Basic Information

Gene Symbol
Myrf
Assembly
GCA_905333045.1
Location
HG995339.1:7401878-7423543[+]

Transcription Factor Domain

TF Family
NDT80_PhoG
Domain
NDT80_PhoG domain
PFAM
PF05224
TF Group
Unclassified Structure
Description
This family includes the DNA-binding region of NDT80 [2] as well as PhoG and its homologues. The family contains Swiss:Q05534 or VIB-1. VIB-1 is thought to be a regulator of conidiation in Neurospora crassa and shares a region of similarity to PHOG, a possible phosphate nonrepressible acid phosphatase in Aspergillus nidulans. It has been found that vib-1 is not the structural gene for nonrepressible acid phosphatase, but rather may regulate nonrepressible acid phosphatase activity [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 2 3.4e-36 9.9e-32 111.3 2.3 2 180 255 400 254 400 0.92
2 2 0.3 8.6e+03 -2.6 0.1 90 102 797 809 760 849 0.53

Sequence Information

Coding Sequence
ATGTTACATCTGGTGACATTGGGTCCGGGACTGATAGACGAATTGGAAGCGTTCATGGCCCCCGTCGGCGAGGGATGTTACCCGCCCCCGCCGCTAGACGCGCGCCGCATTGGGGGCCACCAATTACCAGAAAGTCCACCAGATTCCGGCTCAGAGAATCCATACAGTCCAGAAACCCAGGTGTCGCACACCATAGCGGTGTCTCAGACAGTGCTGGGCGCGGACTACATGCTGGTGCCCGAGCACATCAACCACGAGATACTTCACAACGACTACATCTACGAGGAGCTAAAGGACGACGAGGCTTTGAGGACCGACCTCAACGATGTGGTCGTCCTGCCCCAGGACAACATGGACCTGGGGCTACGGACGGTCCGGCACGACCTGGCTATCGACCAGTACAGGTATCCTGAGCTGGACCAGGGGATGATGAACCCGCAGCTGGTGTCGCTGGACCACGAGCCCCTCACGCCGGTCTACACGAGTCTCCAGGAGCCCAGCGGCAAGAAGAGGAAGCTGACGGAGAACTCCCAAGTCAAGTGTGAACCTGCGGCACTTTCACCGGAGATCTCCGCGCGGCCGCCGCCGTCGGTGGACGGTTCGGAGGCAGGCGATGACTCCCCGCTCCAGTGCATCCGGTTCGCGCTCTTCCAGCAGAACACCTGGCACGCGCTCTACGACTGCAATCTTAAGATACTCCCTCCACCGTCGTACATAGTCGGTGCCGACAAGGGGTTCAACTTCTCGCAGATAGACGAGGCGTTCGTCTGCCAGAAAAAGAACCACTTCCAGGTGACATGTCAGATCCAGCTGCAGGGGGAAGCGCATTATGTCAAGACAGCCGACGGCTTCAAGAAAATCAACAACTTCTGCTTACACTTCTATGGGGTTAAAGCAGAAGATCCCAATCAAGAGGTCCGGATAGAGCAAAGTCAGTCGGACCGAACAAAGAAGCCTTTTCATCCAGTGCCCATAGAGCTGCGTCGCGAGGGCGCCAAGGTGACAGTGGGGCGGCTGCACTTCGCGGAGACGACCAACAATAACATGCGCAAGAAGGGGCGGCCGAACCCCGATCAGCGCCACTTTCAACTGGTGGTGGCGCTGCGGGCGCACACCGCGCACGCCGACTACATGATCGCCGCGCACGCCAGCGACAGAATCATCGTCAGGGCGTCGAACCCCGGACAGTTCGAGTCAGACTGCGGCGAGGGGTGGTGGCAGCGCGGCGCGGCGGAGAACAGCGTGCACTACAGCGGCCGCGTCGGCATCAACACCGACAGACCCGACGAGGCCTGCGTCATACATGGTAACCTGAAGGTGATGGGTCACATTGTGCACCCGTCGGACGCGCGCGCCAAACACAACATAGAAGAGCTCGACACCGCGCAGCAGCTCAAGAACGTGCAGAACATCAGGGTGGTCAAGTTCAAGTACGACTCTATGTTCGCGGCGCACTCCGGCCTGGTGGGGTGGGAGGCGCGCGGGGGCGGGGCGGCGGACACGGGCGTGCTGGCGCAGGAGCTGCGCGCCGTGCTGCCCGACGCCGTGCGCGAGGCGGGCGACGTCACCCTACCCAACGGCGACACCATACCGCAGTTTCTGGTGGTCAACAAGGATCGTATCTTCATGGAGAACCTGGGCGCTGTTAAGGAGCTGTGCAAGGTGACGGGGCACCTGGAGTCGCGCATCGACCAGCTGGAGCGCATCAACCGCCGGCTGTGCAAGCGCGCCGTACAACGACGCGACAGCCAGCGATCTAGCGGCAGCGAAGATTCGAGATTCTCCGGAATATCAAATATCTCAAAATCATTTTACAGCGATGGCAACATCACGATAGACCAAATACGTGACATAGCCCGGAGTATTCGCAAACAGGAGTGCTGCCATAAACTCAGTCACAACTCCCCCAAGTTCACCCGGAAACAGTGCAAACATTGCCAAGGGAATAGCTCCAAGTATGGCAAATATTATAATTATAACAAAACGAGCGCCAAGTGCTCGAATAAGTCAGACAAGATCGAGACTGAAAGCAACTACCCAACTTATGTCAGTACCCTGGATTCGAACATAGATAAGATGCCAGACGAAAATTTCAGCACGATATCAAGGAAGAAAAACTCCTGTTTATGGCTAAGAGATGACAGCTTATATGGCAACTCCAAGCTGCCGTTTTGCTGCCGAAAATACAAGTACGGCGATCCAAGCGGGGAGTTAATATCAAACAAATATCTGCAAATTATAATCACAATCCTTATTTTCGTCATGGCTGTTTGTCTGGTGGTGATGTCGGCGCTGTACTTCCGCGAGCACCAGCAGCTGGTGAGCCTGCGCGAGGGCCGCACGGAGAAGGCGCCGCGCGCGCCGCCCTACAAGCAGCGACCTACGGACCTCAACCGTATACAGTCACTAAAATCTGCCCAACATTTGCCTTTGAAGAAAACAGCAAAAGAGAAAGGCCCGCACAAGACGACGCCGGAGTACGTGACGTCGACGCCGGACGCGTACGCGTCCATGGCTGCCCTGCACGCCACCAAGAACTACGTCAAGAGTGTGCTGCCAGACATGGAGGCGAGCTCCCCGCGGCCGGCGGCGGTGGTGTCGGCGTCGCGGCGCGCTGACGTCATCGGCCGCTGCGACGCGCTGCGCAGCGACAACGAGCTCGACGCCGACTGCCAGGTATGTACACAGACATGGAGGCGAGCTCCCCGCAGCCGGCGGCGGTGGTGTCGGCGTCGCGGCGCGCTGACGTCATCGGCCGCTGCGACGCGCTGCGCAGCGACAACGAGCTCGACGCCGACTGCCAGGTATGTACACAGACATGGAGGCGAGCTCCCCGCGGCCGGCGGCGGTGGTGTCGGCGTCGCGGCGCGCTGA
Protein Sequence
MLHLVTLGPGLIDELEAFMAPVGEGCYPPPPLDARRIGGHQLPESPPDSGSENPYSPETQVSHTIAVSQTVLGADYMLVPEHINHEILHNDYIYEELKDDEALRTDLNDVVVLPQDNMDLGLRTVRHDLAIDQYRYPELDQGMMNPQLVSLDHEPLTPVYTSLQEPSGKKRKLTENSQVKCEPAALSPEISARPPPSVDGSEAGDDSPLQCIRFALFQQNTWHALYDCNLKILPPPSYIVGADKGFNFSQIDEAFVCQKKNHFQVTCQIQLQGEAHYVKTADGFKKINNFCLHFYGVKAEDPNQEVRIEQSQSDRTKKPFHPVPIELRREGAKVTVGRLHFAETTNNNMRKKGRPNPDQRHFQLVVALRAHTAHADYMIAAHASDRIIVRASNPGQFESDCGEGWWQRGAAENSVHYSGRVGINTDRPDEACVIHGNLKVMGHIVHPSDARAKHNIEELDTAQQLKNVQNIRVVKFKYDSMFAAHSGLVGWEARGGGAADTGVLAQELRAVLPDAVREAGDVTLPNGDTIPQFLVVNKDRIFMENLGAVKELCKVTGHLESRIDQLERINRRLCKRAVQRRDSQRSSGSEDSRFSGISNISKSFYSDGNITIDQIRDIARSIRKQECCHKLSHNSPKFTRKQCKHCQGNSSKYGKYYNYNKTSAKCSNKSDKIETESNYPTYVSTLDSNIDKMPDENFSTISRKKNSCLWLRDDSLYGNSKLPFCCRKYKYGDPSGELISNKYLQIIITILIFVMAVCLVVMSALYFREHQQLVSLREGRTEKAPRAPPYKQRPTDLNRIQSLKSAQHLPLKKTAKEKGPHKTTPEYVTSTPDAYASMAALHATKNYVKSVLPDMEASSPRPAAVVSASRRADVIGRCDALRSDNELDADCQVCTQTWRRAPRSRRRWCRRRGALTSSAAATRCAATTSSTPTARYVHRHGGELPAAGGGGVGVAAR

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

100% Identity
iTF_01178595;
90% Identity
iTF_00405939;
80% Identity
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