Basic Information

Gene Symbol
ZNF438
Assembly
GCA_027564375.1
Location
JAOPUG010000004.1:22859928-22871364[-]

Transcription Factor Domain

TF Family
zf-C2H2
Domain
zf-C2H2 domain
PFAM
PF00096
TF Group
Zinc-Coordinating Group
Description
The C2H2 zinc finger is the classical zinc finger domain. The two conserved cysteines and histidines co-ordinate a zinc ion. The following pattern describes the zinc finger. #-X-C-X(1-5)-C-X3-#-X5-#-X2-H-X(3-6)-[H/C] Where X can be any amino acid, and numbers in brackets indicate the number of residues. The positions marked # are those that are important for the stable fold of the zinc finger. The final position can be either his or cys. The C2H2 zinc finger is composed of two short beta strands followed by an alpha helix. The amino terminal part of the helix binds the major groove in DNA binding zinc fingers. The accepted consensus binding sequence for Sp1 is usually defined by the asymmetric hexanucleotide core GGGCGG but this sequence does not include, among others, the GAG (=CTC) repeat that constitutes a high-affinity site for Sp1 binding to the wt1 promoter [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 13 2.2 1.4e+02 4.2 1.3 1 23 728 751 728 751 0.90
2 13 0.0095 0.61 11.7 1.1 1 23 861 883 861 883 0.98
3 13 4.9e-05 0.0031 18.9 1.4 2 23 886 907 885 907 0.96
4 13 0.0023 0.15 13.6 2.8 1 23 913 935 913 935 0.98
5 13 0.0019 0.12 13.8 5.3 2 23 942 963 941 964 0.95
6 13 0.42 27 6.5 1.4 5 23 977 995 976 995 0.95
7 13 4.1e-05 0.0026 19.1 1.8 2 23 1001 1023 1000 1023 0.97
8 13 1.1 68 5.2 0.3 2 23 1039 1059 1038 1059 0.96
9 13 0.0006 0.039 15.4 0.7 1 20 1065 1084 1065 1087 0.92
10 13 0.37 24 6.6 1.0 1 23 1095 1117 1095 1117 0.97
11 13 0.012 0.76 11.4 7.4 1 23 1123 1145 1123 1145 0.97
12 13 7.7e-06 0.00049 21.4 0.6 1 23 1151 1175 1151 1175 0.97
13 13 0.0015 0.098 14.2 4.3 1 23 1181 1203 1181 1204 0.95

Sequence Information

Coding Sequence
ATGGATCAGCTTACGATGTGCCCGGTGTGTACGCTGTACCTTCACAGCGGCATGTCGCTAGAGGAGCATTTAGACACACATCCCAAAGATCAAGTAATTCGTGCATTATGCAGCTTGCAAACGGACACAAAGCAGTGCACGCAGTACGGCTGCCGCTCTTTCTCCGTATGTGACTGCAAATCGGAGCGGTCATTCCGTTCTGGATCGCGAACTCCGGTGATCGATGTTCACCGCAGCAAAATGAATACGCCGTCTGGCGTTTCGCAGACTAAGGAACGACCTCCCCGTACGGCCTCCATCATAAGTCGGGCTCCAACCCCCGCGGAACTATTCCGGCCAAATGAAACCGTTGCTTCCGGTTCAAATTTCTTCGGAATCCATGCGGAACGCATTGTGACAACGCCGTTATATCCAGTAAACGATACCCAGATCTATGCTCCCCAAGAGTCACCGACGCAGGCCCCGATCGAAATATCGCCAGCATTTATGTATTCGCAGCATAATTTTCATACGTTTGGCACGAACGGCAACGATATCTTCATACAAGAATACACAGCGACACCGAAGCCACCGTCGACATCGCAAAGTCCGTGCATCGAACGCCCGTATATCCTCGAGCTGCTTCCGATGACGCGTCCTGGTGACAGCGTCAGTGGCACGTCAACATCCATCAGCAATGACCAATTTACCATCGGCGATACAAATATCAAGAAAAAAGGATTGAAGATCATCAGTAACATAAAAGTGGAGGTGCCGATTTCGAGTCATAATTCGCAGTCAGAAGTGGTGGATTTGACATCATTGACAGACTTTGAACTGAATCGAATCAACTGCTCCAACTCCGCCTCACCGTTTTTAGGAAAAGAAGAGAGCGATAAGGACAGCATTCGCACTGAACTCTGCCCTACACCGAATAGTCTCGAAACTTCCAAAGATTCGTTTAAAGTTTTAAAAGTGTACGGGCAACATCCTGTAACAAATACATTCTCCGTAATTAAAAATATCGGGAATCCAAGTACGATACCGAAAAGTTATGCTGTTCCCGAACTGGAGCCGGAAAGTATTCTACCGGATTTAACATGTAACGAAAAGACGATATCTCCATGCAGCGATTTAACAAACGATTCGAACTGTGATTACGATCCGCCGTGCCTCGATGTCGCGTCTGATGTCCATCACAATATCAATCCGCTCACTCTCGCTGTGGAACAAGAATCTAGTCCGATTGAATGCCGATCGTTTGCTGATATCAGTAAGCAGAGCTGCGAAACGGCAATTGACGAAACGATGGCGGTCGATCCGTATGACGATTCGATGAATGTATTTAACCGTCATACGGATGCCGTTCGGCTCGTGAATGTAATTGCATTTGGGAATCCGGTCACGTCGACTCCGTCGATTGGAGATATTTATCGAGAAACTCCATATAAAGATTTCTACAGTAGCGAAACCACCCCATCATTCTTTGAAGTGGCAAAAAAGATGAATGAAGGCCCTATAATTGAAGATAAATGCCAATACAAATCCGAGTACGTAGGAATTGATCTGTCAAATCGTATGTCGACTGAAAAGGATGAAAATTTTGATAAAATTGAATGTTTTGACAAAGAAGAAAGTATCGAAAAAGAGGAAGCTTTCGAGAAGGAGGAAAGCTTCGAAAAGGAAGAAACCTTCGAGAAGGAGGAAAGCTACGACAAGGTGGAAAGCTTTGACAAGCTGGAAAGTCTCGATAAGGAGGAATGTTTCGAAAAGGAGGAGAGTTTAGAAAAAGACGACCATAAGAAAGAACTTTTGACGGATGATAAGAGCACCGATGATCATGAAGTCGCTTTGAATATTCGTACGGACGAACGAATGCCACCGCGAGGGGAATTGTCCGGACAGGAGAGCAATGGCGATATGGATACACCTTGGGAAGGGATATACCATGGCGTAACTGGTTCAACAACGGCTTATGATCTGATTGCAAGAGAAACATGGACCTCGGATGCCTCTGATAACGAAATGCCCATCATCCATTGCATCGAACAAGAAAGAGTAAAGATAAAAATAGCAGAAAACCTATCAAACCTCAGAAAACTTCCCCTTCAAAAGCATCATTCGAAATTTAAAAATTGTGTTTCTAGCAATGATTCTGAAGAAATGCCTATCGTCGTATCAGTCAAGCCACCGGAGAAGAACTACAAATGCGCAGCTTGCGGCCAGTCGTTCAACTGCCCCAAAGAGCGAAGAGTACACCGAGCAAAAGAGCACCCGGTGCCTTCCACGGCCAACTCTTCGAAGCTGCCACACACGCTGAAGCTGCGCACTCCCAAGCAACTCGCTTGCAAAATCACACCCCTCAAACCGGTGAAGATGATCAAGAACGAGAAACCGACGGAGGGTGATAATTTGATGACGCTCACACACTCCGAGTTGAATATTCTGGCGACGGACAATGCGCACTTAGGGGATTCTAGTCTGTTGAATATAAAAATATCGCCAGAGCTGCCGGACACGGCGTGCTTAGAGCCACTGGATCGGAAGCCGAAACTGGAGACAATGCTGAACATCAAAGAGGAAACGAAAAAGAAACGAGATTATCACTGCCCAATGTGCAAGGAATATTTCCCGACGGAGCCTCTTTTTAGCCAACACCTGAAGATACACCCTCTCGAGTGCTTGACCTGCGGTAAATATTTCTATAAAAGATCAAATCTGCAACTCCATATAAAGCGGCATCTAGGAATTAGACATTATAGATGTAACATATGCGAGAAACAATTTCACACGCGGCAGAAGATGATGGAGCACATCAATATCCACACGGGAGAGAATCCGGTGAAATGCAACCTCTGCGAGGAGACCTTCAGAAGACATTCTAATATGGTGCAGCACAGGAACCGGCATCATCTGCACATCCCCAAAAAGATAAAGGACTTCGTTTGCCAGTGCGGCGAGGTGTTCCACTCGAAGAAGAAACTTTTATGGCACAAGGAAATCCACGATGATCGCCCCAAGACCTGCCAGTATTGTCCGGAAAAATTTGTACACATCTCGTCATTAACCCGCCACATCCGAAAAGCACACAACAACTACTTTGTCCCGGACGAGAAGCGGAAAAAAGACAATGTcgagtgtgcaatctgcaagcaagtctactttaagaataccatagaaatgcatttaaggacacactcggacaagaagccgtactcgtgcgttatttgtaaccgctcgttcaaggtaaagtggaacctgcagctgcacaggtggacgcacgcGAACCGCTCCAGCAAACCATTCAAATGTAGCCTATGCAAGGGTGCGTTCCTGCGGCACGCCGATTACATCTcccacatgaacgcccacaagtcggtcaaaccgtacacgtgtaactactgcggctgtcgcttcattcgaaagtacaactgtcggcgtcacgttcaggagcacgagaacgagaagaaatttgtttgcgacgtccccgattgcggtaaaacgttccaccggagttattacttggccgatcacatgaaagtgcactcgggtgcgaggccttttgcctgcaacatctgcggaaagacttcCAGTACTAAATCTAATCATAATAAACATGTTAAAATTCACCATGCGAGGGAACCGGTTGCCACGGAATCTTAA
Protein Sequence
MDQLTMCPVCTLYLHSGMSLEEHLDTHPKDQVIRALCSLQTDTKQCTQYGCRSFSVCDCKSERSFRSGSRTPVIDVHRSKMNTPSGVSQTKERPPRTASIISRAPTPAELFRPNETVASGSNFFGIHAERIVTTPLYPVNDTQIYAPQESPTQAPIEISPAFMYSQHNFHTFGTNGNDIFIQEYTATPKPPSTSQSPCIERPYILELLPMTRPGDSVSGTSTSISNDQFTIGDTNIKKKGLKIISNIKVEVPISSHNSQSEVVDLTSLTDFELNRINCSNSASPFLGKEESDKDSIRTELCPTPNSLETSKDSFKVLKVYGQHPVTNTFSVIKNIGNPSTIPKSYAVPELEPESILPDLTCNEKTISPCSDLTNDSNCDYDPPCLDVASDVHHNINPLTLAVEQESSPIECRSFADISKQSCETAIDETMAVDPYDDSMNVFNRHTDAVRLVNVIAFGNPVTSTPSIGDIYRETPYKDFYSSETTPSFFEVAKKMNEGPIIEDKCQYKSEYVGIDLSNRMSTEKDENFDKIECFDKEESIEKEEAFEKEESFEKEETFEKEESYDKVESFDKLESLDKEECFEKEESLEKDDHKKELLTDDKSTDDHEVALNIRTDERMPPRGELSGQESNGDMDTPWEGIYHGVTGSTTAYDLIARETWTSDASDNEMPIIHCIEQERVKIKIAENLSNLRKLPLQKHHSKFKNCVSSNDSEEMPIVVSVKPPEKNYKCAACGQSFNCPKERRVHRAKEHPVPSTANSSKLPHTLKLRTPKQLACKITPLKPVKMIKNEKPTEGDNLMTLTHSELNILATDNAHLGDSSLLNIKISPELPDTACLEPLDRKPKLETMLNIKEETKKKRDYHCPMCKEYFPTEPLFSQHLKIHPLECLTCGKYFYKRSNLQLHIKRHLGIRHYRCNICEKQFHTRQKMMEHINIHTGENPVKCNLCEETFRRHSNMVQHRNRHHLHIPKKIKDFVCQCGEVFHSKKKLLWHKEIHDDRPKTCQYCPEKFVHISSLTRHIRKAHNNYFVPDEKRKKDNVECAICKQVYFKNTIEMHLRTHSDKKPYSCVICNRSFKVKWNLQLHRWTHANRSSKPFKCSLCKGAFLRHADYISHMNAHKSVKPYTCNYCGCRFIRKYNCRRHVQEHENEKKFVCDVPDCGKTFHRSYYLADHMKVHSGARPFACNICGKTSSTKSNHNKHVKIHHAREPVATES

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

100% Identity
-
90% Identity
-
80% Identity
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