Basic Information

Gene Symbol
ABCD3
Assembly
GCA_036937285.1
Location
JAUPFZ010000007.1:18918979-18927846[+]

Transcription Factor Domain

TF Family
ARID
Domain
ARID domain
PFAM
PF01388
TF Group
Helix-turn-helix
Description
This domain is know as ARID for AT-Rich Interaction Domain [2], and also known as the BRIGHT domain [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 24 0.0037 16 7.3 0.0 28 59 120 148 104 163 0.86
2 24 0.15 6.4e+02 2.2 0.0 34 59 171 193 169 208 0.84
3 24 0.15 6.4e+02 2.2 0.0 34 59 216 238 214 253 0.84
4 24 0.15 6.4e+02 2.2 0.0 34 59 261 283 259 298 0.84
5 24 0.15 6.4e+02 2.2 0.0 34 59 306 328 304 343 0.84
6 24 0.15 6.4e+02 2.2 0.0 34 59 351 373 349 388 0.84
7 24 0.15 6.4e+02 2.2 0.0 34 59 396 418 394 433 0.84
8 24 0.15 6.4e+02 2.2 0.0 34 59 441 463 439 478 0.84
9 24 0.15 6.4e+02 2.2 0.0 34 59 486 508 484 523 0.84
10 24 0.15 6.4e+02 2.2 0.0 34 59 531 553 529 568 0.84
11 24 0.15 6.4e+02 2.2 0.0 34 59 576 598 574 613 0.84
12 24 3.3 1.4e+04 -2.1 0.0 34 59 621 643 620 655 0.80
13 24 0.041 1.7e+02 4.0 0.0 34 59 666 688 664 703 0.86
14 24 0.15 6.5e+02 2.1 0.1 34 59 711 733 709 748 0.84
15 24 2.5 1e+04 -1.7 0.0 34 59 756 778 737 790 0.84
16 24 0.15 6.4e+02 2.2 0.0 34 59 801 823 799 838 0.84
17 24 0.15 6.4e+02 2.2 0.0 34 59 846 868 844 883 0.84
18 24 0.15 6.4e+02 2.2 0.0 34 59 891 913 889 928 0.84
19 24 0.15 6.6e+02 2.1 0.0 34 59 936 958 934 972 0.85
20 24 3.3 1.4e+04 -2.1 0.0 35 59 982 1003 980 1014 0.80
21 24 0.15 6.3e+02 2.2 0.1 34 59 1026 1048 1024 1065 0.84
22 24 0.22 9.4e+02 1.6 0.1 34 58 1071 1092 1068 1107 0.85
23 24 3.5 1.5e+04 -2.2 0.0 35 59 1117 1138 1115 1146 0.80
24 24 0.16 7e+02 2.0 0.0 34 59 1161 1183 1159 1196 0.86

Sequence Information

Coding Sequence
ATGATCCTGGCACCCGGCGCGGGTAAAATCATATACCAGGACAAGATCATCCGTTTTGATAAAGTGCCTCTCGTGACGCCCAACGGAGACGTGCTCATCAAGGAACTTACTTTTGAAGTCAAATCCGGTATCAACGTGTTAGTATGCGGTCCAAACGGTTGCGGGAAGTCTTCAATGTTCCGTATGTTAGGGGAGCTGTGGCCTATATTCGGCGGAACTCTCACGAAGCCGCCCAAAGGAAAGCTGTTTTACGTTCCTCAGAGACCTTATATGACACTTGGCACGTTTAGAGATCAAGTGATCTACCCGCAGACGCGCGAGGAGATGGTGCGGCGCGGGCGCACGGACGCCGAGCTGCGGCGCTTCCTGGACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGTCGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTACCTTACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGTCGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTACCTTACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGTCGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTACCTTACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGTCGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTACCTTACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGTCGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTACCTTACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGTCGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTACCTTACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGTCGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTACCTTACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGTCGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTACCTTACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGTCGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTACCTTACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGTCGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTACCTTACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGTCGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTACCTTACGTCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGACGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTACCTTACATCGTGCAGCTGTCGCACCTGATACAGCGCGAGGGCGGCTGGGACGCCGTCGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTACCTTACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGTCGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTAACTTACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGACGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTACCTTACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGTCGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTACCTTACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGTCGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTACCTTACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGTCGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTACCTTACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGTCGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTACCTTACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGACGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTACCTTACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGTCGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTAACTTACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGTCGAGGACTGGATGGACGTGCTCTTGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTACGACCACACCCTGCCGCGTGGTACCTTACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGACGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTGTGAGTATGACCACACCCTGCCGCGTGGTACCTTACATCGTGCAGCTGTCGTACCTGATACAGCGCGAGGGCGGCTGGGACGCCGTCGAGGACTGGATGGACGTGCTCTCGGGCGGGGAGAAGCAGCGGATCGCTATGGCCCGACTGTTCTACCACGCGCCACAATTCGCGATCCTGGACGAATGTACAAGTGCAGTTTCTGTTGATGTAGAGGGACATATGTACCAGTACTGCAGAGAGATGGGAATATCTCTGTTTACGGTTTCACATCGTAAATCTCTATGGAAACACCACGACCATTACTTACAAATGGACGGCCGGGGAGGATACGTGTTCGGGAAGATCGACAACGAAACTACTGAATTTGGCTCGTGA
Protein Sequence
MILAPGAGKIIYQDKIIRFDKVPLVTPNGDVLIKELTFEVKSGINVLVCGPNGCGKSSMFRMLGELWPIFGGTLTKPPKGKLFYVPQRPYMTLGTFRDQVIYPQTREEMVRRGRTDAELRRFLDIVQLSYLIQREGGWDAVEDWMDVLSGGEKQRIAVSTTTPCRVVPYIVQLSYLIQREGGWDAVEDWMDVLSGGEKQRIAVSTTTPCRVVPYIVQLSYLIQREGGWDAVEDWMDVLSGGEKQRIAVSTTTPCRVVPYIVQLSYLIQREGGWDAVEDWMDVLSGGEKQRIAVSTTTPCRVVPYIVQLSYLIQREGGWDAVEDWMDVLSGGEKQRIAVSTTTPCRVVPYIVQLSYLIQREGGWDAVEDWMDVLSGGEKQRIAVSTTTPCRVVPYIVQLSYLIQREGGWDAVEDWMDVLSGGEKQRIAVSTTTPCRVVPYIVQLSYLIQREGGWDAVEDWMDVLSGGEKQRIAVSTTTPCRVVPYIVQLSYLIQREGGWDAVEDWMDVLSGGEKQRIAVSTTTPCRVVPYIVQLSYLIQREGGWDAVEDWMDVLSGGEKQRIAVSTTTPCRVVPYIVQLSYLIQREGGWDAVEDWMDVLSGGEKQRIAVSTTTPCRVVPYVVQLSYLIQREGGWDADEDWMDVLSGGEKQRIAVSTTTPCRVVPYIVQLSHLIQREGGWDAVEDWMDVLSGGEKQRIAVSTTTPCRVVPYIVQLSYLIQREGGWDAVEDWMDVLSGGEKQRIAVSTTTPCRVVTYIVQLSYLIQREGGWDADEDWMDVLSGGEKQRIAVSTTTPCRVVPYIVQLSYLIQREGGWDAVEDWMDVLSGGEKQRIAVSTTTPCRVVPYIVQLSYLIQREGGWDAVEDWMDVLSGGEKQRIAVSTTTPCRVVPYIVQLSYLIQREGGWDAVEDWMDVLSGGEKQRIAVSTTTPCRVVPYIVQLSYLIQREGGWDAVEDWMDVLSGGEKQRIAVSTTTPCRVVPYIVQLSYLIQREGGWDADEDWMDVLSGGEKQRIAVSTTTPCRVVPYIVQLSYLIQREGGWDAVEDWMDVLSGGEKQRIAVSTTTPCRVVTYIVQLSYLIQREGGWDAVEDWMDVLLGGEKQRIAVSTTTPCRVVPYIVQLSYLIQREGGWDADEDWMDVLSGGEKQRIAVSMTTPCRVVPYIVQLSYLIQREGGWDAVEDWMDVLSGGEKQRIAMARLFYHAPQFAILDECTSAVSVDVEGHMYQYCREMGISLFTVSHRKSLWKHHDHYLQMDGRGGYVFGKIDNETTEFGS

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

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