCCGAGAATTGCGCTACCGAAACCTGGTGAATGTGCCAATTCTGCCTCCAGTGGAATGGACAAATGCACACTACAAGTAATAGCATCCAGCAGCGAAAAGTTTTTTTGTGATGTCGTGGATACTAAATTCATCCTAAATGAAATTGCAAGTGTGGACTTGCAGGACGACACAAAGTTCAATGAAAGGCTTCAGTCCATTTACAAACAGCTTGAAAGCTGTGGATCTGAAGAGAAAGTGGAGAAATACTTCGAGAACATCTTCAAATCGTGTTTGGCTGACAACGACTCATCAACCAAACTCGCAGGTCTGGTAGCAAAGTGCGCTTTTCCGCTACAAGAAGTCCACGCTACAAATCTCTGTAGACTATTTTTGACGAATCTACAAATGAATTTTGAAGAACGCAAAAATTTACTAAAAGATCAACCTAGCATGTTCCGCAATCTAGTCGTTCTGATTGGGGAGTTTTTAGCAAAAGCCAAGCTGCAAAATGGGGAACATTGTGACTTCCTGACGCCTTCGTTCCTGATTTGCCTGGAGCTGATACTGGATTCGGGGGCATCTGAAGACGACGCCATGCTATTCACTACTCAGctttattTGAATGGAAGACGGAGCATGAAGACGCATCCAGATGAGACGAAGAACCTTCTGAGGAAAGTACGTCGTCTCCTCTCCGCAAAACCAGATCTCACGAAGAAGTCCAAGACCTGGTTGCTGCTGGCCTTAGATCTGTCTAAGAAACAATCTGGAGACTTGAATTTGCTttatTTCGAATTCAGGGGATACGGCAATCTGACGGCCGAGATGCTGGCCGAGAGGACCATCGACGGCCTGCTGGCCGAGCATCCCGGCGAGCTGGTCCGGACCGGCAGTCCGCACGTCGTCTGCACGGTCCTGCCGCCCCACTGGCGCTCCAACAAGACGCTGCCGGTGGCCTTCAAGGTGGTGGCCTTGGGGGACGTGGGCGACGGCACCGTGGTCACCGTCAAGGCCGGCAACGACGAAAACTACTGCGCCGAGCTGCGGAACTGCACGGCCGTCATGAAGAACCAGGTGGCCAAGTTCAACGACCTGCGGTTCGTCGGACGAAGCGGACGAGAAATCGAAAAAGTTGAGGAAAATGAAGAGTGCGATAAGACGTTAAAACCAAAACTGAGGAACCAGGAGAGACTGAAGAAGGGGATTTATCATCTTCAAGACGATTAG
- Protein Sequence
- MSSNKGTSCGRGRGRGWMNNPRIALPKPGECANSASSGMDKCTLQVIASSSEKFFCDVVDTKFILNEIASVDLQDDTKFNERLQSIYKQLESCGSEEKVEKYFENIFKSCLADNDSSTKLAGLVAKCAFPLQEVHATNLCRLFLTNLQMNFEERKNLLKDQPSMFRNLVVLIGEFLAKAKLQNGEHCDFLTPSFLICLELILDSGASEDDAMLFTTQLYLNGRRSMKTHPDETKNLLRKVRRLLSAKPDLTKKSKTWLLLALDLSKKQSGDLNLLYFEFRGYGNLTAEMLAERTIDGLLAEHPGELVRTGSPHVVCTVLPPHWRSNKTLPVAFKVVALGDVGDGTVVTVKAGNDENYCAELRNCTAVMKNQVAKFNDLRFVGRSGREIEKVEENEECDKTLKPKLRNQERLKKGIYHLQDD
Similar Transcription Factors
Sequence clustering based on sequence similarity using MMseqs2
- 100% Identity
- -
- 90% Identity
- -
- 80% Identity
- -