Badu003915.1
Basic Information
- Insect
- Blastobasis adustella
- Gene Symbol
- -
- Assembly
- GCA_907269095.1
- Location
- OU026138.1:12642371-12679552[+]
Transcription Factor Domain
- TF Family
- zf-C2H2
- Domain
- zf-C2H2 domain
- PFAM
- PF00096
- TF Group
- Zinc-Coordinating Group
- Description
- The C2H2 zinc finger is the classical zinc finger domain. The two conserved cysteines and histidines co-ordinate a zinc ion. The following pattern describes the zinc finger. #-X-C-X(1-5)-C-X3-#-X5-#-X2-H-X(3-6)-[H/C] Where X can be any amino acid, and numbers in brackets indicate the number of residues. The positions marked # are those that are important for the stable fold of the zinc finger. The final position can be either his or cys. The C2H2 zinc finger is composed of two short beta strands followed by an alpha helix. The amino terminal part of the helix binds the major groove in DNA binding zinc fingers. The accepted consensus binding sequence for Sp1 is usually defined by the asymmetric hexanucleotide core GGGCGG but this sequence does not include, among others, the GAG (=CTC) repeat that constitutes a high-affinity site for Sp1 binding to the wt1 promoter [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 68 0.0027 0.25 12.7 0.1 2 23 476 497 476 497 0.97 2 68 0.00032 0.031 15.6 1.8 1 23 517 539 517 539 0.98 3 68 7.5 7.1e+02 1.9 0.3 3 23 552 573 550 573 0.87 4 68 7.5 7.1e+02 1.9 0.3 3 23 586 607 584 607 0.87 5 68 7.5 7.1e+02 1.9 0.3 3 23 620 641 618 641 0.87 6 68 7.5 7.1e+02 1.9 0.3 3 23 654 675 652 675 0.87 7 68 7.5 7.1e+02 1.9 0.3 3 23 688 709 686 709 0.87 8 68 7.5 7.1e+02 1.9 0.3 3 23 722 743 720 743 0.87 9 68 7.5 7.1e+02 1.9 0.3 3 23 756 777 754 777 0.87 10 68 7.5 7.1e+02 1.9 0.3 3 23 790 811 788 811 0.87 11 68 7.5 7.1e+02 1.9 0.3 3 23 824 845 822 845 0.87 12 68 7.5 7.1e+02 1.9 0.3 3 23 858 879 856 879 0.87 13 68 7.5 7.1e+02 1.9 0.3 3 23 892 913 890 913 0.87 14 68 7.5 7.1e+02 1.9 0.3 3 23 926 947 924 947 0.87 15 68 7.5 7.1e+02 1.9 0.3 3 23 960 981 958 981 0.87 16 68 7.5 7.1e+02 1.9 0.3 3 23 994 1015 992 1015 0.87 17 68 0.00086 0.082 14.3 1.5 1 23 1021 1043 1021 1043 0.97 18 68 0.00018 0.017 16.4 2.4 1 23 1050 1072 1050 1072 0.99 19 68 0.00014 0.014 16.7 0.4 1 23 1078 1100 1078 1100 0.93 20 68 9.6e-07 9.1e-05 23.6 0.2 1 23 1106 1128 1106 1128 0.98 21 68 4.7e-06 0.00045 21.4 1.1 1 23 1134 1157 1134 1157 0.96 22 68 1.3 1.3e+02 4.2 0.7 3 14 1165 1178 1163 1179 0.90 23 68 2.2 2e+02 3.6 0.7 3 13 1241 1253 1239 1255 0.88 24 68 2.6 2.5e+02 3.3 1.3 3 14 1273 1286 1271 1294 0.83 25 68 2.2 2e+02 3.6 0.7 3 13 1401 1413 1399 1415 0.88 26 68 2.4 2.3e+02 3.4 1.3 3 14 1433 1446 1431 1457 0.83 27 68 2.2 2e+02 3.6 0.7 3 13 1465 1477 1463 1479 0.88 28 68 1.9 1.8e+02 3.8 0.8 3 14 1561 1574 1559 1585 0.84 29 68 2.4 2.3e+02 3.4 1.3 3 14 1657 1670 1655 1681 0.83 30 68 2.6 2.5e+02 3.3 1.3 3 14 1785 1798 1783 1806 0.83 31 68 2.6 2.5e+02 3.3 1.3 3 14 1851 1864 1849 1872 0.83 32 68 2.6 2.5e+02 3.3 1.3 3 14 1949 1962 1947 1970 0.83 33 68 0.00072 0.068 14.5 0.6 3 23 2025 2048 2023 2048 0.93 34 68 0.0014 0.13 13.6 0.7 2 23 2055 2076 2054 2076 0.97 35 68 0.00012 0.011 17.0 1.1 1 23 2082 2104 2082 2104 0.97 36 68 0.28 26 6.4 0.0 1 21 2110 2130 2110 2131 0.96 37 68 0.28 26 6.4 0.0 1 21 2145 2165 2145 2166 0.96 38 68 0.28 26 6.4 0.0 1 21 2180 2200 2180 2201 0.96 39 68 0.28 26 6.4 0.0 1 21 2215 2235 2215 2236 0.96 40 68 0.28 26 6.4 0.0 1 21 2250 2270 2250 2271 0.96 41 68 0.28 26 6.4 0.0 1 21 2285 2305 2285 2306 0.96 42 68 0.28 26 6.4 0.0 1 21 2320 2340 2320 2341 0.96 43 68 0.28 26 6.4 0.0 1 21 2355 2375 2355 2376 0.96 44 68 0.28 26 6.4 0.0 1 21 2390 2410 2390 2411 0.96 45 68 0.28 26 6.4 0.0 1 21 2425 2445 2425 2446 0.96 46 68 0.28 26 6.4 0.0 1 21 2460 2480 2460 2481 0.96 47 68 0.28 26 6.4 0.0 1 21 2495 2515 2495 2516 0.96 48 68 0.28 26 6.4 0.0 1 21 2530 2550 2530 2551 0.96 49 68 0.28 26 6.4 0.0 1 21 2565 2585 2565 2586 0.96 50 68 0.28 26 6.4 0.0 1 21 2600 2620 2600 2621 0.96 51 68 0.28 26 6.4 0.0 1 21 2635 2655 2635 2656 0.96 52 68 0.28 26 6.4 0.0 1 21 2670 2690 2670 2691 0.96 53 68 0.28 26 6.4 0.0 1 21 2705 2725 2705 2726 0.96 54 68 0.28 26 6.4 0.0 1 21 2740 2760 2740 2761 0.96 55 68 0.28 26 6.4 0.0 1 21 2775 2795 2775 2796 0.96 56 68 0.28 26 6.4 0.0 1 21 2810 2830 2810 2831 0.96 57 68 0.28 26 6.4 0.0 1 21 2845 2865 2845 2866 0.96 58 68 0.28 26 6.4 0.0 1 21 2880 2900 2880 2901 0.96 59 68 0.28 26 6.4 0.0 1 21 2915 2935 2915 2936 0.96 60 68 0.28 26 6.4 0.0 1 21 2950 2970 2950 2971 0.96 61 68 0.28 26 6.4 0.0 1 21 2985 3005 2985 3006 0.96 62 68 0.28 26 6.4 0.0 1 21 3020 3040 3020 3041 0.96 63 68 0.28 26 6.4 0.0 1 21 3055 3075 3055 3076 0.96 64 68 0.28 26 6.4 0.0 1 21 3090 3110 3090 3111 0.96 65 68 0.28 26 6.4 0.0 1 21 3125 3145 3125 3146 0.96 66 68 0.28 26 6.4 0.0 1 21 3160 3180 3160 3181 0.96 67 68 0.28 26 6.4 0.0 1 21 3195 3215 3195 3216 0.96 68 68 0.28 26 6.4 0.0 1 21 3230 3250 3230 3251 0.96
Sequence Information
- Coding Sequence
- ATGAATGAAACATGTTTCATTTGCAGTAATCCAGTCAGACAATCTGACAAGGACCAATATGCAAGCCAGGAGCATGAATTGGCATCATTGGTCGGTGATATTGTGAAAACCGCTGTTGGTGCAGAACAGTTACTGTTATGTAAAAATTGCATTAGCAACTGCGTTGAGTATGATGCTGTACATACAAAATTACAAGCATTAAAAGCAGTTATAGTGGCCCAATACAAAGCGTCTCAAATTCAGAAACGTGACGCAGTGAATTGGGTATTGAGTAGCCCAGTGAATACACTCACTCAGCCCAAAGTCACTCCTACCAAGAGAGTTGTATTACCAGCGTCAAAGTTGCAACCGTTGCCACCGAACTATGTTATCAATGTTAGCAACTTAGCTTCCAGTCTTGGTAACAAGTTGGTTGTACCAAACATTACCACGAGAATCATCCAGGCCTCCGAAGCAATGAAACTGTCTGCGGTAACCGTTGTCCCTACACAGTACATCACAACAAATTCTACGAGTAAAAATGGGAATCTGATACAGCAAGCGTTGAGTCTCCAAAATGCACCGATCAATTTGCTGTCCGCAGCGAACAGTATTACAGTAGCTAGTTCTGTCAAGACTGTAGCGAGTGAATTGTCACCGTCAACTACAGTTTCTACACCTACAGTGATGGCATCCATCAGTACAAGGACAACGGATGCGTTGAGTTTAAACATGAGTACGCTACCGAAGGATTTCCTTGACAGTGATGATAAATCTTATATGAAGAAAGAAATGGATGAGGAGAACAATGATGAATTGCCAATGGAGATTGATGAAGATTGCACACTGCGCATCACAAAAGATACTGATCCAATTGAAAAATCTGATGATAAGGCTTCCGAATCGGATGGCGACGAAGGGAAGGACAGTGAGTACTATGAAGTACCGGGCGGCGTGTTCCAAGTGCTGGCTGGAGATGATGAGGATGATGAACAAGCGATAGTGATGTCCGGCGAGAACGGATCCATACTGCGCGTGGTGGCCGGCCAGAAGCTGGTGTACGAGCAGATCGCCATCGTGGCCGGCCCGGGCGACGGCGACGGCGACGATGACGACGATGGCGACAATGATTCGAACGACGAGTCGCAAATAGAGTTGCAAGTCTCAGGCGACGAGGAGACTGCCAACGCCATCATTGCGGCCGCCCAGGAACAAGGTGGAGCATTCATAAAAGTAGAATCGGGGGAAATGTTCCGAGTCAAATCGGTGCAGAGTAAGACCAAGAAGCAATTTGCACTAGATGATTCACAAGAAGTAATAGAAATGGTGGACAACAATAATTATAAGTGTCTATTGTGCGAGAAAAATGATGAAAACGAGCCCACGGAGTACACAGCCACCGCAGCGGTGGAGCACGCGCGGGCGGTACACGCGGCAGCGGCGCGGGTGTGCGGCGTGTGCGGGTTCGTCACGGCTAAGAAGCAGGACTTGGCTGTGCATATGAAGACGCACGCCACGGAAAGGGCCGCTGGGAAGAGCAAACAGATCATGATAGACAAGAGAACGGTCCACGAGTGCAATGTATGCAATAAGAGATACAACTCCCGCACGCTGCTAGCGGAGCACCTGAACACGCACTCGGGCGCGCGGCCGCACCGCTGCCTGGCGTGGATGTGTGTGGATGTGTGTATGTATGGTTGCAGCTCCCGCACGCTGCTAGCGGAGCACCTGAACACGCACTCGGGCGCGCGGCCGCACCGCTGCCTGGCGTGGATGTGTGTGGATGTGTGTATGTATGGTTGCAGCTCCCGCACGCTGCTAGCGGAGCACCTGAACACGCACTCGGGCGCGCGGCCGCACCGCTGCCTGGCGTGGATGTGTGTGGATGTGTGTATGTATGGTTGCAGCTCCCGCACGCTGCTAGCGGAGCACCTGAACACGCACTCGGGCGCGCGGCCGCACCGCTGCCTGGCGTGGATGTGTGTGGATGTGTGTATGTATGGTTGCAGCTCCCGCACGCTGCTAGCGGAGCACCTGAACACGCACTCGGGCGCGCGGCCGCACCGCTGCCTGGCGTGGATGTGTGTGGATGTGTGTATGTATGGTTGCAGCTCCCGCACGCTGCTAGCGGAGCACCTGAACACGCACTCGGGCGCGCGGCCGCACCGCTGCCTGGCGTGGATGTGTGTGGATGTGTGTATGTATGGTTGCAGCTCCCGCACGCTGCTAGCGGAGCACCTGAACACGCACTCGGGCGCGCGGCCGCACCGCTGCCTGGCGTGGATGTGTGTGGATGTGTGTATGTATGGTTGCAGCTCCCGCACGCTGCTAGCGGAGCACCTGAACACGCACTCGGGCGCGCGGCCGCACCGCTGCCTGGCGTGGATGTGTGTGGATGTGTGTATGTATGGTTGCAGCTCCCGCACGCTGCTAGCGGAGCACCTGAACACGCACTCGGGCGCGCGGCCGCACCGCTGCCTGGCGTGGATGTGTGTGGATGTGTGTATGTATGGTTGCAGCTCCCGCACGCTGCTAGCGGAGCACCTGAACACGCACTCGGGCGCGCGGCCGCACCGCTGCCTGGCGTGGATGTGTGTGGATGTGTGTATGTATGGTTGTAGCTCCCGCACGCTGCTAGCGGAGCACCTGAACACGCACTCGGGCGCGCGGCCGCACCGCTGCCTGGCGTGGATGTGTGTGGATGTGTGTATGTATGGTTGCAGCTCCCGCACGCTGCTAGCGGAGCACCTGAACACGCACTCGGGCGCGCGGCCGCACCGCTGCCTGGCGTGGATGTGTGTGGATGTGTGTATGTATGGTTGCAGCTCCCGCACGCTGCTAGCGGAGCACCTGAACACGCACTCGGGCGCGCGGCCGCACCGCTGCCTGGCGTGGATGTGTGTGGATGTGTGTATGTATGGTTGCAGCTCCCGCACGCTGCTAGCGGAGCACCTGAACACGCACTCGGGCGCGCGGCCGCACCGCTGCCTGGCGTGGATGTGTGTGGATGTGTGTATGTATGGTTGCAGCTCCCGCACGCTGCTAGCGGAGCACCTGAACACGCACTCGGGCGCGCGGCCGCACCGCTGCCTGGCGTGCGGGAAGGGCTTCGCGTCCAAGTACACCTACCAGGCGCACGTCAAGACGCATCTGGACCGACCTCGCCCCTTCAAGTGCAATCAGTGTCCGAAGTCATTCCTCACGCAACAGAATTTGACCCAACACGAGAAAACGCATTTGGGAATAAAGGATTTCAAGTGCAATATTTGTGACAAAGCGTTCGGCACGCAACACAACCTGGACGTGCACGGCGTGGTGCACTCCGGGGAGCGGCCCTTCGCGTGCAACCAGTGCGGGAAGGGGTTCGCGAGGCGGGCGGAGCTGAAGGACCATATACGGACGCATACAGGCGAGCGTCCCTTCCAATGCCCGGACTGCGGCGCGCGCTTCGCCCAGCGCAGCAACCTGCACTCGCACCGCCGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCGACAAGCGGTTCAAGAGACGGAGCAGGACTGCGACAAGCGGTTCAAGAGACGCAGGTATGGCACACACACACACACACACGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCGACAAGCGGTTCAAGAGACGCAGGTATGGCACACACACACACACACACGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCGACAAGCGGTTCAAGAGACGCAGGTATGGCACACACACACACACACGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCGACAAGCGGTTCAAGAGACGCAGGTATGGCACACACACACACACGCACCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCTACAAGCGGTTCAAGAGACGGAGGTATGGCACACACACACACACACGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCGACAAGCGGTTCAAGAGACGCAGGTATGGCACACACACACACACACGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCGACAAGCGGTTCAAGAGACGCAGGTATGGCACACACACACACACACACGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCGACAAGCGGTTCAAGAGACGCAGGTATGGCACACACACACACACACGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCGACAAGCGGTTCAAGAGACGCAGGTATGGCACACACACACACACACGCACCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCGACAAGCGGTTCAAGAGACGCAGGTATGGCACACACACACACGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCTACAAGCGGTTCAAGAGACGGGGGTATGGCACACACACACACACACACGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCGACAAGCGGTTCAAGAGACGGAGGTATGGCACACACACACACACACACGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCGACAAGCGGTTCAAGAGACGCAGGTATGGCACACACATACACACACGCACCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCTACAAGCGGTTCAAGAGACGGAGGTATGGCACACACACACACACACGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCTACAAGCGGTTCAAGAGACGGAGGTATGGCACACACACACACACACGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCGACAAGCGGTTCAAGAGACGCAGGTATGGCACACACACACACACACGCACCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCTACAAGCGGTTCAAGAGACGGAGGTATGGCACACACACACACACACGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCTACAAGCGGTTCAAGAGACGGAGGTATGGCACACACACACACACACGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCTACAAGCGGTTCAAGAGACGGAGGTATGGCACACACATACACACGCGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCGACAAGCGGTTCAAGAGACGGAGGTATGGCACACACACACACACACACACGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCGACAAGCGGTTCAAGAGACGGAGGTATGGCACACACACACACACACACGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCGACAAGCGGTTCAAGAGACGGAGGTATGGCACACACACACACACACACGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCGACAAGCGGTTCAAGAGACGGAGGTATGGCACACACACACACACACACGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCGACAAGCGGTTCAAGAGACGGAGGTATGGCACACACACACACACACACGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCGACAAGCGGTTCAAGAGACGCAGGTATGGCACACACACACACACACACGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCTACAAGCGGTTCAAGAGACGGGGCAGGACTGCGACAAGCGGTTCAAGAGACGGAGGTATGGCACACACACACACACACACGCGCCACGCACCTCTCCGACCGCCGCTACGGCTGCCCGCAGCAGGACTGCGACAAGCGGTTCAAGAGACGGAGGCTCCTCGAGTACCACATAAAGGCGTTCCACACGGGCGAGCGGCCGCTGCAGTGCGGCGTGTGCCGCGCCACCTTCGTGTACCCGGAGCACTACAAGAAGCACGTGCGGATACACAGCGGGGAGCGGCCCTTCGTTTGTGAGGTGTGCGGCAAGTCGTTCAACTCGCGCGACAACCGCAACACGCACCGGTTCGTGCACAGCGACAAGAAACCCTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGGGCTACATGCGGAAGGCGCCGCTCTACGCGCACATGAACGCCTCGGTACGTATCGCGGGATACACACTGCTCAAGGAGCACTACGAGTGCCTCGTCTGCGGCGCGACTGCACACGGTCACTTAGCGGAATCGATAGTAGTGAACCAACCGAGAGTTCAAAAGGTCGCCGAAAGTATATTTGAAACAACACAAGACATGGAGTCAAATGGGTCCTCTGACGTCAAATCACTTACGACCATCGACACCAGTTCGCTGCTGCAAGGCTTGACAGTGGCCCCGTTGACGGATCAAGCGCAGATCCTAGCCAGCACAGAAGACGGGAGTGTGATGAAGTTGGTTCAAATACAACTCGACAATGGAGGCACAGGATGGGTGGCCGTCGAATGA
- Protein Sequence
- MNETCFICSNPVRQSDKDQYASQEHELASLVGDIVKTAVGAEQLLLCKNCISNCVEYDAVHTKLQALKAVIVAQYKASQIQKRDAVNWVLSSPVNTLTQPKVTPTKRVVLPASKLQPLPPNYVINVSNLASSLGNKLVVPNITTRIIQASEAMKLSAVTVVPTQYITTNSTSKNGNLIQQALSLQNAPINLLSAANSITVASSVKTVASELSPSTTVSTPTVMASISTRTTDALSLNMSTLPKDFLDSDDKSYMKKEMDEENNDELPMEIDEDCTLRITKDTDPIEKSDDKASESDGDEGKDSEYYEVPGGVFQVLAGDDEDDEQAIVMSGENGSILRVVAGQKLVYEQIAIVAGPGDGDGDDDDDGDNDSNDESQIELQVSGDEETANAIIAAAQEQGGAFIKVESGEMFRVKSVQSKTKKQFALDDSQEVIEMVDNNNYKCLLCEKNDENEPTEYTATAAVEHARAVHAAAARVCGVCGFVTAKKQDLAVHMKTHATERAAGKSKQIMIDKRTVHECNVCNKRYNSRTLLAEHLNTHSGARPHRCLAWMCVDVCMYGCSSRTLLAEHLNTHSGARPHRCLAWMCVDVCMYGCSSRTLLAEHLNTHSGARPHRCLAWMCVDVCMYGCSSRTLLAEHLNTHSGARPHRCLAWMCVDVCMYGCSSRTLLAEHLNTHSGARPHRCLAWMCVDVCMYGCSSRTLLAEHLNTHSGARPHRCLAWMCVDVCMYGCSSRTLLAEHLNTHSGARPHRCLAWMCVDVCMYGCSSRTLLAEHLNTHSGARPHRCLAWMCVDVCMYGCSSRTLLAEHLNTHSGARPHRCLAWMCVDVCMYGCSSRTLLAEHLNTHSGARPHRCLAWMCVDVCMYGCSSRTLLAEHLNTHSGARPHRCLAWMCVDVCMYGCSSRTLLAEHLNTHSGARPHRCLAWMCVDVCMYGCSSRTLLAEHLNTHSGARPHRCLAWMCVDVCMYGCSSRTLLAEHLNTHSGARPHRCLAWMCVDVCMYGCSSRTLLAEHLNTHSGARPHRCLACGKGFASKYTYQAHVKTHLDRPRPFKCNQCPKSFLTQQNLTQHEKTHLGIKDFKCNICDKAFGTQHNLDVHGVVHSGERPFACNQCGKGFARRAELKDHIRTHTGERPFQCPDCGARFAQRSNLHSHRRATHLSDRRYGCPQQDCDKRFKRRSRTATSGSRDAGMAHTHTHTRHAPLRPPLRLPAAGLRQAVQETQVWHTHTHTRATHLSDRRYGCPQQDCDKRFKRRRYGTHTHTRATHLSDRRYGCPQQDCDKRFKRRRYGTHTHTHHAPLRPPLRLPAAGLLQAVQETEVWHTHTHTRHAPLRPPLRLPAAGLRQAVQETQVWHTHTHTRHAPLRPPLRLPAAGLRQAVQETQVWHTHTHTRATHLSDRRYGCPQQDCDKRFKRRRYGTHTHTRATHLSDRRYGCPQQDCDKRFKRRRYGTHTHTRTTHLSDRRYGCPQQDCDKRFKRRRYGTHTHAPRTSPTAATAARSRTATSGSRDGGMAHTHTHTRHAPLRPPLRLPAAGLRQAVQETEVWHTHTHTRATHLSDRRYGCPQQDCDKRFKRRRYGTHIHTRTTHLSDRRYGCPQQDCYKRFKRRRYGTHTHTRATHLSDRRYGCPQQDCYKRFKRRRYGTHTHTRATHLSDRRYGCPQQDCDKRFKRRRYGTHTHTRTTHLSDRRYGCPQQDCYKRFKRRRYGTHTHTRATHLSDRRYGCPQQDCYKRFKRRRYGTHTHTRATHLSDRRYGCPQQDCYKRFKRRRYGTHIHTRATHLSDRRYGCPQQDCDKRFKRRRYGTHTHTHTRHAPLRPPLRLPAAGLRQAVQETEVWHTHTHTRATHLSDRRYGCPQQDCDKRFKRRRYGTHTHTHAPRTSPTAATAARSRTATSGSRDGGMAHTHTHTRHAPLRPPLRLPAAGLRQAVQETEVWHTHTHTRATHLSDRRYGCPQQDCDKRFKRRRYGTHTHTHAPRTSPTAATAARSRTATSGSRDGAGLRQAVQETEVWHTHTHTRATHLSDRRYGCPQQDCDKRFKRRRLLEYHIKAFHTGERPLQCGVCRATFVYPEHYKKHVRIHSGERPFVCEVCGKSFNSRDNRNTHRFVHSDKKPYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGAGYMRKAPLYAHMNASVRIAGYTLLKEHYECLVCGATAHGHLAESIVVNQPRVQKVAESIFETTQDMESNGSSDVKSLTTIDTSSLLQGLTVAPLTDQAQILASTEDGSVMKLVQIQLDNGGTGWVAVE
Similar Transcription Factors
Sequence clustering based on sequence similarity using MMseqs2
- 100% Identity
- -
- 90% Identity
- -
- 80% Identity
- -