Basic Information

Gene Symbol
PolE1
Assembly
GCA_905340225.1
Location
HG996505.1:3427245-3461003[+]

Transcription Factor Domain

TF Family
MYB
Domain
Myb_DNA-binding domain
PFAM
PF00249
TF Group
Helix-turn-helix
Description
This family contains the DNA binding domains from Myb proteins, as well as the SANT domain family [1].
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 34 0.064 84 3.7 0.0 26 46 2171 2192 2169 2192 0.82
2 34 0.064 84 3.7 0.0 26 46 2217 2238 2215 2238 0.82
3 34 0.092 1.2e+02 3.2 0.0 26 46 2263 2284 2261 2284 0.81
4 34 0.064 84 3.7 0.0 26 46 2309 2330 2307 2330 0.82
5 34 0.064 84 3.7 0.0 26 46 2355 2376 2353 2376 0.82
6 34 0.064 84 3.7 0.0 26 46 2401 2422 2399 2422 0.82
7 34 0.064 84 3.7 0.0 26 46 2447 2468 2445 2468 0.82
8 34 0.064 84 3.7 0.0 26 46 2493 2514 2491 2514 0.82
9 34 1.4 1.9e+03 -0.6 0.0 26 46 2539 2560 2538 2560 0.77
10 34 0.064 84 3.7 0.0 26 46 2585 2606 2583 2606 0.82
11 34 0.064 84 3.7 0.0 26 46 2631 2652 2629 2652 0.82
12 34 0.064 84 3.7 0.0 26 46 2677 2698 2675 2698 0.82
13 34 0.064 84 3.7 0.0 26 46 2723 2744 2721 2744 0.82
14 34 0.064 84 3.7 0.0 26 46 2769 2790 2767 2790 0.82
15 34 0.064 84 3.7 0.0 26 46 2815 2836 2813 2836 0.82
16 34 0.064 84 3.7 0.0 26 46 2861 2882 2859 2882 0.82
17 34 0.064 84 3.7 0.0 26 46 2907 2928 2905 2928 0.82
18 34 0.064 84 3.7 0.0 26 46 2953 2974 2951 2974 0.82
19 34 0.064 84 3.7 0.0 26 46 2999 3020 2997 3020 0.82
20 34 0.064 84 3.7 0.0 26 46 3045 3066 3043 3066 0.82
21 34 0.064 84 3.7 0.0 26 46 3091 3112 3089 3112 0.82
22 34 1.4 1.9e+03 -0.6 0.0 26 46 3137 3158 3136 3158 0.77
23 34 0.064 84 3.7 0.0 26 46 3183 3204 3181 3204 0.82
24 34 0.064 84 3.7 0.0 26 46 3229 3250 3227 3250 0.82
25 34 0.064 84 3.7 0.0 26 46 3275 3296 3273 3296 0.82
26 34 0.064 84 3.7 0.0 26 46 3321 3342 3319 3342 0.82
27 34 0.064 84 3.7 0.0 26 46 3367 3388 3365 3388 0.82
28 34 0.064 84 3.7 0.0 26 46 3413 3434 3411 3434 0.82
29 34 0.064 84 3.7 0.0 26 46 3459 3480 3457 3480 0.82
30 34 0.064 84 3.7 0.0 26 46 3505 3526 3503 3526 0.82
31 34 0.064 84 3.7 0.0 26 46 3574 3595 3572 3595 0.82
32 34 0.064 84 3.7 0.0 26 46 3620 3641 3618 3641 0.82
33 34 0.064 84 3.7 0.0 26 46 3666 3687 3664 3687 0.82
34 34 0.064 84 3.7 0.0 26 46 3712 3733 3710 3733 0.82

Sequence Information

Coding Sequence
ATGGTTTTACAAAACACAGGAAAGTATAAATCAGACCGAGATGATTCTGGGAGAAGAGATGCTGGTTCGTCCACGGGCCCCAGGGAGGAATCATCTGAGTCCCGTATTCGGGTTGCCTTGGACAATGATAGGATTGATTCGAAGTACGGCTTCGACAGAGTTCGGGACGTCAAAGAAAGGACTGGGTACTTGATAAATATGCACACTGCAGAAATATTGGATGAAGATAAGCGGCTAGTAGCGGCCATGGACTATTACTTTATAGAGATGGATGGCTCCAGGTTCAAGGTGTCCCTGACCTTCCAGCCTTACTTCTTCATCCTGGCTCGAAAAGAGTGTGAGCAGGAAGTCATTCAGTTCATATCCAAAAGGTTTGCTGGCACCACACACAAGATTGAGGTTGTTGAAAAGGAAGATTTGGATCTTCTAAACCACTTATCTGGCTCAAAACAGAGGTACATAAAACTCTCATTTATGTCACAAAGTGAACTGATGAAGGTGAGGAGGGAGATCTTAACCGCTGTCAACAAAAATAAGGAGAGAGAGAAGAAGGATCAGATCTATGCGGAGATGTTGACTAATGCTTTGACCAGTGCAGCTGCTATTGAACATGCTAAGAAGACCACTGACCATATGGAGAACATCCTAGATATAAGGGAACACGATGTCCCATACCATGTCCGAGTATCAATTGACATGCAGATCTTCTGCGGCACCTGGTACACTGTCAAGAGCCGGGGCACAGAAACGCCAATATTTACCAAGAGGGACGACATCATTGAGAGACCAGACCCCATAGTCCTGGCCTTCGATATTGAGACCACCAAACTGCCCCTAAAGTTCCCGGACTCGCAGACGGATCAGATTATGATGATATCTTACATGATTGATGCTCAGGGATACTTAATCACTAACCGGGAGATCATATCCGTTGATGTTGAGGACTTTGAGTATACACCGAAGCCGGAGTTTGAAGGGCAATTCATAATTTTTAATGAAGAAAATGAGCAAGCTCTAATACAGAAGTTCTTTGATCACATTATGGATGTCAAGCCACATATTTTTGTCACATACAATGGGGACTTCTTCGACTGGCCGTTTGTGGAGGCGCGCGCAGCCGTACTGGGCTTGGACATGAAGCAAGAAATAGGCTTCAGTAAAATAGCGGCCAGGGACGGCACGTACGCGTGTCGACCGGCCATGCACATGGACTGCTTGTGTTGGGTCAAAAGAGATTCGTACCTACCAGTGGGGTCCCAAGGTCTGAAGGCCGTCGCCAAAGCGAAGCTAAGGTATGACCCTGTGGAGTTAGACCCCGAGGACATGTGCAGAATGGCGGCCGAACAACCTCAGGTGCTGTCAAACTATTCAGTATCAGACGCGGTCGCAACATACTACTTGTACATGAAATATGTTCACCCCTTTATATTTGCTCTCTGCACCATCATTCCCTTGGAGCCGGACGAGGTGCTTCGTAAAGGTTCAGGCACGCTCTGCGAGTCGCTGCTCATGGTGCAAGCGTTCCATGCCAACATCGTGTTCCCTAACAAGCAGGTCGAGGAGCTCAACAGGCTCACGACCGACGGCCACGTGCTGGAGACTGAGACCTACGTCGGCGGACATGTGGAGGCACTTGAGTCCGGTGTATTCAGAGCAGACATAAAATGTAAGTTCAAGATAGTGCCGTCAGCAGTAGAAATGTTGATGGAGACCACTGAGAAGACCATGAGACACGCCATCGAGGTGGAGGAGGGGATCCCGCTGGAGCTGGTGACCAACTTCGAAGAGGTCTGCGCGGAGATCAGGGCCAAGCTGCAGCACATGAAGGACCATCCCAGGAGGGACGAGAACCCACTGATATACCACCTGGATGTCGGCGCTATGTATCCGAACATCATTCTGACTAATAGACTGCAGCCATCAGCGATGGTAAACACGAGCGTGTGCGCAGTGTGCGACTACAACCGTCCCGGAGCCACCTGCCAGAGACACATGGAGTGGATGTGGCGCGGGGACTACTTGCCCGCAACGAGGAGCGAGTACCAGCGCATTCAACAGCAGTTGGAAACGGAGAAGTTCCCGCCGCTGCACCCCGGGGGACCTACCAGGGCCTTCCACGCGCTGCCCAAGGAAGACCAGGCTGCATATGAAAAGAAGAGATTGGCAGACTATTGCAGAGTGGCATACAAGAAGACTAAAGTGACGCGCACAGAAGTGAGAACTACAACCATATGTCAGAAGGAGAACTCCTTCTATGTGGATACCGTGCGGGCGTTCAGGGACCGTCGTTACGAATATAAGGCCTTGAACAAACAGGCGAAGGCCAAAGTGTCGGAGGCGATCGCGAGTGGGGACGCAGCCGAGATTAAGTCAGCTAAAAGTCGTGAAGTTCTGTACGACTCGCTACAACTCGCACACAAGTGCATTCTCAACTCCTTCTACGGTTACGTCATGAGGAGAGGCGCTCGCTGGCACAGCATGGAGATGGCAGGCATTGTGTGCTACACGGGCGCCAACATTATCATGAAGGCCAGGGAGATTATAGAACAGATTGGACGGCCGCTGGAGCTTGATACTGATGGTATTTGGTGCATACTCCCGTCATCGTTCCCCGAGAACGTGACGGTCCTTACAACTCATGCGAAGAAAAAGAAAATCAATGTTTCCTTCCCAAACGCCGTCCTCAACTCTATGGTCAAGGATCACTTCACGAACGAACAATACTTCGAGCTGGTAGACCCTGAACAGAAGAAGTATGAGCAGCGGTCAGAGAACTCAATATTCTTCGAAGTAGATGGCCCGTACCTCGCCATGGTGCTACCAGCGTCCAAGGAAGAAGGGAAACGACTGAAGAAGAGATATGCTGTGTTCAACTTCGACGGGTCGTTGGCTGAGCTAAAAGGTTTCGAAGTCAAACGCCGCGGAGAACTGCAGCTGATCAAGATCTTCCAATCATCAGTCTTCGAGGCTTTCCTCAAGGGGAATGACCTCAAGTCTTGCTACAGCGCAGTCGCGAAGGTTGCCGACTACTGGCTCGACGTGCTGTATAGTAAAGGCAGTAATATGCCAGATTCAGAGTTGTTCGAGCTGATCTCTGAGAACAGATCCATGTCCAAGAAGTTAGAGGACTATGGAGGTCAGAAGTCCACTTCGATATCTACTGCTAAACGGTTGGCCGAGTTTTTAGGTGATCAGATGGTGAAGGACGCGGGGCTGGCTTGTAGGTTCATAATATCAAGGAAGCCAGAAGGTGCCCCCGTCACGGAGCGCGCCATCCCTCTAGCCATATTCCAGTCCCCGGCTGCAGTAAAACGCCACCATCTTCGTCGCTGGCTGAAAGACAACAGCATTTCTGAGGAAATAGACATCAGGGATGTTCTGGACTGGGCGTACTATATAGAGAGGCTTAGTGGTGCTATACAGAAGATTATTACTATACCAGCGGCTATGCAGGGTCTCGACAACCCGGTGCCTCGATGTCAGTACCCAGACTGGCTGCACAAGAAGATGTTAGCCAAGACAGACAAGTTCAAGACCAGGAAGATCACAGACATGTTCTCCGCTAAGCCCAAGGAACTCAAGCAGTATGGCGAAGATGGAGAAGAACCGTCTACCAGTTCTGATGGAGCTATGGACACTGAAGTGGACATTGAAGACATAGGAAAGGACAACAGTGAAAAGAGCAACACGATTCGTCCGATAGTGCATACGGTGAAGCGGAAACGTGAGGAATCTCCCCCCAAAGAACCTCAGAACTGGCAGGAGGCGCTGGGGCCGCCGCCACCCTTCGGAACCACCAAGGCAGAAAGAAAACAATGGATACTGTTTCAAAAAAAGAAATGGCTTTGGCAAATGGAGCAGCGGGGACTTCGGAACCGCAGTAAAAGAGGTAAAATGGACAGGGACATGATGCCACCACCTAAAGCCGGCCCCGCCACTACCCTCGGAGGGTTCATAAGGAGAGCTCAGCGCACGCTACTTAACACACCCTGGCAGATCATACAGGTGGCAGAAACAGCAGAGCCGGGCCTATTTAAAGTGTGGGCGCTAGTAGGCACGGAGCTGCACCAGATCAAGCTGTCAGTGCCGCGCATCTTCTACGTGAACCAGCGCGTGAGTCGCGCGGCCGACTGCGGCCAGTACTGGCGCAAGTGTAGCCGCATCCTGCCGCGTGCGCACCCCGTGCTGCACCTGTACCAGTACACCGTGCCCGAGCATCTGTACAGGGAGCATCAGGAGGAACTGACATCAGAACTGTGCGCGCCCGAAATCGAAGGCATATATGAGACGCAAATGAGTTTGGAGTTCAGAGTGCTCGTCCAACTGGGCTGTATATGCACTGTGGATCCACAGGAAGCCAGGAAGTTAATCCAATTTGGTTCTACAAACATGGATTCGTTCGCGCTCAGTCAGCTTCAGTTTAAGAGTGTGGCTCTCCAACCTTATCTACAAAAGCAGGACGGCGTCCCCCCGGTGAAGCACATCTACCTGTACCAGCACTCCGCGCTGAACTCCTCGCGCAGCATGTGGGCGCTGCTGCTGCCGCCCGTGCGCCGCGCCTACCTGTACGTGCTGGACACCGTGCGCACCAACCAGCTGCCCAACATGAACACGCTGTACCTGGCCGAGAGGACTGCCAAGATAAACCTGGGCACCGATGAGGATACGTTACCGAGCGCGGACCTTACCTGGGAAGTAGTGCTGGAGACAGAGGCGCGCGCCGTGAGCCGCCACGTGCAGCGCGCCCTGCAACGTTACAAGGACGAGCGCTGCGGGCCCACGCTGCTCGCGCTGCAGGCCTCGCTCTCGCCACACCTGCTCATGCAGCTCATGCCCGGGTTGTCAGAATTCCCGATCGTGCCGATCCACGTCCGCGATGTGGAGACCCTGTACAGCTCGCTGGAGTGGCAGCGGATCGGCTCCAGGGCTATCGTGAGGCACTACCTAGGGCTGGACGCTATCCTGCAACTCACGATTGAACAGTGCAGGTACTTCCACGTGCCGGTAGGCAACATGCCCGCAGACCCCACCCTGTTCGGCGCGGACCTGTTCTACGCGCGCCACCTCATCAAACACAACTTCGTGCTGTGGTGCTCCAACATGGACCGACCAGACCTTGGCGGGAGGGAGACGGACGATAACAGACTAGTGAGTGAAGTAGAAGAGCTATCGGGCTGCACGCACATCGCGCGCGGCGCGTACAGCAGCGTGTGCGTGGAGCTGGAGACGGACGCGCTGGCCGTGTGCGCGCTGCTGCAGGCGCACGCCGTGCTCGGCGCCGAGGGCACCAGCCTGGCCACGGCCTTCGGCGCGCAGCACCACAACATACAGGACGCTATGGCCAATGCTGGTGAGCTCCACACTGAACACACTAGCTATCGGGCTGCACGCACATCGCGCGCGGCGCGTACAGCAGCGTGTGCGTGGAGCTGGAGACGGACGCGCTGGCCGTGTGCGCGCTGCTGCAGGCGCACGCCGTGCTCGGCGCCGAGGGCACCAGCCTGGCCACGGCCTTCGGCGCGCAGCACCACAACATACAGGACGCTATGGCCAATGCTGGTGAGCTCCACACTGAACACACTAGCTATCGGCTGCACGCACATCGCGCGCGGCGCGTACAGCAGCGTGTGCGTGGAGCTGGAGACGGACGCGCTGGCCGTGTGCGCGCTGCTGCAGGCGCACGCCGTGCTCGGCGCCGAGGGCACCAGCCTGGCCACGGCCTTCGGCGCGCAGCACCACAACATACAGGACGCTATGGCCAATGCTGGATCGAATGCGTCGATGCCGTACGACGAGACTGCGCAATGCAGCGCGGCCTTCAAGGTCCTGCGCACAATGATCGCCTCGTGGTTGCGTGACGTCACGCAGTACAAGAACGTCTTCGCCGACTTCCAGATATCACATTTCTACAGATGGCTGAAGACCTCCTCGTCTCTCCTCTACGACCCTGCCCTCCGGCGCACCCTCTACAACCTGATGAAGAAGCTGTTCCTCATGCTGGTGGCGGAGTTCAAGCGGCTCGGCTCCCTCATCGTGTTCGCTGACTTCAACAAGATAATTCTCTGTACTAAGAAGAACACGGTGTTGGATGGGATTGGCTACGTGGAGTTCGTGGTGCAGAGCATCAGGAACAAGGAGTTGTTCCACGGCATCGACATCCGGTACAAGCAGTGCTGGTCCTACCTGCTGTGGCTGGACGAAGCCAATTATGCTGGGGTCCAGGGCAAGTTGCCGGACGGCTTGACTGAAGTTGGATCGTCACAGCTACCAGCAGCCAGCGAGGACGGGAACGGAGATGAGGAGGGTTCAATCACGATGCAGTGGAACCTGTCCCAGTTCCTGCCGGCGCCTGTCCGCGAGCCGTTCTCGGCGGCCGTGGCGGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCACGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCATACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGAACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTATGTATCGTACTGTACTAGATATAGATAGGGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGGGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGAACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTATGTATCGTACTGTACTAGATATAGATAGGGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCACGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGGGAGATCTCGCAGAAGCTGTTCCAGTAAGTATCGTACTGTACTAGATATAGATAGAGGCTTCCTCAGCGCCGCGTACTCACAACCTAAGGAGCTGGCCGCGCTCGTGCAGGGGGAGATCTCGCAGAAGCTGTTCCAGGTAACAGAGAAGATCAACACCCGTTACCCGGTGTTCCGTCCGTCGGACATCGGGCCGCAGCCGGGCCTGAAGCCCGACGCCTTCACCGGCGGCGCCAAGCCTGCGCTGCTGTACGTCAACGCCGTGTGTAAGGTGCTCGCGCTCGACACAGCGCTGGAGGACGAGGTAACCCTTCTCCGCCGCAACTTGCTGCGACTGATCGGCGTGGGCGAGTTCAGCAGCGCGGCGGAGTGGCGCGACGCGTGCAACACGTGCGTGCTGTCCGAGATCATCTGCAAGGTGTGCAACCACTGCCGGGACCTCGACCTCTGCCGCGACACCAACACGAGTGTCGTTAACGATGTGCCTGTATGTCTGTGCCCCACATGCGGCACTCCCTACGAGAACCAAGAGCTGGAGTGGAGGCTGGTGGAGGTGATGAACAGGAGGACCATGTCCTACGTGCTGCAGGACCTCGTCTGCAAGCGATGTCATCAGGTAAAACGTGAGAACATGACAATGGTGTGCGAGTGTGCCGGAGACTTCGCTCTCATGGTGCCGACCACAGAGGTCCTGTCACAACTGAACACCTTCAAGTCGATAGCCGAATACTACAAGATGCCATTACTATTGGAACTCATAGAATTTCATCTCAGCAACACGTGA
Protein Sequence
MVLQNTGKYKSDRDDSGRRDAGSSTGPREESSESRIRVALDNDRIDSKYGFDRVRDVKERTGYLINMHTAEILDEDKRLVAAMDYYFIEMDGSRFKVSLTFQPYFFILARKECEQEVIQFISKRFAGTTHKIEVVEKEDLDLLNHLSGSKQRYIKLSFMSQSELMKVRREILTAVNKNKEREKKDQIYAEMLTNALTSAAAIEHAKKTTDHMENILDIREHDVPYHVRVSIDMQIFCGTWYTVKSRGTETPIFTKRDDIIERPDPIVLAFDIETTKLPLKFPDSQTDQIMMISYMIDAQGYLITNREIISVDVEDFEYTPKPEFEGQFIIFNEENEQALIQKFFDHIMDVKPHIFVTYNGDFFDWPFVEARAAVLGLDMKQEIGFSKIAARDGTYACRPAMHMDCLCWVKRDSYLPVGSQGLKAVAKAKLRYDPVELDPEDMCRMAAEQPQVLSNYSVSDAVATYYLYMKYVHPFIFALCTIIPLEPDEVLRKGSGTLCESLLMVQAFHANIVFPNKQVEELNRLTTDGHVLETETYVGGHVEALESGVFRADIKCKFKIVPSAVEMLMETTEKTMRHAIEVEEGIPLELVTNFEEVCAEIRAKLQHMKDHPRRDENPLIYHLDVGAMYPNIILTNRLQPSAMVNTSVCAVCDYNRPGATCQRHMEWMWRGDYLPATRSEYQRIQQQLETEKFPPLHPGGPTRAFHALPKEDQAAYEKKRLADYCRVAYKKTKVTRTEVRTTTICQKENSFYVDTVRAFRDRRYEYKALNKQAKAKVSEAIASGDAAEIKSAKSREVLYDSLQLAHKCILNSFYGYVMRRGARWHSMEMAGIVCYTGANIIMKAREIIEQIGRPLELDTDGIWCILPSSFPENVTVLTTHAKKKKINVSFPNAVLNSMVKDHFTNEQYFELVDPEQKKYEQRSENSIFFEVDGPYLAMVLPASKEEGKRLKKRYAVFNFDGSLAELKGFEVKRRGELQLIKIFQSSVFEAFLKGNDLKSCYSAVAKVADYWLDVLYSKGSNMPDSELFELISENRSMSKKLEDYGGQKSTSISTAKRLAEFLGDQMVKDAGLACRFIISRKPEGAPVTERAIPLAIFQSPAAVKRHHLRRWLKDNSISEEIDIRDVLDWAYYIERLSGAIQKIITIPAAMQGLDNPVPRCQYPDWLHKKMLAKTDKFKTRKITDMFSAKPKELKQYGEDGEEPSTSSDGAMDTEVDIEDIGKDNSEKSNTIRPIVHTVKRKREESPPKEPQNWQEALGPPPPFGTTKAERKQWILFQKKKWLWQMEQRGLRNRSKRGKMDRDMMPPPKAGPATTLGGFIRRAQRTLLNTPWQIIQVAETAEPGLFKVWALVGTELHQIKLSVPRIFYVNQRVSRAADCGQYWRKCSRILPRAHPVLHLYQYTVPEHLYREHQEELTSELCAPEIEGIYETQMSLEFRVLVQLGCICTVDPQEARKLIQFGSTNMDSFALSQLQFKSVALQPYLQKQDGVPPVKHIYLYQHSALNSSRSMWALLLPPVRRAYLYVLDTVRTNQLPNMNTLYLAERTAKINLGTDEDTLPSADLTWEVVLETEARAVSRHVQRALQRYKDERCGPTLLALQASLSPHLLMQLMPGLSEFPIVPIHVRDVETLYSSLEWQRIGSRAIVRHYLGLDAILQLTIEQCRYFHVPVGNMPADPTLFGADLFYARHLIKHNFVLWCSNMDRPDLGGRETDDNRLVSEVEELSGCTHIARGAYSSVCVELETDALAVCALLQAHAVLGAEGTSLATAFGAQHHNIQDAMANAGELHTEHTSYRAARTSRAARTAACAWSWRRTRWPCARCCRRTPCSAPRAPAWPRPSARSTTTYRTLWPMLVSSTLNTLAIGCTHIARGAYSSVCVELETDALAVCALLQAHAVLGAEGTSLATAFGAQHHNIQDAMANAGSNASMPYDETAQCSAAFKVLRTMIASWLRDVTQYKNVFADFQISHFYRWLKTSSSLLYDPALRRTLYNLMKKLFLMLVAEFKRLGSLIVFADFNKIILCTKKNTVLDGIGYVEFVVQSIRNKELFHGIDIRYKQCWSYLLWLDEANYAGVQGKLPDGLTEVGSSQLPAASEDGNGDEEGSITMQWNLSQFLPAPVREPFSAAVAGFLSAAYSQPKELAALVQGEISQKLFHAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYHTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSMYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSMYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFHAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQGRSRRSCSSKYRTVLDIDRGFLSAAYSQPKELAALVQGEISQKLFQVTEKINTRYPVFRPSDIGPQPGLKPDAFTGGAKPALLYVNAVCKVLALDTALEDEVTLLRRNLLRLIGVGEFSSAAEWRDACNTCVLSEIICKVCNHCRDLDLCRDTNTSVVNDVPVCLCPTCGTPYENQELEWRLVEVMNRRTMSYVLQDLVCKRCHQVKRENMTMVCECAGDFALMVPTTEVLSQLNTFKSIAEYYKMPLLLELIEFHLSNT

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

100% Identity
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90% Identity
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80% Identity
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