Basic Information

Gene Symbol
Dis3
Assembly
GCA_002201625.1
Location
NIJG01000123.1:1881918-1885439[+]

Transcription Factor Domain

TF Family
CSD
Domain
CSD domain
PFAM
PF00313
TF Group
Beta-Scaffold Factors
Description
In molecular biology, the cold-shock domain (CSD) is a protein domain of about 70 amino acids which has been found in prokaryotic and eukaryotic DNA-binding proteins. When Escherichia coli is exposed to a temperature drop from 37 to 10 degrees Celsius, a 4–5 hour lag phase occurs, after which growth is resumed at a reduced rate.During the lag phase, the expression of around 13 proteins, which contain cold shock domains is increased 2–10 fold. These so-called 'cold shock' proteins are thought to help the cell to survive in temperatures lower than optimum growth temperature, by contrast with heat shock proteins, which help the cell to survive in temperatures greater than the optimum, possibly by condensation of the chromosome and organisation of the prokaryotic nucleoid.
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 0.0055 41 4.1 0.0 10 34 151 176 144 185 0.84
2 2 4.3e-10 3.2e-06 26.9 0.0 4 71 254 320 252 323 0.84

Sequence Information

Coding Sequence
AATCCAGAAAGGAAATTTTATATTTTTATCAATGAGCATCATAAAGACACTTATATAGAACGTAATCCTGGTGAAAGCATAAATGATAGAAATGATAGAGCAATTAGGGTTGCAACAAAGTGGTATAATACACATCTAAATATGGATGGTAATAAAATCACAACTGTATTATTAACAGATGATGCACAGAATAGAGGCTTAGCAGAGAAAGATGACATTCCAACTATTTCAATGGAAGATTATATTTTATCGCTAGAAAATTCAGGTTTTCTAGCTGATAAATTATGCAAAAAGAGTTATGGGATGGTATCTGATGGTCCAGAACTTTTTCCATGTCATTTAACACCATCCGAGATACATAATGGTATAAAAAATGGGAAACTTCTACAGGGAACATTTACAGCTTCAAGAGAAAATTTTCTTGAAGGATTTGTAAATGTAGATGGAGTTGAAAAAACTATTTTCATCCAAGGACGTAGTAACCTTAATAGAGCTGTTGATGGTGATGTAGTTGCATTAGAAGTCTTGCCAGAGGATCAGTGGTCATCTCCTAGTGATATTGTTTTACAAGATGAAGAAGAGATAGGTGTTGATGATATTTTAGAAACAAAAACAGTGTTAGATAAATCTGTTTCATCAAATAAAATGGAGAGGACATCTACTGGTAAAGTTGTTGGTATTATTAGAAGAAATTGGAGACAATATTGTGGAATATTACAGCCTAGCAATATAGAAGGGAACGTACGTCATTTATTTATACCGGCCGAACGAAAAATATCTAAAATAAGAATCGAAACTAGGCAATATGCAGTGTTAAGTAAACAGAGAATTATTGTAGCCATTGATTCATGGCCTCGTAATTCGAGATATCCTCTTGGTCATTTTGTACGTGCATTAGGTGAAATAGGAAATAAAACTACCGAAAATGAAGTAATTTTATTGGAGCATGATATTCCTCATAGTCGATTTTCTAACGATGTTCTTAGTTCATTGCCCAAAATGCCATGGCGCATTCCAGAAGCTGAATTAGCACAAAGAGAAGATCTTAGATATTTGGATGTATGTTCAGTGGATCCACCAGGATGTACAGATATCGATGATGCGCTTCATTGTAGAGATCTACCAAATGGTAATCTAGAAGTAGGTGTACATATTGCAGACTTATCATATTTTATGAAACCTGGGACAGCATTAGATAAAGAAGCAGCAGTGCGAACTAGAACTGTATACTTGGTTGATACAAGAATTCACATGGTTCCTGATCTATTAAGTGCAGATCTTTGCTCTTTACGAGAAAAGCAGGATAGATTAACATTTTCATGTATATGGGAAATGGATAGAGACGCAAATATAATTAATGTTAAATATTGTAAGGCCGTAATTTGTTCACGAGCAGAAATGACTTATGAAGAAGCTCAATTAAGAATTGATGATGCTGTTCAGCAAGATCCACTTGCAAAATCGTTAAGAACGCTTAACAATTTAGCTAAAAAGTTGAGAAAGAAACGTCTAGAAAATGGGGCGTTAGTATTAGCATCTCCGGAAATTCGTTTCCAAATTGATCATGAAACATGCGATCCTATCGAAGTAGAAGCGAAAAAAATGCGAGAGACTAATTCGATGGTGGAAGAATTTATGTTACTTGCAAATATTTCGGTTGCTAAAAAAATTGTAGAAGATTTCCCAGAGTGTGCTGTATTAAGAAGGCATCCTGAACCACCACTTGCTAATTTCGAGCCTCTCATAAAGGCTGGAAAGAATCAGGGCTTCATTATAAACGTTAATAGCGGTAAAGAATTAGCAGAATCGTTAGATAAATGTCATAAAGAAAGCAATCCTTATTTTAACACTATGTTAAGAATACTTGCTACACGTTGTATGATGCAAGCTGTATATTTTGTTAGTGGAATGCATCAACCATGTGACTATTATCATTATGGTTTAGCATGTCCTATTTATACTCATTTTACATCACCTATTCGAAGATATGCAGATGTGTTGGTTCACCGTTTATTGGCAGTTTCTATTGGAAGTGGTACGACATATCCCGAGTTGCTAGATAAAAAGAAACTTCACGCGCTTTGTAACTATATGAATCATCGTAATAAAATGGCTCAATATGCTGCTCGAGCATCTGTTGCTCTAAATACGCACTTGTTCTTTAGAGAAAAAGTTCAGGATGAAGAAGGATATATACTTTTTGTACGAAAAAATGCGCTGCAAATATTGATTCCAAAATATGGTTTGGAGGGAACTTTGTACTTGAAAAATAAAGAATCGTCTGTTACGTGCATATATGATGTCGAAAATCATTCACAAACTTGTGGAAACGTCGTTTTTCGCACTTTCGATCCGGTCGTAGTGCAAATAAGTTTAGACAGAGTCAATGTGCAACATGAAAAATTGATATTTAAACTGGTTAAACCATTTATTTCAGGTTTGAGTGTAACTCCAGTAAGTGCAAAAACGTGTAACAATGTAGAAATGTTAGAAGAAAATACGAAAGAAGCGGTAAAACGAAAGATAGAAACAGAGAAAGTATCAGATGATAATACTAAAAGTAAAACACACAAAAAAAAGCAAAAAAAGAGGAAACAT
Protein Sequence
NPERKFYIFINEHHKDTYIERNPGESINDRNDRAIRVATKWYNTHLNMDGNKITTVLLTDDAQNRGLAEKDDIPTISMEDYILSLENSGFLADKLCKKSYGMVSDGPELFPCHLTPSEIHNGIKNGKLLQGTFTASRENFLEGFVNVDGVEKTIFIQGRSNLNRAVDGDVVALEVLPEDQWSSPSDIVLQDEEEIGVDDILETKTVLDKSVSSNKMERTSTGKVVGIIRRNWRQYCGILQPSNIEGNVRHLFIPAERKISKIRIETRQYAVLSKQRIIVAIDSWPRNSRYPLGHFVRALGEIGNKTTENEVILLEHDIPHSRFSNDVLSSLPKMPWRIPEAELAQREDLRYLDVCSVDPPGCTDIDDALHCRDLPNGNLEVGVHIADLSYFMKPGTALDKEAAVRTRTVYLVDTRIHMVPDLLSADLCSLREKQDRLTFSCIWEMDRDANIINVKYCKAVICSRAEMTYEEAQLRIDDAVQQDPLAKSLRTLNNLAKKLRKKRLENGALVLASPEIRFQIDHETCDPIEVEAKKMRETNSMVEEFMLLANISVAKKIVEDFPECAVLRRHPEPPLANFEPLIKAGKNQGFIINVNSGKELAESLDKCHKESNPYFNTMLRILATRCMMQAVYFVSGMHQPCDYYHYGLACPIYTHFTSPIRRYADVLVHRLLAVSIGSGTTYPELLDKKKLHALCNYMNHRNKMAQYAARASVALNTHLFFREKVQDEEGYILFVRKNALQILIPKYGLEGTLYLKNKESSVTCIYDVENHSQTCGNVVFRTFDPVVVQISLDRVNVQHEKLIFKLVKPFISGLSVTPVSAKTCNNVEMLEENTKEAVKRKIETEKVSDDNTKSKTHKKKQKKRKH

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

100% Identity
iTF_00216159;
90% Identity
iTF_00683940;
80% Identity
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