Basic Information

Gene Symbol
-
Assembly
GCA_949748255.1
Location
OX456525.1:50374387-50381676[+]

Transcription Factor Domain

TF Family
HSF
Domain
HSF_DNA-bind domain
PFAM
PF00447
TF Group
Helix-turn-helix
Description
Heat shock factor (HSF) is a transcriptional activator of heat shock genes [1, 4]: it binds specifically to heat shock promoter elements, which are palindromic sequences rich with repetitive purine and pyrimidine motifs [1]. Under normal conditions, HSF is a homo-trimeric cytoplasmic protein, but heat shock activation results in relocalisation to the nucleus [2]. Each HSF monomer contains one C-terminal and three N-terminal leucine zipper repeats [3]. Point mutations in these regions result in disruption of cellular localisation, rendering the protein constitutively nuclear [2]. Two sequences flanking the N-terminal zippers fit the consensus of a bi- partite nuclear localisation signal (NLS). Interaction between the N- and C-terminal zippers may result in a structure that masks the NLS sequences: following activation of HSF, these may then be unmasked, resulting in relocalisation of the protein to the nucleus [3]. The DNA-binding component of HSF lies to the N terminus of the first NLS region, and is referred to as the HSF domain.
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 4 9.5e-14 1.6e-09 39.6 0.2 1 99 17 112 17 113 0.87
2 4 0.57 9.7e+03 -1.4 0.0 25 53 283 311 277 316 0.84
3 4 0.61 1e+04 -1.5 0.1 55 81 363 402 361 422 0.47
4 4 1.3 2.2e+04 -2.5 0.2 47 62 458 478 450 478 0.68

Sequence Information

Coding Sequence
ATGGATGCAGCAGCCCACGTAACACGTCAAGATATTGTGAATTTTCCATTTCCTTATAAATTGTGGATAGTcgtaaatttagaattttgtgattttttacgTTGGAATCGTGATGGTACTGCGATACTTGTAGATATAGTTTCTTTGGAAGATTATCTTAACTCTAATCGttccattttcaaaattaaaaatggttcAGTGTTCATAGAACATTTGGATAAGTTTAAGTTTGAACGTTTAAATGCTATGCCAGAAGCTGGAGAAGATCTTTTGTTGCAATATAAAAACGATAATTTTCAACGTCATCGCTTGAATTTAGTGGCCAGAATACGGCGGTACACGTATCAGTTGATAGGCGAAATATCCATCAATAAAGGTGAAAACTTACTTGATGGAAGAGGGACAAATGACAACCGTCTTATAAAGTCTAATAGTGAACAAACTTTGGAAGCTAACAATCGTGTAGCCGAAAGAATGATGGGTGACTTATGTTTTATGTTTCATGGTGGTCTTTCCAATATAAATACCAGTCGTTTACGTTTTCAAACCATTTTGAATTTCCAAAATGAAACGCGTTTAATAGAACAAAAGCTAAAAGCTGCTGATGAATATAATGCTATTCAACGTCTTCGAAAATCTGACCCTTCCGCACGTTCAGCAGCCAGTGGTTCTGTGGCTACTGACAAGGAACACGTTATTGAAGTACCAGTTGATCTTTTTGAAAATCCTCACGACTCTGTCCTACATTTAGATGAAGATTTTCCTCCTGAATATGCTGGTTATTATGGTAATTGTAGTAAGGAACAAGTTAAACATTTCTTTGGTGATTATTTGCCCATGTATGAAGATGCAATAATTATTGCAGAAAATAGcaatacaaataaaaatgatttaaattcacAAGCTGAGGCACAAAATAAACAATCTTTTTAtccaaatcaaaataatattggtgATATATTAACTTCAAACCCTGTGGCACAATGTCCGAtaataaatctaaatttatcATCTGGCCTAgaaccaatttttaaaactgaacaAGAAGAACAGGAGTATGTTGATCTCGATCCCGTAAATGTACCCCAATTAAATACCTATAATATGGATAATGATATTGAAATATCAATGGAtgaatttataacatttaaaggcTCTTCTAATGAATCTAATGCAAAtaccaaagaaattaaaaataaagaatactaTGATATGCATCAAACAGCCAATGAATCTTTAAGAACTACCACAGCAATGAAAAGTAAGGAACATCAATGTAGTGATTTACAGCAACAAGCTGTTGCAAAGCAATTTCCCCTAATGCCAGCTGCAGTTAAAATGGAAATTGAAGAAAATGCTGCAAAAAATGAGGCAAACTTTCGTAGTTTCTTTAGTCAATACAGAGATtcgttaaatttattatatgattttcattaa
Protein Sequence
MDAAAHVTRQDIVNFPFPYKLWIVVNLEFCDFLRWNRDGTAILVDIVSLEDYLNSNRSIFKIKNGSVFIEHLDKFKFERLNAMPEAGEDLLLQYKNDNFQRHRLNLVARIRRYTYQLIGEISINKGENLLDGRGTNDNRLIKSNSEQTLEANNRVAERMMGDLCFMFHGGLSNINTSRLRFQTILNFQNETRLIEQKLKAADEYNAIQRLRKSDPSARSAASGSVATDKEHVIEVPVDLFENPHDSVLHLDEDFPPEYAGYYGNCSKEQVKHFFGDYLPMYEDAIIIAENSNTNKNDLNSQAEAQNKQSFYPNQNNIGDILTSNPVAQCPIINLNLSSGLEPIFKTEQEEQEYVDLDPVNVPQLNTYNMDNDIEISMDEFITFKGSSNESNANTKEIKNKEYYDMHQTANESLRTTTAMKSKEHQCSDLQQQAVAKQFPLMPAAVKMEIEENAAKNEANFRSFFSQYRDSLNLLYDFH

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

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