Basic Information

Gene Symbol
Trm1
Assembly
GCA_943193655.1
Location
CALPDL010000056.1:26538-39427[-]

Transcription Factor Domain

TF Family
NCU-G1
Domain
NCU-G1 domain
PFAM
PF15065
TF Group
Unclassified Structure
Description
NCU-G1 is a set of highly conserved nuclear proteins rich in proline with a molecular weight of approximately 44 kDa. Especially high levels are detected in human prostate, liver and kidney. NCU-G1 is a dual-function family capable of functioning as a transcription factor as well as a nuclear receptor co-activator by stimulating the transcriptional activity of peroxisome proliferator-activated receptor-alpha (PPAR-alpha) [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 0.13 2.9e+03 -2.8 0.0 156 183 76 105 75 125 0.72
2 2 3.3e-79 7.1e-75 252.4 1.2 1 308 556 851 556 852 0.94

Sequence Information

Coding Sequence
ATGGAAACATTAACTTCCATGAATCATAAAATCATAAAAGAGGGACCTGCTGAAATCCAGTTAGTTGCAGAAAAAGTATTCTATAATCCTGTTCAAGAATTTAACCGGGACTTGAGTATACTAGTTCTAAGTGTTTTCTTTGAAGATTTTAAAGTTGAAAAGGAAGCTTTAGCACGGAAAAGGGATGAAAGAATTAAGAAAAGTAATAATGGATCTGTTGATGATACTAACAATACAACTCAGGTCGATATAAGTATACTAGAGGCACTTTCTGCCACAGGTTTGAGAAGCATTCGCTATGCTAAAGAAGTGCCAGGTGTCACAAAAATTTTAGCCAATGACTTGTCAGAACAAGCTGTTGATACCATGAAGGTCAATATTAAACACAATCATGTTGATCACCTGGTAGAGACCAATCATGATGATGCATGCATGCTCATGTACAAGCACAAACACCCTTCAAAACGCTTTTCAGCCATTGACTTGGATCCTTATGGATGTCCATCAATATTCCTTGATGCAGCAGTCCAGAGTGTACAGGATGGTGGTATCTTACTGGTGACAGCCACAGATATGGCTGTTCTCGCAGGCAATTCACCAGAAACATGCTATAGCAAATATGGGGCTGTGAGCTTGAAAACTAAATGTTGCCATGAAATGGCTCTAAGGATACTACTGCAGTGTATAGAAAAACATGCAAACAGATACAGCCGGTACATAACACCATTGTTGAGTATATCTGCAGATTTCTACATTAGAGTATTTGTCAAAGTTCAGTCTGGTGCAATACATTGCAAAAAAACTACTAGCAAATTGTCTATGGTGTACCAATGCGTAGGCTGTGATAATATGACACTGCAGCCACTTGGAGGCTTCAAACCAAACCCATCGGAGAAGAACCCAAACCAGATGAAGGGATTTTTACCCACTGGCCCCCCAGTTGGACTACACTGTGTGAATTGCAATCAGAAACACCATCTAGGCGGTCCCATCTGGTCAGCCCCAATTCATGACTTCACATTCGTGTCCCGTGTACTGGGCGCACTGTCCACTGGCTCGCACAAGCTTGGCACCAGCGCCCGCGTGGAGGGTGTCTTGTCTATGGTCCTAGAGGAGCTGTCAGACGTGCCTCTATACTACAGCATGGAGAAACTGTTCGGCGTAGCGCATTTAGAGACAATGCCTATGTTAGTGATGAGGTCGGCCATCCTGAACAGCGGTTATAAGGTGTCATACTCCCACGCGTCTAAGGGGTCCGTCAAGACAACTGCTCCGGCGCAATTCGTGTGGGACATACTACGCACTTGGGAGAAAACACATCCAGTCAAGTCAGCCAGATTGGAAACAAACCCAGTAGCAAAGTGCATACTGTCACAAGACATCAAATCTCCCGTGGACTTTACTGAGCGAGCAGACGCCAACCCGAACAGCCGCCGCGCTGGCTGCCTCCGCTTCCAGTTCAACCCCGAGAGGTACTGGGGACCAGGCTCCAGGGCCGTTGTCAATGTGGGAGAAGAAAAAATGTCTAAAGCGGTTCGAAATCAAAACAAACACTCAAAAAAAAACAAGAAGAAGCGAACACATTCAGGAAGTGAAGATGAGGACCGAAAAAAATCTCATATGGAATTTATACCTACCAGATGCCCCTCATGTACTGAGAATGAAACTCTTGTCTACATCAAAGCACAGGGCACCCATGACACTATACACCAGATATGGGACTTCACAAGGAATGCCCCAACAGTGATCCTAGCTGTTGCTGGGGTCAATTCTTCAATGGCCATAACTTGGGAAGGTACATATCCTGTGAAGTTTGCAGCATCAGAGAAACCAAAGTACAGCTTTGCAACAGCCATTGATAAGTTGTATGAATATGACGACATTCAAGACAACGGATACATTGACGCCAAGAGTCCACGCCGAGCCGTGCCTTTGTCGCGCGCGTCGTGGTCGCTGCAAAATTTCGTTCACACGGAGAACGAGGTTATGCTTCAAGTTCGCGGGAGGTTTAACCACCAGAACCCTAGCGTTCTTGACCTTAAGCTAGACCTCCTTCCATTCAAAGACTTCGCGGTAGACCTGCCTCGCTTGATTCACACGGCCAACTCCACCCTTGTGGACGTGAGCCTAGAAAACATGACCACGTCGGCAGATTACAACGCGTCCAGGTTTGCCCTGCACCTGGTCATGGTCAGCGTGGACCATAGGAACGATACTATGCAGTATACCATGAGGAAGAGTTTGGACGATGAACACACGCCGGGCGTGTTTGAGATCATAGAGATAAAGTCTCCGGGCAGCGCGCAGCGGGGCGCGGGCGGGTTCGTCCAGTTCCGGCCCGTCGCCTACACGCAGCGCACGCGCGGCGTCGCCTCCTCCACCTACGTGCATGTCTCCACTATTAACAGGACGCAGATACCGGAGCGTAGTACGCTGCGGTCGTTTTACAACGGGTTCGATTGGAGCTCGCTGCTGGTGCAAGACATGCTTATATCGTTCGGGGAGACCGGCGACGGGTACTACGAGCACCACAACTATACCTCCTGGTCAGTGCACTAA
Protein Sequence
METLTSMNHKIIKEGPAEIQLVAEKVFYNPVQEFNRDLSILVLSVFFEDFKVEKEALARKRDERIKKSNNGSVDDTNNTTQVDISILEALSATGLRSIRYAKEVPGVTKILANDLSEQAVDTMKVNIKHNHVDHLVETNHDDACMLMYKHKHPSKRFSAIDLDPYGCPSIFLDAAVQSVQDGGILLVTATDMAVLAGNSPETCYSKYGAVSLKTKCCHEMALRILLQCIEKHANRYSRYITPLLSISADFYIRVFVKVQSGAIHCKKTTSKLSMVYQCVGCDNMTLQPLGGFKPNPSEKNPNQMKGFLPTGPPVGLHCVNCNQKHHLGGPIWSAPIHDFTFVSRVLGALSTGSHKLGTSARVEGVLSMVLEELSDVPLYYSMEKLFGVAHLETMPMLVMRSAILNSGYKVSYSHASKGSVKTTAPAQFVWDILRTWEKTHPVKSARLETNPVAKCILSQDIKSPVDFTERADANPNSRRAGCLRFQFNPERYWGPGSRAVVNVGEEKMSKAVRNQNKHSKKNKKKRTHSGSEDEDRKKSHMEFIPTRCPSCTENETLVYIKAQGTHDTIHQIWDFTRNAPTVILAVAGVNSSMAITWEGTYPVKFAASEKPKYSFATAIDKLYEYDDIQDNGYIDAKSPRRAVPLSRASWSLQNFVHTENEVMLQVRGRFNHQNPSVLDLKLDLLPFKDFAVDLPRLIHTANSTLVDVSLENMTTSADYNASRFALHLVMVSVDHRNDTMQYTMRKSLDDEHTPGVFEIIEIKSPGSAQRGAGGFVQFRPVAYTQRTRGVASSTYVHVSTINRTQIPERSTLRSFYNGFDWSSLLVQDMLISFGETGDGYYEHHNYTSWSVH

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

100% Identity
iTF_01081621;
90% Identity
-
80% Identity
-