Basic Information

Gene Symbol
Gcfc2
Assembly
GCA_963693475.1
Location
OY856339.1:5509847-5537019[-]

Transcription Factor Domain

TF Family
GCFC
Domain
GCFC domain
PFAM
PF07842
TF Group
Unclassified Structure
Description
This entry describes a domain found in a number of GC-rich sequence DNA-binding factor proteins and homologues [4, 5], as well as in a number of other proteins including Tuftelin-interacting protein 11 [1]. While the function of the domain is unknown, some of the proteins it is found in are reported to be involved in pre-mRNA splicing [1, 2]. This domain is also found in Sip1, a septin interacting protein [3].
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 1 3.6e-16 9.6e-12 46.6 0.0 4 190 1904 2066 1902 2076 0.73

Sequence Information

Coding Sequence
ATGTCTCTCTTTCGCAAACCTAAAAAGATACAGAGACGAATATTTTGTGCTGATGACGACGAGGAtggcgatccggagcccccgccACCACCGCTCATCACCCAAAAGCGGGATAAGAAAGAGAGCTCTGGTGTGAAGGCCCCTAAATTACTTAGCTTTGCCGACGAAGAGGAAGATTGCGAAGAATTTAAAGTGAAGAAATCATCTCAAAGCAAGAGATTGTCTAAAAAGAGGGATAAAGAAAAGAAGAAAGTCCCAGACAGTGACAATAATAAATTTGACAAAGATAATGATTTCCACGAGGATAACAACGACAACAACGGGAATCATCCGGCCGTACCGATCGAGCAACCGAAGCCGAAGAAGAAAATGACATTGGAGGGTTTGATACTGTCGGGACGCGAGGCGTTGGCGGCGGACGGCGCGGGGGACCTGTCCGACAGCGGGGgggaggaggaggaggaggaggacGAAGACAGCCGGGGCTTCCACCAGTACCGCGCCGAGTCCGTGCGCGCGGCCCTGGCCGTGGCCCCGGGGCACATACCCGACGCAGCGCTCATACACGCCGCGAGAAAGACTAGACAGCAGGCGCGCGAGCTGGGCGACTTCGTGCCGCTGCCGGCGGAGGCGCCGCCGGGCGCGCGGCTGGTCCGAGAGGGTGAGGCCGACGACTCGGCCGACGAGGACGAGGGCCGCATCATCGTGCGCGGGCTCGACCTGCCCAGCGACAAGCCCAAACGTGGCACTGCCGCGGTGCAGTCTGATGAAGAGATGAACAGCGAGGCCGAGGAGTGGGAGGAGCAGCAGATCAAGAAAGCAATGCCGGCCTTGCCTGACATGATCGGCGAGGGCGAGGTGAACCCGTTCAGcgtggcgccgccgccgccgcggctgGCGGACGCGCCGCCGCACCTGCGCCCGCTGGCCGCGTCCGCGCACGCGCCGCTCGCCGCGCCCGACCTCGTCGACGCGCTCAAACACAGGTTGGAGGAGCTGTGCATCGCGCGCGCTCAGACGGCGCAGCGAGgctcggcggcgcgcgcgcggctgggcgcggcggcgcgcgcgcgggcgggctgtgcggcgcgcgcgccggcgctCGACGCCGCCTACCGCCGCGCGCAGGCCGCGCGCGGGTACCTCACCGACCTCGTCGAGTGCCTCGATGAGAAGATGCCGCTCCTGGAGGCGCTGGAGGCGCGCGCGCTGGCGCTGCACCGGCGGCGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGGTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGGTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGGTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGGTACGTACCGACATACACTACACTCACATCATGTTACGTGCCGACATACACTACACTCACATCATGTTACGTGCCGACATACACTACACTCACATCATGTTACGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGGTACGTACCGACATACACTACACTCACATCATGTTACGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGGTACGTGCCGACATACACTACACTCACATCATGTTACGTGCCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGGTACGTACCGACATACACTACACTCACATCATGTTACGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGGTACGTGCCGACATACACTACACTCACATCATGTTACGTGCCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGGTACGTACCGACATACACTACACTCACATCATGTTACGTGCCGACATACACTACACTCACATCATGTTACGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGGTACGTACCGACATACACTACACTCACATCATGTTACGTGCCGACATACACTACACTCACATCATGTTACGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGGTACGTACCGACATACACTACACTCACATCATGTTACGTGCCGACATACACTACACTCACATCATGTTACGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGGTACGTACCGACATACACTACACTCACATCATGTTACGTGCCGACATACACTACACTCACATCATGTTACGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGGTACGTACCGACATACACTACACTCACATCATGTTACGTGCCGACATACACTACACTCACATCATGTTACGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGGTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGGTACGTACCGACATAAACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGGTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGGTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTGCCGACATACACTACACTCACATCATGTTACGTGCCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTGCCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGGTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTGCCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGGTACGTACCGACATACACCACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGGTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTGCCGACATACACTACACTCACATCATGTTACGTGCCGACATACACTACACTCACATCATGTTACGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGGTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTACCGACATACACTACACTCACATCATGTTACGTGCCGACATACACTACACTCACATCATGTTACGTGCCGACATACACTACACTCACATCATGTTACGCTGCGAGTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACTTCCTGGTGGAGCGGCGCCGCGCCGACCTGCGCGACCAGGCGCAGGACGTGCTCGCGCTCGCGGCTCGTCCGGGCGTGGTCCGGCCGCCCGACTCCGAGGAGAAGGTGCGCCGCACGGCGGAGCGCGAGGGGAggaggcgcgcgcggcggctgAAGAGGGAGGCGGGGGGGACGCGGCACCACCGCGACGGGGACTCCAGCGACGACGAGCTGCCGCCCGACGAGAGCCAGCACGAGCGAGACGAGAGAGCGACGACGAGCTGCCGCCCGACGAGAGCCAGCACGAGCGAGACGAGAGAGGTAACGCGACCGTGGCGCCCCCGGCGTGAGGCGGGGGGGACGCGACACCACCGCGACGGGGACTCCAGCGACGACGAGCTGCCGCCCGACGAGAGCCAGCACGAGCGAGACGAGAGAGAGTCGATCGTAGCCGGGTCGGCGGCGGTGTGGGCGGACGCGCTGCCGGCGTGGCGCAGCGCGCGCGGCGTGTGCGCGCGGCTGGCGCGctggcgggcgcgcgcgccggcgcagTACGCGgacgcgcgcgcgcccgcctgCCTGCCCGCGCTGCTGGCGCCCTACGTGCGACACCAGCTCATACTGTGGAACCCGCTCGCTGATAACGACAACGAGGATATCGAGAAGATGGACTGGTACAAATGCCTGATGATGTACGGCGTGAGCTCCGAGCGCTCGTCGGACGACTCGTCGGGCTCCGAGGTGGAGGCCGAGCCGGTGTCGGAGGAGGCGGTGCGCGCCGACCCCGACCTCATGCTGCTGCCCACCATCCTGAACAAGGTAGTGCTGCCTAAGATTACAGAGCTGGTGGAGGCGGCCTGGGACCCGATGAGCGTGCGCGCGTGCGTGCGGCTGCGGCACGCGCTCGTGCGGCTGGCGGgcacgccgcgcgccgccgccgcgctgcgCCGCCTGGccgccgcggcgcgcgcgcgcctgCGCCTCGCGCTGCAAGGGGACGTGTTCCTGCCGGCGCTGCCGCCGCAGTCAGTATCCCACACACAGCACACACACCGCTCGTGCGGCTGGCGGgcacgccgcgcgccgccgccgcgctgcgCCGCCTGGccgccgcggcgcgcgcgcctgcGCCTCGCGCTGCAAGGGGACGTGTTCCTGCCGGCGCTGCCGCCGCAGTCAGTATCCCACACACAGCACACACACCGCTCGTGCGGCTGGCGGgcacgccgcgcgccgccgccgcgctgcgCCGCCTGGccgccgcggcgcgcgcgcgcctgCGCCTCGCGCTGCAAGGGGACGTGTTCCTGCCGGCGCTGCCGCCGCAGTCAGGTGATGGAGGGCCCGGGCGGGCTGTTCTGGCGGCGCTGCGCGGGCGCCGGCGTGCGGCTGCTGCGCGGCGCGCTGGCGCTCACGGCGCCGCCCGCGCTGCTCGCCGCCGACCCCGTCGTGCGCCAGCTCATCGAGACGCTGAGctgcgcggcgggcgcggcgccgggcccgttcgcggcggcggcggcggcggcgctggCCGAGACGCTGCCGCGCGCCGGCCCGCTGCGCGCCGCCGCGCTGCGCCGCCTGGCCGCGCTGGCCGCGCTCGCTCTCTCCCGCCTCGACGCCGGGAACCCGCTGCACCTGTGA
Protein Sequence
MSLFRKPKKIQRRIFCADDDEDGDPEPPPPPLITQKRDKKESSGVKAPKLLSFADEEEDCEEFKVKKSSQSKRLSKKRDKEKKKVPDSDNNKFDKDNDFHEDNNDNNGNHPAVPIEQPKPKKKMTLEGLILSGREALAADGAGDLSDSGGEEEEEEDEDSRGFHQYRAESVRAALAVAPGHIPDAALIHAARKTRQQARELGDFVPLPAEAPPGARLVREGEADDSADEDEGRIIVRGLDLPSDKPKRGTAAVQSDEEMNSEAEEWEEQQIKKAMPALPDMIGEGEVNPFSVAPPPPRLADAPPHLRPLAASAHAPLAAPDLVDALKHRLEELCIARAQTAQRGSAARARLGAAARARAGCAARAPALDAAYRRAQAARGYLTDLVECLDEKMPLLEALEARALALHRRRCEFLVERRRADLRDQAQDVLALAGTYRHTLHSHHVTYRHTLHSHHVTLRVPGGAAPRRPARPGAGRARARGYVPTYTTLTSCYVPTYTTLTSCYAASSWWSGAAPTCATRRRTCSRSRVRTDIHYTHIMLRTDIHYTHIMLRCEFLVERRRADLRDQAQDVLALAGTYRHTLHSHHVTCRHTLHSHHVTCRHTLHSHHVTLRVPGGAAPRRPARPGAGRARARGYVPTYTTLTSCYAASSWWSGAAPTCATRRRTCSRSRVRADIHYTHIMLRADIHYTHIMLRTDIHYTHIMLRTDIHYTHIMLRCEFLVERRRADLRDQAQDVLALAGTYRHTLHSHHVTLRVPGGAAPRRPARPGAGRARARGYVPTYTTLTSCYVPTYTTLTSCYVPTYTTLTSCYVPTYTTLTSCYAASSWWSGAAPTCATRRRTCSRSRVRTDIHYTHIMLRADIHYTHIMLRCEFLVERRRADLRDQAQDVLALAGTYRHTLHSHHVTCRHTLHSHHVTLRVPGGAAPRRPARPGAGRARARGYVPTYTTLTSCYVPTYTTLTSCYAASSWWSGAAPTCATRRRTCSRSRVRTDIHYTHIMLRADIHYTHIMLRCEFLVERRRADLRDQAQDVLALAGTYRHTLHSHHVTCRHTLHSHHVTLRVPGGAAPRRPARPGAGRARARGYVPTYTTLTSCYVPTYTTLTSCYVPTYTTLTSCYAASSWWSGAAPTCATRRRTCSRSRVRTDINYTHIMLRTDIHYTHIMLRTDIHYTHIMLRCEFLVERRRADLRDQAQDVLALAGTYRHTLHSHHVTYRHTLHSHHVTYRHTLHSHHVTLRVPGGAAPRRPARPGAGRARARGYVPTYTTLTSCYVPTYTTLTSCYVPTYTTLTSCYVPTYTTLTSCYVPTYTTLTSCYVPTYTTLTSCYVPTYTTLTSCYVPTYTTLTSCYVPTYTTLTSCYVPTYTTLTSCYVPTYTTLTSCYAASSWWSGAAPTCATRRRTCSRSRVRTDIHYTHIMLRTDIHYTHIMLRTDIHYTHIMLRTDIHYTHIMLRADIHYTHIMLRTDIHYTHIMLRCEFLVERRRADLRDQAQDVLALAGTYRHTPHSHHVTYRHTLHSHHVTYRHTLHSHHVTYRHTLHSHHVTLRVPGGAAPRRPARPGAGRARARGYVPTYTTLTSCYVPTYTTLTSCYVPTYTTLTSCYVPTYTTLTSCYVPTYTTLTSCYVPTYTTLTSCYAASSWWSGAAPTCATRRRTCSRSRVRTDIHYTHIMLRTDIHYTHIMLRTDIHYTHIMLRTDIHYTHIMLRADIHYTHIMLRADIHYTHIMLRCEFLVERRRADLRDQAQDFLVERRRADLRDQAQDVLALAARPGVVRPPDSEEKVRRTAEREGRRRARRLKREAGGTRHHRDGDSSDDELPPDESQHERDERATTSCRPTRASTSETREVTRPWRPRREAGGTRHHRDGDSSDDELPPDESQHERDERESIVAGSAAVWADALPAWRSARGVCARLARWRARAPAQYADARAPACLPALLAPYVRHQLILWNPLADNDNEDIEKMDWYKCLMMYGVSSERSSDDSSGSEVEAEPVSEEAVRADPDLMLLPTILNKVVLPKITELVEAAWDPMSVRACVRLRHALVRLAGTPRAAAALRRLAAAARARLRLALQGDVFLPALPPQSVSHTQHTHRSCGWRARRAPPPRCAAWPPRRARLRLALQGDVFLPALPPQSVSHTQHTHRSCGWRARRAPPPRCAAWPPRRARACASRCKGTCSCRRCRRSQVMEGPGGLFWRRCAGAGVRLLRGALALTAPPALLAADPVVRQLIETLSCAAGAAPGPFAAAAAAALAETLPRAGPLRAAALRRLAALAALALSRLDAGNPLHL

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

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