Basic Information

Gene Symbol
sba
Assembly
GCA_947086385.1
Location
CAMTYR010000034.1:8731689-8735506[+]

Transcription Factor Domain

TF Family
MBD
Domain
MBD domain
PFAM
PF01429
TF Group
Unclassified Structure
Description
The Methyl-CpG binding domain (MBD) binds to DNA that contains one or more symmetrically methylated CpGs [2]. DNA methylation in animals is associated with alterations in chromatin structure and silencing of gene expression. MBD has negligible non-specific affinity for DNA. In vitro foot-printing with MeCP2 showed the MBD can protect a 12 nucleotide region surrounding a methyl CpG pair [2]. MBDs are found in several Methyl-CpG binding proteins and also DNA demethylase [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 2.1e-08 5.3e-05 22.2 0.0 31 58 52 79 31 104 0.84
2 2 0.32 8e+02 -0.8 0.0 47 71 208 240 202 245 0.82

Sequence Information

Coding Sequence
ATGGCTGCAGCCAGTGCGGGTGTAAAGGGCCAAGGAGGGCCCCTGACCGGTAGTGGAGGCGCCCCCGGAAAGGGCCAAATGCTGCAACGCCAGATCCATTGTCATTCCCAGACCCAGGATCCCTCACCAACCTGGGTGCGTCTCATCACGAGCGGCGACATCATCTACGTGAGTCCCAGCGGAGAAGCGCTTAAATCCATTGAACAGGTGAAAGAATACCTCTTGCGGCCAGGCACGTGTAAATGTGGTCTGCCATGTCCTTTACGTCCTGACTTGTACTTCAACTTTGACCCCAAGTCGCAGTGTCATCTGGAGACGATGCCTCGGATTCCTGGCGCTTGTCTTCATCAGGCTCGTTTGCGACAGGAGGTGGATGTGAAGACACACTATCAGGGCGTGAGTGGATCTTTTCCCATGGACAACAAGTTGTCCAATTTGACACTGTCTAGAGCGCCTCCGTGGCGCAAATCAGCCCCGGTGAATCAGGAATTTGAGAGAGTTCCACCATTGCATCCGCAACAGAGAGATAATAATCAGCCGCCGTGGCAGGAGGAGAAGCGATTGCAGCGCACCAGGAATGTGGCGAATGCGTCTGCGGCGAAGAAGAGGCCCAACTTCAAGGACGATCCCACAGGATATCTCGATCATCAGACAGCAATTCTGCACAGTTCCATCTTGAATGTGCACAGTCCTGATTTGAGTCAGTTTGATGCGCAGCAAGAGGAGATTCCGGAGCCTCAGACGACGCTAAAGAGGCAAATTGTGAGGCAGCAAGTGCCACAGATGATCCAGATGGATGGTCAGATGATGATTCAGCAGTCTGGCCAGAAGATCGTGATAAATGATCAAATCCCAGGACAAACGGTGACGCATTTGCCCAATGGAATGGTGCAAATTCACCAGAATACTGCCGATGGGAGTCTCGGGAAGATGGTGAGGAAGGAGACACTGATCTGTGCTGCCAGTCAGGAGAGTCCAGTGTCATCGAGTACGGCATTTTATGGGAGTGAGAACACTGGAACATCACCGTCGGAACTAAGACAACCCGTCCAGGGTGGAATGATAACCACTAGCAATGATATGCCCAGTAGTTCTTCACCAGAATTGTATCCTCGTGCTGTTGCCTCGGGTCACACAGTGGCCAAGAACACGATAACGTCGGTGTTGGCGGGAAAAGCTGCCACGACGACGTGTACGAGTCAAGTGGGTCGTCTGGAGACAACGGCTCCGCAGTTTATCAGCACAGCACCTGGTCAAAGCTATGCTGGAGGGCAAATTCAGCAGAATCAGTTAATCATGACGTCTTCGGGGCAGTTTTTGGTGATGCCGACAAATCAGGGTGGGCAGCAGAGCGCCCCCAAAGTGGTGATAAACAATCCTCATGTGGTGAACACGGGACAGCAGATAGTCAATGGGAGTCTGCTGTCGGGGAATATTGAGATTGTCAATGGGCAGGAGCAGACGTCGACCAGGACGACGGGTAATGTGGTGATTCAGGGTGGACAGAATCTCATTCCAGCCGGACAGAATATCATCTCGAATGCTGGAAATTCGTTTATTGTGAATTCCGGCACGGCTGGCCAGGTGCAGTCGGTGATCTTGAACAATTCTAATATGATACCCGCGGGCGGGATGTCACCGGCCACGGGGAAGGTCATCCAGAATGGTGGAAGTGTGAATCAGCTGATAAACAATGGCACAATGGTGCTGAACACGCTGCCTAGTGGCTTTGTGGTGCAGCAGCCGGCACAGAACTTCGCCACGTCCACTGTGGCGCTGGATGGGGGCGTGGTGGATACGACTGGGGCCACGACGTATCTGCAGCAGCGGACGGTGCTGCTGTCGCCGTCAGAGGTGAAGCGGAAGGTGAAGAAGAGGAAGAGTATGAGTAGTCCACAGAATGTCTCACCGCAGATTTCGCCGCAGTTGCAGATGGTGGGGGCGCCACACTATACGGCCGCTCAGCAGCCGCCGTATCAGATTGGTGGTCAGCTATCGCAACTCACCATTGTGCCGGCTGGAAAGGGTGCCACGACAAGTGCCCCGGCGCCCCAGCAGCAGATCATTGTCCATCAGAATGGGCAGACAATTCTGCAACCGGTGAATCTCATTGGGCAGCAACTGCTCGTGCCGGCGGGTCTGGTGGTGACGCCGGCGCCCACAGAGACGCTCCTTCAGATCCAAAACATGCCGCAGAATCTCATCACGCCACCACAACAGATGGTCTTGCGGGCGCCAAGTCCGCAGGGTGGAAAGGCCTTCCTCAGTCCCAATTCTGCTGCACAGCAGTTTATAGTGTCTGGCAATGGGCAGGTGAGTCCTCTGGGACAGATTTACAGCACCCCAGCGGCTGGTACGATGGGGCTCATGGTGCCGCAAACGAGTCAGAATCAGACATTCGTGCAGCAGAATACAACGATTGTTCAGCAGCAGACGACACTGCTGGGCGCCAATGGGCAGAAGCAGTCCATGGATATGGAGGAGCAACACCAGGCGCTGCAGGGCACCTCCTCGCCTCCCGACACCACCACCTACAGCCCGCAGAGTCCCGATCGTCCGGCCAGCGAGCGCAGTGTGGAGAGTGACAGCAACATGGTGCAGTGCGTGTCGAGTTCAGAGCCAGACTCGATGATTTCGCCAATGGTGGATGGAATGGAGAGTCAgctgggccatcatcatcatcaacatcatcagcatcaGGAGTTCAGAAGTACTATTTTCAATGGTGGGCAGCAGAATTTCCAGCAGCACCAGCATGTCTTTAAGCCATCTGATGCGAAGGTGAGACGCCTCCAGAGTTCATCGATTGGCATCCCAGTTTATCGAAATCCATCCAAGATGAAGATGAGTGATTTAAGTGGTCATCCTCAGTGA
Protein Sequence
MAAASAGVKGQGGPLTGSGGAPGKGQMLQRQIHCHSQTQDPSPTWVRLITSGDIIYVSPSGEALKSIEQVKEYLLRPGTCKCGLPCPLRPDLYFNFDPKSQCHLETMPRIPGACLHQARLRQEVDVKTHYQGVSGSFPMDNKLSNLTLSRAPPWRKSAPVNQEFERVPPLHPQQRDNNQPPWQEEKRLQRTRNVANASAAKKRPNFKDDPTGYLDHQTAILHSSILNVHSPDLSQFDAQQEEIPEPQTTLKRQIVRQQVPQMIQMDGQMMIQQSGQKIVINDQIPGQTVTHLPNGMVQIHQNTADGSLGKMVRKETLICAASQESPVSSSTAFYGSENTGTSPSELRQPVQGGMITTSNDMPSSSSPELYPRAVASGHTVAKNTITSVLAGKAATTTCTSQVGRLETTAPQFISTAPGQSYAGGQIQQNQLIMTSSGQFLVMPTNQGGQQSAPKVVINNPHVVNTGQQIVNGSLLSGNIEIVNGQEQTSTRTTGNVVIQGGQNLIPAGQNIISNAGNSFIVNSGTAGQVQSVILNNSNMIPAGGMSPATGKVIQNGGSVNQLINNGTMVLNTLPSGFVVQQPAQNFATSTVALDGGVVDTTGATTYLQQRTVLLSPSEVKRKVKKRKSMSSPQNVSPQISPQLQMVGAPHYTAAQQPPYQIGGQLSQLTIVPAGKGATTSAPAPQQQIIVHQNGQTILQPVNLIGQQLLVPAGLVVTPAPTETLLQIQNMPQNLITPPQQMVLRAPSPQGGKAFLSPNSAAQQFIVSGNGQVSPLGQIYSTPAAGTMGLMVPQTSQNQTFVQQNTTIVQQQTTLLGANGQKQSMDMEEQHQALQGTSSPPDTTTYSPQSPDRPASERSVESDSNMVQCVSSSEPDSMISPMVDGMESQLGHHHHQHHQHQEFRSTIFNGGQQNFQQHQHVFKPSDAKVRRLQSSSIGIPVYRNPSKMKMSDLSGHPQ

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

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