Pfes019709.3
Basic Information
- Insect
- Plusia festucae
- Gene Symbol
- ARID4B
- Assembly
- GCA_950381575.1
- Location
- OX494450.1:5288990-5306525[-]
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 1 5.8e-30 1.4e-26 93.4 0.1 1 89 279 365 279 365 0.96
Sequence Information
- Coding Sequence
- ATGGGTGATGACCCACCCTTCTTGCCAGTTGGTACTGATGTTAGTGCCAAATATAAAGGTGCTTTCTGTGAAGCCAAAATAAAGAAAGTAGTAAGGAACATCAAGTGTAAGTTAACACTTAAAGCTGGTGGTGGATCTATCACAGTGAATGATGATGTGATAAAAGGCACCCTGCGAGTGGGGAGCACAGTGGAAGTCAAGCAAGACCCTAAGAAAGATGCCATGGAAGCCATCATCACAAAGATACAGGACTGCAGCCAGTACACTGTTGtttttgatgaTGGCGATATAACAACATTACGACGGTCAGCGCTATGCCTTAAAAGCGGGCGGCATTTTAACGAGAGTGAAACGCTGGACCAGTTGCCTCTCACACATCCAGAACACTTCTCTACACCTGTCATAGCAGGCAGGCGGGGAAGGAGGGGAAGAGCACAgtCTGAAGAGAGTGAGGGGTCAGGATCGGGTCGTCGAGTCAAAGCCGACGTAGAGCCACACGTTGGTCGTGTGGTGCTAGTGGAGGCGGGAGGGGGCGCTGAACGACGTCGTCCGCACCAGCCCGCCTTCCCAGCGCTCGTCGTAGCGCCCACAGCACAGATTAAGGTCAAAGAGGACTACCTTGTGCGATCATTCAAGGATGGCAGATACTACACAGTACCCAAGAAAGAAGCTCGGGAGTTTCGGAAGGGCAGTGCACCACTTGAGTGGGCTGGAGTGGAAGCCGCACTGCAATATCTTAACAACGCAGTGCTGCCACCACACTGGGACAGAGACGCGCTCTTCAACGAACCCAGAAATACTTCCGATGATAGTTCCGACGATGAGCCGCGCGAAGAGAAAGACCACTTCGTCGCACAACTATACAAGTTTATGGACGAGCGTGGTACACCGCTCAACAGAAACCCTACTATTGCCAACAAGGATATAGATCTGTATAGATTATTTAAAGTTGTAGAAAAACTCGGCGGCTACAATAGAGTCACCAACCAAAATCAGTGGAAAACAATCGCCGACAAAATGGGATTTCATCCAGTCACTACAAGCATCACAAATCTGTGTAAACAAGCTTATAAAAAGTTCCTGCACAGCTACGAGGACTTCTACCGCAAGCTTGGCGTGACGCTGGTGGCGCACCCTCGCGGCGCACGTACACCGCCGGCGGGCCGCTCGCTCATCCGCGACCGCGACCGCCAGCCGCCCGCCTCCTCCTCCAGCTGCTCCACGCCCACGCCGCCCGCGCCACAGGTACACTACCATAATACTAGCGCCGCCGGCGGGCCGCTCGCTCATCCGCGACCGCGACCGCCAGCCGCCCGCCTCCTCCTCCAGCTGCTCCACGCCCACGCCGCCCGCGCCACAGCTGCTCCACGCCCACGCCGCCCGCGCCACAGGTACACTACCATAATACTAGCGCCGCCGGCGGGCCGCTCGCTCATCCGCGACCGCGACCGCCAGCCGCCCGCCTCCTCCTCCAGCTGCTCCACGCCCACGCCGCCCGCGCCACAGGTACACTACCATAATACTAGCGCCGCCGGCGGGCCGCTCGCTCATCCGCGACCGCGACCGCCAGCCGCCCGCCTCCTCCTCCAGCTGCTCCACGCCCACGCCGCCCGCGCCACAGCTGCTCCACGCCCACGCCGCCCGCGCCACAGGTACACTACCATAATACTAGCGCCGCCGGCGGGCCGCTCGCTCATCCGCGACCGCGACCGCCAGCCGCCCGCCTCCTCCTCCAGCTGCTCCACGCCCACGCCGCCCGCGCCACAGGTACACTACCATAATACTAGCGCCGCCGGCGGGCCGCTCGCTCATCCGCGACCGCGACCGCCAGCCGCCCGCCTCCTCCTCCAGCTGCTCCACGCCCACGCCGCCCGCGCCACAGCTGCTCCACGCCCACGCCGCCCGCGCCACAGGTACACTACCATAATACTAGCGCCGCCGGCGGGCCGCTCGCTCATCCGCGACCGCGACCGCCAGCCGCCCGCCTCCTCCTCCAGCTGCTCCACGCCCACGCCGCCCGCGCCACAGGTACACTACCATAATACTAGCGCCGCCGGCGGGCCGCTCGCTCATCCGCGACCGCGACCGCCAGCCGCCCGCCTCCTCCTCCAGCTGCTCCACGCCCACGCCGCCCGCGCCACAGATAAAGACTCCGACAAAAGTGAGACAGACAAGAGCGAAAAGAGTGAAAAGGAGGAGAAACCAGAGAGAGTAGAAAAAGCGAAAGAGAAGGCGCGTACCAGCGACGGAGAGGACAGCGCGGACAACCAACCACTCATAATCACCACTCCCAAGGTGGATAAGGATAAGGAAAAAGAACGAGAAAAGGAAAAGGAACGAGAAAAAGAAAAGGAACgcgaaaaagaaaaagaacgcGAAAGAGAAAAGGAAAAGGAACGCGAAAGAGAAAAGGAACGAGAGAAGGAAAAGGAAAAAGAGCGGGAAAAGGAGAAAGAGAAGGAAAAAGAAAAGGACAGAGAAAAAGAACGGGAAAaggagaaagaaaaagaaaaggagAAAAGTTCAGCTTCGACTTCTACTAGCGACGAGAAGACCGTTATTAAGCCTCGCTCGCAGTCCAAGGGGCGTACGATTACACCTGTGAGGACGGACAGCCACGAAAAACGGACACCGAAGAGACGGCCGATGTCGTCTAAAAGCGAAGGAACAAGTGGGAGCACATCGCGAGCCTCACGACGACCGCACGCGTCAACTGATAGCGACAGTTCTGGACGGGCCTCTagATGCGGGCCCATAAAGAAGATGCAGAGTCGCCGCAGTCAGAGCGCGAACTCGGCCAGCAGCGGCAACACGATCGCCTCCAACAGCAGCAAGAGACCGCGCAAGAGAAAGAATACTGagcCTTCAACAAGTGAACCAACTCGTGGTGTATCTAAAGTAAAAGCTCAAGTGGGAGACAAATTGAAAGTATACTATGGACCTACACAGTCTGAATCAAAGGTGACATATGAAGCGAAGGTGATAGAAATATCATCAGAAGGCATGCTGCGCGTGCATTACACCGGCTGGAACACGCGCTACGACGAGTGGATCAAGCCGCAGCGGATAGCCGTCAATGTCACGCAACATGAACAACGTAACAAAAAGGGATCAAGTATCAGTAGGCGTGTCAGGAGCAAGAGGACTGAAGaatcatCAGCCCGATCTGATTCCGACAGTGACTCGGAAAGTGACGATGAAGTCAAGAGACCTCCAAAGAAATCATCAGACGACAAATCTAATCCAAAAACTCCCTCAAGGTCTAAGGATATAAAGTCTAGTGACAGCAGTAGTTCAAGTAAGCCTCGCAAAAGACCGGTAAGGACAGTATCCACGCCTACATCAGTGTCTCCAGCCAAGAAGACACGGCCAAACGTGGCGAGCCATCAAGGCCGGGACTACGACCTCAACGAAATTCGTTCTGAGCTGAAAGGACTGCATACTGTAAAACAAGAGCCTGAAGACGCAGTTAAACAAGAGACCGATAAAGATGCATCATTAACACCCGCACAGACAAGTGCGCTGTCCTCAGAACCACTTCAAGTCGACAAACAGGCTGAAGACGTCTACGAGTTCAAAGAACCCGAACCATTTGAGTTAGAACTGCATGATGAGAAGAAGAAACGCACGCATCGCATATTCGATGATATTTCACCAAGTAAATATACTTCCACTCTATCAAAATCCTTGAGTGAAGAGATATCAGAAGATCCCATGCGACCGCGACCTTCATCTTTGAGGTCACCTTCCTTGTCGCCGTTCAGAGATTTCGGCACAAGCAGGGATGCAAGCCGACAGAGTCCCGAGGACGACTCCAAAGATGGACTGTTCTCACTTGATGATGACTCTTTCCCTGGTGACGGCAGTTCAGGCCCGACCTTCGAAGGGTTCACTCCGGCAAAAAATCAAGAAACATATTCCAAGAAAAGTAAGGTATCAAAGTTGAGAGAGCTCATTGATGATTCTCCTGATAGTCCCGCTGACGACGAGCAGTCTTCAGATGATGAACCCGAAAACATAACGGCAATGAAAGTGGAGGAAATAGAACCAACTCCAATAATACCAGTCATTGAGGAGCCGAAAACTCCAGAACCCATTGCTAAGGATGAGATAAAAGATCCTGAACCAGTGACTCCAGTAAAAGACGAAGTTATAGAAACAACGGAACAAGCTATAATGATTAGCATTCCCGAGCCACCTAGAACACCACCACCTCCACAGAAGAAACAAGATTCTCCACTTGCTCCAATACATATTACTACCAATCCTATAATCACGATTACTGGTGTTGTATCGCCTAACcctaaagaagaaaataaagaagatatAATTGAAAAGCCGAAGAAAGAGGAACCAGTCAAACTCCTGCCTATTGCAACACCGGTAATGGAGCCCAAAGAAAATGTACTCAAAGTTAAAATTGATAAGAAGTTAGATCCTATTCCGATGGAGCCTTCTATTTCAAAACTATTGCCGCCGTCTAGCCCTCTGATTGATACGGAAGAAGACAAATCTGAGCCAGACAGTCCGGCAAGGATCGACGTACTGCCGGAACCACCGCCTGGGTTCCTATTACAGTCTGAGGGTCCAAAGATAGCTGAAAAGTTACTTAAAGCTATCAGTAGCGCCAAAAGGCTGTCTATGTCTCCGCCACCCACAGAGGATCGTCCCGTCACTCCTAAAACCGACACGATAAAGCCACTCAAGCCTGAGACTAAATTATCACCTATATCCCCTGAACCTAAGCCTATAAAACCAGAGACCACGAAACCACTTGTTAAAATCATCGAACCAATTAAGAAAACTGCTGAGACTGTTGATACGATATTTGGTGAGCCATCTAATTTGCTCGATGTGAAGCGTAACATACTTGATATTAAAAAGGTGAAGCCAGACGAGAGTGTTGTGCCGCGGCTGCAGAGTCCGTTGAACATTCTGGAGCGTCGTAAGAGTGTAGCAGACTTACCGCTGAGTGTGCCTGGCAAGAACAATAAAGTGTTGAGTGATACCATTCAGAAACTGTCGAGCCAGATCAATcagtcggcggcggcggctgcggCCACTGTGCCGCTACCCTTCCCCAGCGATGACCGCTCCGATTCCAGCGACTCTGACGACTCGGATAGAAGGTTAATAATCGACAAGCTAGCTGTAGACGAGTGGGGCAGCGGCGGCAGTGGTGGCAGCTCCGAGCCCGCCAACGTGGCGGCCACAGCGGGCACTTTGGCAAACATGGCCAGTATCGCTGGCGTGGCCAGTTTAACCAACGCAGCCAGTATGGGAGGCGTGGCCAGCATGGCGGGAGTTGCCAGTATAGTGGGCGCGGCTGGCGCTAGTATGACACTAGGAGCGCGAGCATTGCATGCGGGCAAGTCTCCCGGAGAGTGGAGCGCTGGCGAGTCACTGCTCATGTTGGAAGATGCATGCAAGAATGAGCGGAAACACAGTTCACTCGCGGTCGTAACGAGTGTTGTAAATATAAGTGAGTGTGTAGGTGCGAGCGTGGTGGTGGCGGGCGGGCGCGACGAGGACGGCAGCATCTCGCTGCTGCTGTGCGAGGAGACCATCCCCGGCTCGCCCGCGCCCGACGCCgagcccgcgccgccgcgccagCGACTGCACATGCCCTTCGCCTCCGCGCCCGCGCACCAGCATCAGAAAGAAGAGCGACGCGGCGCGAGCGGAGCGGGTGGGGGCGCAGGcgggggcgggggcgcgggcgaggcggcgggctgggggcgcgggcgcgcgctCGTGGACAACACGCCGCCCACCACGCCCGACAGCAGCCTCGACATGTCGCCGCCGCACAGcagGGACCGGCGTATTTCTGAACGGGACAGTCCATCCGAACGTAAGGAGGATGAAGACGACAGCCGAATGAACGATGCAGCTGGTCTTGATGTTGATAAGGGTCACGGCGGGCGTCGTTCCCGCAAGGCGTCGGAGAGCTCGGCGAGCGCGCGCCAGCGACCTCGCCGCACGCGCCGCGACACCGACGACGCACCGCATCACCACCACCACGCGCCGCTCAAGTACAACTTCTACGTCGACTTAGATCCTTCATGGGACTGTCAGACACGTATAAACGTGTTGACAACACGCCTCGCAGATCTCCGCAAAGCGTACCACTCGGTGAAAGCGGAGCTCGCGGCCATCGACCGACGACGCAAGAAACTACGTCGGAAGGAAAGAGAAGctgTGAAGGCTGCCAAGGCTGCGTGCTCATGA
- Protein Sequence
- MGDDPPFLPVGTDVSAKYKGAFCEAKIKKVVRNIKCKLTLKAGGGSITVNDDVIKGTLRVGSTVEVKQDPKKDAMEAIITKIQDCSQYTVVFDDGDITTLRRSALCLKSGRHFNESETLDQLPLTHPEHFSTPVIAGRRGRRGRAQSEESEGSGSGRRVKADVEPHVGRVVLVEAGGGAERRRPHQPAFPALVVAPTAQIKVKEDYLVRSFKDGRYYTVPKKEAREFRKGSAPLEWAGVEAALQYLNNAVLPPHWDRDALFNEPRNTSDDSSDDEPREEKDHFVAQLYKFMDERGTPLNRNPTIANKDIDLYRLFKVVEKLGGYNRVTNQNQWKTIADKMGFHPVTTSITNLCKQAYKKFLHSYEDFYRKLGVTLVAHPRGARTPPAGRSLIRDRDRQPPASSSSCSTPTPPAPQVHYHNTSAAGGPLAHPRPRPPAARLLLQLLHAHAARATAAPRPRRPRHRYTTIILAPPAGRSLIRDRDRQPPASSSSCSTPTPPAPQVHYHNTSAAGGPLAHPRPRPPAARLLLQLLHAHAARATAAPRPRRPRHRYTTIILAPPAGRSLIRDRDRQPPASSSSCSTPTPPAPQVHYHNTSAAGGPLAHPRPRPPAARLLLQLLHAHAARATAAPRPRRPRHRYTTIILAPPAGRSLIRDRDRQPPASSSSCSTPTPPAPQVHYHNTSAAGGPLAHPRPRPPAARLLLQLLHAHAARATDKDSDKSETDKSEKSEKEEKPERVEKAKEKARTSDGEDSADNQPLIITTPKVDKDKEKEREKEKEREKEKEREKEKEREREKEKEREREKEREKEKEKEREKEKEKEKEKDREKEREKEKEKEKEKSSASTSTSDEKTVIKPRSQSKGRTITPVRTDSHEKRTPKRRPMSSKSEGTSGSTSRASRRPHASTDSDSSGRASRCGPIKKMQSRRSQSANSASSGNTIASNSSKRPRKRKNTEPSTSEPTRGVSKVKAQVGDKLKVYYGPTQSESKVTYEAKVIEISSEGMLRVHYTGWNTRYDEWIKPQRIAVNVTQHEQRNKKGSSISRRVRSKRTEESSARSDSDSDSESDDEVKRPPKKSSDDKSNPKTPSRSKDIKSSDSSSSSKPRKRPVRTVSTPTSVSPAKKTRPNVASHQGRDYDLNEIRSELKGLHTVKQEPEDAVKQETDKDASLTPAQTSALSSEPLQVDKQAEDVYEFKEPEPFELELHDEKKKRTHRIFDDISPSKYTSTLSKSLSEEISEDPMRPRPSSLRSPSLSPFRDFGTSRDASRQSPEDDSKDGLFSLDDDSFPGDGSSGPTFEGFTPAKNQETYSKKSKVSKLRELIDDSPDSPADDEQSSDDEPENITAMKVEEIEPTPIIPVIEEPKTPEPIAKDEIKDPEPVTPVKDEVIETTEQAIMISIPEPPRTPPPPQKKQDSPLAPIHITTNPIITITGVVSPNPKEENKEDIIEKPKKEEPVKLLPIATPVMEPKENVLKVKIDKKLDPIPMEPSISKLLPPSSPLIDTEEDKSEPDSPARIDVLPEPPPGFLLQSEGPKIAEKLLKAISSAKRLSMSPPPTEDRPVTPKTDTIKPLKPETKLSPISPEPKPIKPETTKPLVKIIEPIKKTAETVDTIFGEPSNLLDVKRNILDIKKVKPDESVVPRLQSPLNILERRKSVADLPLSVPGKNNKVLSDTIQKLSSQINQSAAAAAATVPLPFPSDDRSDSSDSDDSDRRLIIDKLAVDEWGSGGSGGSSEPANVAATAGTLANMASIAGVASLTNAASMGGVASMAGVASIVGAAGASMTLGARALHAGKSPGEWSAGESLLMLEDACKNERKHSSLAVVTSVVNISECVGASVVVAGGRDEDGSISLLLCEETIPGSPAPDAEPAPPRQRLHMPFASAPAHQHQKEERRGASGAGGGAGGGGGAGEAAGWGRGRALVDNTPPTTPDSSLDMSPPHSRDRRISERDSPSERKEDEDDSRMNDAAGLDVDKGHGGRRSRKASESSASARQRPRRTRRDTDDAPHHHHHAPLKYNFYVDLDPSWDCQTRINVLTTRLADLRKAYHSVKAELAAIDRRRKKLRRKEREAVKAAKAACS
Similar Transcription Factors
Sequence clustering based on sequence similarity using MMseqs2
- 100% Identity
- -
- 90% Identity
- -
- 80% Identity
- -