Basic Information

Gene Symbol
Nfat5
Assembly
GCA_018150935.1
Location
JAECWR010000194.1:7601153-7615366[+]

Transcription Factor Domain

TF Family
RHD
Domain
RHD domain
PFAM
PF00554
TF Group
Beta-Scaffold Factors
Description
Proteins containing the Rel homology domain (RHD) are eukaryotic transcription factors. The RHD is composed of two structural domains. This is the N-terminal DNA-binding domain that is similar to that found in P53. The C-terminal domain has an immunoglobulin-like fold (See PF16179) that functions as a dimerisation domain [1-2].
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 7.8e-37 3.6e-33 114.9 0.7 1 168 241 400 241 401 0.97
2 2 0.22 1e+03 -0.4 0.0 48 73 500 525 489 546 0.79

Sequence Information

Coding Sequence
ATGACCATGTCCACAAACTCGACGATGAGTCCGCGGATACATCGAAAGGGCTTTCGCATACCATCGAAGAGGCAGCCCGGCAAGGGATTGCCCGGAAAGCTGCACACAATAGCCAGGAAAATGCTCAACTATCTGGATGACATTGAGGCCGAATCGATGACATCTCGGCTCGAGGAGTTGGCCACACCGCCCAGCAATGATGAGGACACGGGCTTTGGCACCGACAACAGTCAGACGACCACAGCAACAACAACCGCAACGACAACAACAATCGGTGCCGATCTCTTTGGTGGCATCTTCAACACACATGCCGCTGACTCGGAGAGCAACAACATTGGCTCACCCACTACAACCACAACAACAACGAGTACCAGTCGTGGTGGCAAGCATTTGAAGCGCAAGAAACTGGAATGCAACCAAGTGGAGCTGGACAACGATGATGCCTGCAGCGAGGATGAGTTCATTAGAAAGATTACCACCGTGGCAGCCACTGACAATCGACATGAACAGCAGTCGTCCAACTCGGCGGCCCACATCATCTCTGTGGAGACGCTGCCCCGCAGCCAACCCAATCCCAATCCTGCACCCAGCAAGGTCATCGGCAGCCACAGCGAACCCACAAAATTCATTGGCACACGCACCGTGACACGTGTGGCAAACAAGCGACAACCCACAACGCCACTCAACAGCATCGCCAGCTCCAACGATGGACATGTCCAGCTGGAGATTGTCTCACAGCCGGAGCAACAGCATCGTGCACGCTACCAGACCGAAGGCAGCCGTGGCGCTGTCAAGGATCGCAGTGGCAACGGCTTTCCCATTGTCCGACTGACTGGCTATGATAAGGCAGCCGTGCTGCAGGTCTTTATTGGCACCGACATTGGCCGTGTGGCGCCGCACATGTTCTATCAGGCCTGCAAGGTGGCCGGCAAGAATTCGACACAGTGCAACGAGAAGAAGGTCGATGGCACCATGGTCATTGAGATTGATTTTAAGCCCGAAACGGACATGACCATCACCTGCGATTGCGTTGGCATACTGAAGGAACGCAACGTTGATGTGGAGCATCGCTTTCCGGAGCATCTGGCGCAGAAGAACAAGAAGAAGTCGACTCGTTGTCGCATGGTGTTTCGCACTCAGCTGACTCGCGACGACGGCAGCTCTGAGACGCTGCAGGTCTGCTCCAATCCCATCATTTGCACCCAGCCACCTGGCGTGCCAGAGATATGCAAGAAGTCGCTCAACTCCTGTCCGGTAGATGGCGGCTTGGAGTTGTTCATTATTGGCAAGAACTTTTTAAAGGACACGCACGTTGTGTTCCAGGAGACATACGACAGTGTGAATGCCGACGATCCAGCTACAGAAATTGCAGTGCGACAGCAGCTAATTGGCGGCACAGCCGCACTTTGGGAGCAGAGCGTGCTGCCCGACAAGGAGTATTTGCATCAGACGCATTTGATATGCACAGTGCCGCCGTATCTGCATCAGAATCTGCTAAAGCCGGTCAGCGTACAGGTGTCCATCGTCTCGAGCGGCAAGAAGAGTGAACCGCATAATTTTACCTATACCCCTAAGGGCAGCTATACGACGCTAGCGGCGGCCAGCACGTTAAGTAGCACAATGCACAGCCAAGATGTTGGCAGCTTCATGGACACCAGCAATGCGCCAGCCAGCGCCAACAGTGGCGTTTGGGCCAACAGCACTGGCAGCAACAACTCGGCCGTTGTGGCTGCCCCAAATGGTGTGGAGACGAAGCATGAGATTGATTCAGGTATGATGCCACCACCGATAACCACACAGATACCAATGGGACTACGTCGTTCCTCATTGTCGGGCGCCACGCCCATGATCACCGATCAGCAGCTGGTCCACTTGACGGCGGCCAGCGCTGAGGCAGCGCTTAAGAGTGAATTGCTCGATGAGAATAGCTCGCATAGTCCGTTGACCGGCGATGCCATGCACTCGCCCGAGGCACTGAATCCCTGCAGTCCCAATGCCTTGCAATATCATGCGCACTATGGTCGCAAGACCAGCCTGGACACCATCATGTACGATCAATCGAATAGTCTGCCCGGTTTCCCGGTGCCAGCCACAGCTGCCGCCTCGGCTGCAGCAGCTGCAGTGGCCGCTGCTGTTGATCTGGATGCCACAGCTGTGGCGGTGGCCGTTGAGCTGGCCCCAGCACTGTTCACCAATGCCGCCGTTATTGATCATGCACTCACCGACATACTGCAACAAAAGGTGGGCGTCTTGACGCACCATCAGGCCCAGCATCAGCCGCAGCTGCAATCGTCGTCACCCACAACGAACAATGTGCTTAAACGCAGCCTCTCACTCAGCAGCAACAACTCGAACAGCTCGCTCTCGGGCGGCGAAACATCGCCAAATAGTTCGCCCCTAACGCAGGACATTATCTTGAATTCAGAACCGGCTGCTGCCTTGGGCGCCATCTGTCCGGTGCCCACAGCAGCGGCTGTGGCCAATGCGACAGGTGCCTTGTCAACGGATATTATTATGAATCCAGCTGTGTCGCCTTCAACCATACTCTGTTCGGCCAATGGTGCAGCAACGGCTGTGGTGCCCAACATCTTGGCACCACATCAGGTGACCATGGCCAATTCCATACTAAATGATATTGCCATGCAGGCGGAGCCCACGCAACAGGATGCTGCAGTGGCTGCCTTGGCACTAAGCAACATTATGATGAGTCCACCGAATGCGGCCAATGTGGATGTGGTGGGCGATGCGTTGCCACCGACGCCAGCGGTTATGCAACCGGAGGTGGCAGCCACTGCCACATCCACAGCGACACCCGAAACGGTGGCTGCCGAGGCAGCAGCTGCTGCAGTGGCTGTGGCAGCTGCCAGTTTCCCAGCACTGTTGCCCGTGGTGCCGCCCGCACCACAAGAATCTCTTATTGTTGCGCTCGCCTCGGAGAATGCATTGCAAAAGTCGGTGGCCACCGCCGCAGTGACCACCAATGGTGCCGTCATGACGCAACAGGCCTCGGCGCCCAGCAGTGCCGGCAGCATACTGCCCGCTGCCGTTGGCGCTGTCGCTGCGGCTGCTGCCGTTGCCGTCCAGCCGCCCATACCGCAGGAGCTGACCACCATGTCCGACCAGGATCTACTCAGTTACATCAATCCGAGCACCTTCGATCAGCGTGAGTATCCATGA
Protein Sequence
MTMSTNSTMSPRIHRKGFRIPSKRQPGKGLPGKLHTIARKMLNYLDDIEAESMTSRLEELATPPSNDEDTGFGTDNSQTTTATTTATTTTIGADLFGGIFNTHAADSESNNIGSPTTTTTTTSTSRGGKHLKRKKLECNQVELDNDDACSEDEFIRKITTVAATDNRHEQQSSNSAAHIISVETLPRSQPNPNPAPSKVIGSHSEPTKFIGTRTVTRVANKRQPTTPLNSIASSNDGHVQLEIVSQPEQQHRARYQTEGSRGAVKDRSGNGFPIVRLTGYDKAAVLQVFIGTDIGRVAPHMFYQACKVAGKNSTQCNEKKVDGTMVIEIDFKPETDMTITCDCVGILKERNVDVEHRFPEHLAQKNKKKSTRCRMVFRTQLTRDDGSSETLQVCSNPIICTQPPGVPEICKKSLNSCPVDGGLELFIIGKNFLKDTHVVFQETYDSVNADDPATEIAVRQQLIGGTAALWEQSVLPDKEYLHQTHLICTVPPYLHQNLLKPVSVQVSIVSSGKKSEPHNFTYTPKGSYTTLAAASTLSSTMHSQDVGSFMDTSNAPASANSGVWANSTGSNNSAVVAAPNGVETKHEIDSGMMPPPITTQIPMGLRRSSLSGATPMITDQQLVHLTAASAEAALKSELLDENSSHSPLTGDAMHSPEALNPCSPNALQYHAHYGRKTSLDTIMYDQSNSLPGFPVPATAAASAAAAAVAAAVDLDATAVAVAVELAPALFTNAAVIDHALTDILQQKVGVLTHHQAQHQPQLQSSSPTTNNVLKRSLSLSSNNSNSSLSGGETSPNSSPLTQDIILNSEPAAALGAICPVPTAAAVANATGALSTDIIMNPAVSPSTILCSANGAATAVVPNILAPHQVTMANSILNDIAMQAEPTQQDAAVAALALSNIMMSPPNAANVDVVGDALPPTPAVMQPEVAATATSTATPETVAAEAAAAAVAVAAASFPALLPVVPPAPQESLIVALASENALQKSVATAAVTTNGAVMTQQASAPSSAGSILPAAVGAVAAAAAVAVQPPIPQELTTMSDQDLLSYINPSTFDQREYP

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

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