Basic Information

Gene Symbol
CSRNP3
Assembly
GCA_014466175.1
Location
CM025344.1:3423034-3427929[+]

Transcription Factor Domain

TF Family
CSRNP_N
Domain
CSRNP_N domain
PFAM
PF16019
TF Group
Unclassified Structure
Description
This presumed domain is found at the N-terminus of cysteine/serine-rich nuclear proteins. These proteins act as transcriptional activators [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 3 0.8 9.6e+03 -4.3 0.7 85 94 219 228 191 257 0.40
2 3 0.012 1.5e+02 1.6 2.6 75 108 549 581 535 647 0.61
3 3 6.9e-101 8.4e-97 322.8 7.5 1 218 858 1068 858 1068 0.92

Sequence Information

Coding Sequence
ATGATCGAGAAGACGGATTGTGATCCCGTGGATTGTGAGATGGAGGTCGCGCGGGAGATCCAAGGAGGCCTAGTAGAAGCAACGCGTACGATTACGGAGAAGCAAGAGAAGGAAACTTATGAAAAGAACGAAGATGGTACAACAACATCATCATCATCAACAACAACAACAACTTGCAGCGAATCGAGCGGCTGCATTCTTTTGGACAAATTCGTTCCCGAATGTTTTCGAGAAGAAGAAGAACGTATGCAGGTCGATGAGAATGTCGAGACCCAATCGAAGACGACCGTTGACGTCTTTTCGGGTTCTTCGTCATCGTCATCGCCGTCGCCATTGTCCTCGCCATCATCTTCGTCTTCTTCGTCGTTGTCAAGAAAGAGACCAGCCGGTAGCGACTTTCTGTCGATCGATACAGATGCCAAGAGAATCGGCGTGGAGATGTCCGAGGAAGAAACGAATCAATTGAAAAACGACGTCAAAAGACTTTCGCCCGTTGAGATAAGCCTTCGAGAACGTACACTAGGTGAGATCTCATTGACTCCGGAATCACGGTTGTTTTGCGAAGACGTCAACAACGTCACGTCGGAGAATTTATCATCGTCCAATGTTTCTCGAATGATACGTCATAGGCAAACTATGATTAATGATTTGGTCGATGCTAATGAAGATAGTACGAAGACACGATCAAAGTCTAAGATCTATAAAACGGACGAGACGATTGAAAACGACGAATGTACTAGAAGCGTCGAAATCACGGAGAACGTCGAATGTAAATTGCATAAGGATAACACGNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNAAATTCCTGTTGCTCAACGTCGTTCCGTGAGAATGACATTCTCCCTTGTGAAGACGGAGTCGTTGACGATTCCAAAGCCGATACGTCCGTCGTCATGAAGTCGGAGAAAGAAGAAGGTACAGATTCTCTGCGTCAGTTGGTTGTCATGCTGAATCGTGTGGACGAAGAGATCAAAGATAAGTCGGATCCTAAGGAATGCAAAAACAATGTTCTTAGTGCGATGAGACCGAGAAAGATTCCTCGAGAAGACGGCGGTACGACTGCGAAGGACAATGTATACGAAACGATGCTAAAGACTAATTTGTCGCCTCGTAAACTGATCGTAGTGCTAAATCGTATAGACATGAAGGAAGGTGCTAAAAAGGAGAAAGGAAATGTTGACCGATGCGTTGATAGCAATATAGTCGAATCTACGGCAGATTGTCGAACAAAAATTGATAGTACGATGCAAAAAATATCTACTCGTTCTTCCGTGCAAAAGCTTTTAGACATGAACAATATTGTAAGTTCGAAGGATGGATACACGGAAGAAAGTAACAAAAACGATTCGCTTTTACTCGATAGTTATCCGGTCGTATTGTCTGGTATAGAGAAGGAAAATAGCGTTGACGATGTAAGCAATTTGCGGCAAGCCGAGTTAAACGAGGAAGTCGAAATCGTAGGTTCGGAAACGCAAAGGGCACTCTCCCCGACAGTGTCCATTGTGGCTAAGTATGATGATCCAATTTCGTTGGACTCGAATGGAATAGCTTTCGATGAAGCCACACGTTATTCGATAAGAAATAAAACGAAAATGATCACCGAGGAGGAGGAGGAGCAGGAGGAGGAGGAAGAAGAAGAGGAGGAGGAGGAGGAGGAGGATGATGAGCTCGGCGAGGAGGAAGAGTTACGAGTTGAGAAAAATGTTGCGAGGAGAAGTAGCGTGTTACAGAAATTAAATAAAGAAGAAGTGCCTAGCGGTGGGGCGGTAGTGATCGAGAAACTCAAAGAGGAGGAGGAAGTCGTTTTGGCGACGTCGTCGACTATGCCGAACGAAGATGACGATCATTTGCGAAATCTTGACTCGTCTGATTTGGATTCGTCCGAGACAACAACGCCAGGTTCACCTGGAGAAGCGCTGGAAGCTTCTGCCGATGTCCAAGAAGCGATTGATACCGAGACAGAAACCGAGACTGGTTCCGACAGTTCCGAGATGCCAACGTCCATTGTTCGTATTCGCGGCACCAGCTGCGAAGGAGAAGACATCGCCGATGCAGCGAATAATTGCCCCGAGAATGAGACTCTCTGTTGCGACGAGATAGCGTCCGAGATGATAACCAGGCTCGAGCCAGAAAAACCAGAACCTTTCACCGAGGATTCCGCAGAGAGTTTAGCGTTGACGACTGGTGCAAGAGACGAGGTTAGATCCGACGGGAGCGATTCTGGTCTTGGAAGCGAAATACCTGGAGATCCTGGACCAGCACCAGCTCCAGAGAGCGATTCCGAGACGTCTTTTCTTGACAGAATACCGGATGATATTCTTTCCGACAAGGAAAAAGCTGTGAACCAACTAGAGGAGAGCTTTGTACCGGAAACGAGTGTCCCTGGGGCATCGCAGGCTACGTTAGCGACGTTCCGAAATCCTCCGAAAAGCAATCTTAAACGTAGACTGACTGATTGTATGGAAGGAGAACCGAGCCCTAAAAGAAGCAATACTACCGAGGAGCCTATGAAGAAGAAACGAAACATCCATTTTGATGCCGTTACTGTTTATTATTTTCCTCGAGCGCAAGGTTTCACTTGTGTTCCTTCGCAAGGTGGTAGTACTCTAGGCATGAGCGCGACTCATACGCACGCCGAAAGGTTTTCTCTTTCCGAACATGCGGCCGAGCAAAGGAGATTGCATCGGGCTAGATTGGCGCAGCTACGTTCAGAACGTGCAGCAAATTGCGCGACGGAAGCTGCTTCGAGTTCGGAAGATCCGAGCGACGATACCGATGAAGAACCCAGCGACAACGAGGAGCTCGACATCGATAGTTATTATTTTCTACAGCCTGTACCAACGTGGCAGAGACGTGCGCTTCTTCGTGCGGCCGGTGTACGTAGGATAGATGCCGTTGAGAAGGACGAATGTCGAGATATCCGCGCGAGTCGAGAACACTGCGGCTGTGGATGCAAGGGATACTGCGATCCGGAGAGTTGTCCTTGTAGCAGAGCGAACGTCAAGTGCCAGGTCGATCGCGCCGGTTTCCCTTGCGGTTGTACCCGGGATGGTTGTGCCAACAGCTCCGGTAGGATAGAATTTAATCCGGTACGAGTGCGAACACACTTCATACACACGTTGATGCGGCTCGAGTTAGAGAAGAAGCAACGCGATGAAGAAGGAACTGATCACGAGGGCACCGACAATCAGAATAATAAAAGCGGACCATTGCGAGATATCAATTTGGGCTCCCTAATAGACAATTCTAATACGGAAGCGTGTATAACTGGTGGTGGTTTTACAACGTTACATTATGAAAATCATGATGCCGGCAATGGTAGTTCGAATTGTCAACCAGAAGTACCTGGTACGCGAGAAGATAGTTTAGATCTTTATGCTATAAGAGACGATTGTTATCCGAACGAAGACACGGTCGATGGTACGCAAGGTGGCCAAAGAAAATTGCATCCCGAATTTAGTCAAGCTTTTCAAACATTTTCGGGCCAAACAGCAGGTGCAAATATGAATTTTCAACAGACCGCTTATCAGGATTATCAGGCTTATACAAATCTTCCTTCCACGTCTAGGGTTCAATTTCAGCCGCAATTTCAACCAGTGCCCGGAAGCTCAGGTTTCTCGCATTACGCGGTCTATGGGCAAGATGGCACATCTGTGCAGGACAGTTGCCAGGTACATCCTGGGCAACATTCTTCCAATTACGAGGCTAGCTTCGCGCAAGACGAATCGACCGGATCGCAATATACAAATTTGAATTCTGTGCAGCCGATGAACGGTGGAGTTCAGCAGATAGGTAAGCTAGAACCGTTCTCGGAATTGCTATCCGGTAGGTATTCGTATTATGGCGAGATAGAGCCGCAAGCGCATGGTACTTATCATGGAAACGCAAATAAAGAAGGAGAAAAGGATCAAACTACGAACGAGCAACAATCGGAAAGTACGGAGGAATGCGATGAAAATTTTGGAGAGATCATTAAAAAATCTATGGTGGAGACGGTATCCGCTTAG
Protein Sequence
MIEKTDCDPVDCEMEVAREIQGGLVEATRTITEKQEKETYEKNEDGTTTSSSSTTTTTCSESSGCILLDKFVPECFREEEERMQVDENVETQSKTTVDVFSGSSSSSSPSPLSSPSSSSSSSLSRKRPAGSDFLSIDTDAKRIGVEMSEEETNQLKNDVKRLSPVEISLRERTLGEISLTPESRLFCEDVNNVTSENLSSSNVSRMIRHRQTMINDLVDANEDSTKTRSKSKIYKTDETIENDECTRSVEITENVECKLHKDNTXXXXXXXXXXXXXXXXXXXXXXXNSCCSTSFRENDILPCEDGVVDDSKADTSVVMKSEKEEGTDSLRQLVVMLNRVDEEIKDKSDPKECKNNVLSAMRPRKIPREDGGTTAKDNVYETMLKTNLSPRKLIVVLNRIDMKEGAKKEKGNVDRCVDSNIVESTADCRTKIDSTMQKISTRSSVQKLLDMNNIVSSKDGYTEESNKNDSLLLDSYPVVLSGIEKENSVDDVSNLRQAELNEEVEIVGSETQRALSPTVSIVAKYDDPISLDSNGIAFDEATRYSIRNKTKMITEEEEEQEEEEEEEEEEEEEDDELGEEEELRVEKNVARRSSVLQKLNKEEVPSGGAVVIEKLKEEEEVVLATSSTMPNEDDDHLRNLDSSDLDSSETTTPGSPGEALEASADVQEAIDTETETETGSDSSEMPTSIVRIRGTSCEGEDIADAANNCPENETLCCDEIASEMITRLEPEKPEPFTEDSAESLALTTGARDEVRSDGSDSGLGSEIPGDPGPAPAPESDSETSFLDRIPDDILSDKEKAVNQLEESFVPETSVPGASQATLATFRNPPKSNLKRRLTDCMEGEPSPKRSNTTEEPMKKKRNIHFDAVTVYYFPRAQGFTCVPSQGGSTLGMSATHTHAERFSLSEHAAEQRRLHRARLAQLRSERAANCATEAASSSEDPSDDTDEEPSDNEELDIDSYYFLQPVPTWQRRALLRAAGVRRIDAVEKDECRDIRASREHCGCGCKGYCDPESCPCSRANVKCQVDRAGFPCGCTRDGCANSSGRIEFNPVRVRTHFIHTLMRLELEKKQRDEEGTDHEGTDNQNNKSGPLRDINLGSLIDNSNTEACITGGGFTTLHYENHDAGNGSSNCQPEVPGTREDSLDLYAIRDDCYPNEDTVDGTQGGQRKLHPEFSQAFQTFSGQTAGANMNFQQTAYQDYQAYTNLPSTSRVQFQPQFQPVPGSSGFSHYAVYGQDGTSVQDSCQVHPGQHSSNYEASFAQDESTGSQYTNLNSVQPMNGGVQQIGKLEPFSELLSGRYSYYGEIEPQAHGTYHGNANKEGEKDQTTNEQQSESTEECDENFGEIIKKSMVETVSA

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

90% Identity
iTF_01514818;
80% Identity
-