Basic Information

Gene Symbol
CAMTA1
Assembly
GCA_000349145.1
Location
KB672490.1:17713688-17902275[-]

Transcription Factor Domain

TF Family
CG-1
Domain
CG-1 domain
PFAM
PF03859
TF Group
Unclassified Structure
Description
CG-1 domains are highly conserved domains of about 130 amino-acid residues containing a predicted bipartite NLS and named after a partial cDNA clone isolated from parsley encoding a sequence-specific DNA-binding protein [2]. CG-1 domains are associated with CAMTA proteins (for CAlModulin -binding Transcription Activator) that are transcription factors containing a calmodulin -binding domain and ankyrins (ANK) motifs [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 1 9.2e-49 1.1e-44 150.3 2.4 2 116 400 512 399 512 0.98

Sequence Information

Coding Sequence
ATGACGTCACAAGCTGTCTACTGTTTAAGTCTTCAGATACGTCCATCGGCCGAGGAGGGCAatgcaacggcaacggcagcgaACGGTGGCAATGACCAGCAGCAACTCGGCGGGAAACCGGTGGCAACGACCGCCGGGACGGCTACGGTGGTCTCGAACGCTTCGACGATGGTGAGCACCACCGGGGCAACGTTGCTGAGCGGGCTGGAGAAGTCCGGCGTCACCATCTCGGCCGAAGCGTCCCGAGCGCTCCAGACGCACGCGCTGCAAATCGCCCAGTCGCAGATCGTAACGACCTGCCAGAGTCCAGCAACGGTCACGGTGGCTGCCtctcagcaccagcagcagcagcagcagcagcagcacagcaacaTCATCCTGGTGCGTGGTTCCCGCTCCGAGAACGGTCAAATCATCCTGCAGAACACACACGAGCTGCTGAGTCTGCTCAGTGACGAGGACAAGCCGATCTTCCTACAGCACCAGCGCCTAACGACAAGTGCCGGCACGACCATCGCGAAGGCCCATGCCACGAAGACGCTTACGGAGGCAgccggtagtggtggtggggCGAGTACGATCCTGTTCCAGCCGGCCATCAAGAGCGGAACGCTCGAAAGTATCAGCGGTGTCGGCGGGACCGGTGGAACCATCCTGCTCCAGTCGGACGCCCTTAAGAAGGGCACCACGCTGGAAGTTGGCTCCACGTCCACGGCCGGCACGACCGGTGGACCGATTTTCCTCCAGCAGCGGCTGAGCAAGAACGGAACCGAGGGCCCGATCCTGTTGCGCACGCTCAAGCGGCTCGACAAGTCGCAGTCGATACTGGTGATCCGCAATGCCACGACGGCGGGGACGGTTACGACGGCCGGCAgtacggtggtggcggcctccgccgctgctgctcccggtGGCATCTCGGTCTCGACGGCGGGCGGTGCCACGCTGGCCAAGGTGAAACCCGTGTCGACACCCACCACGACGGTGGTTACCGTGACGGCTGCCCCGGTTGGTGCTGGCAGTGTGGGCGGTGCCATTGCACGGCGCGTCCAGGAAGAGACGGAGGAGAAAAAGGAACCAGTCGCGGTGGCGAAGGTCGTCCACAAGTCGAACAACATGCCGCTGGGTACAGATGGTGAGCCGATCAAACTTCCGGATAATTTGGAGAGTTTACCCCGGGCGGACCATTTCCCAACCCAACGACACCGGTGGAATACCAATGAGGAAATTGCCGCCATCCTAATCAGCTTCGATAAACATTCCGAATGGCAGTCGAAGGAGGTGAAAACGAGACCCAAAAGCGGTTCGATGCTGCTGTACTCACGCAAAAAGGTACGATACCGCCGTGACGGCTACTGCTGGAAGAAGCGCAAGGATGGCAAAACGACTCGTGAGGACCACATGAAGCTGAAGGTGCAGGGCACCGAATGCATCTACGGTTGCTACGTACACTCCGCCATCCTGCCGACGTTCCATCGGCGCTGCTACTGGCTCCTGCAGAATCCGGATATCGTGCTCGTGCACTACCTGAACGTCCCGTACCCGGACGACAACAAGATGGCCGTCATCACGCCGAACCTGGCACTCTGGGGCGACAAGAAGGAGTGGACGAAGGAGGAGCTGGTCAGCCAGCTGAAGCCGATGTTTTTTCCCACAGTTTTCAGCGAGGACGAACCGGACACGGCGAACGAGATCGAAATCTCGACGGCCGAAACGGTGGAAGCGATCGTGAGCCAGCTGATGGAGAAGCAGAGGATGGCCCGGCAGACGGCGCTCGTGAAGCAGCTCGAGTGCGGCTGCCCGGATGCGAACTGTGCCGACGGGAAGTCGTGCTCGCACCCGATGCGACGCATCAGCGCGGCGAAGAGCGTGCAGGAGCTGGGCAAGCGGACGGACGGGCACGGCGGTGGCACGGCTCCGAACGTGCTGATCGGTTCGAGGATGTATCCACGGTGGTTGGATAACCGAAGAATGGCGACTGGGCGggtggaacagcagcagcaacagcagcaacagcaacactcACAGCACACCATTCTCGATCCGAATGGTGCGCGCGCCATCACGCCCAAGACGCTCGACTCCTCGATACACTTCCAAGTCATTCCTACCTCGGCACAGAGCCTAACCGCTCAGAATTCAATTAGAGCCGGCAATCAGAACGCTTCCGCCCTGGTCTCCTTGAGCAGCAGTAACAGTAGCTCACAATTAACAAGTGTCAGCAGTCACCTTACAAACGGCATCGGCGGTGGCACGCAAGGCAATCATCTCGCTGGACATCGTTCGGCCATGATTATCACAAGCaatcagcatcaacagcagcagcagcaacagcaacagcaacaacatcagcttcaccagcagcaacagcagcagcagcagcagcagcagcagcaacagcaacaacaccaacatcaccaacatcctcaacagcaacagcacgcTAACGTTCATTCTCATCCCCACCATGGACTTCCTCATCCTCAGCAACAACACCCGCAGAGCCAGCAGCATACGCTTACGATGAACGGTAACAGTAATACGTCCagtaccagcaccagcagcaatagcaacagcagcaacagcagcagcaataataGTGTCGGAAGCAATCAATTAACCGCCATCGGACACTCCAATCAAGTGGCACCATCAAACAACGCCGGAAGTGGTACCGGGGCTGACCGATCGGGCGTTCCAAACGTATCATCGGGTGGAACTCGCGAGGCGAACATTCATCTCAACGGCAGCAATGAGAATCATATATCAATGATTGGCTCCGGTCAGGGAAACCGTCCGGCGGCGGCACTCGGTATGAACCAACGGACCGGTGGCGATGGAAGCTGTGGAGATGCGAGCGGGACCGGAGTTAACGGGCTGCTGGcaaacgggaacgggaacggtCAGAGCACGACCGCCGGGACGCTTCATCATAATCGAATTTCGGTTAGCAGCAGCCTCAGCGGTGGGTCGGTGGCGACATCGACACCTCCGTTGGTGCTTAGCTTGGGACAGAATCTTGGCGCACCCGGTAGTTTGCTGATCCTGAATGGGCAACAGTCCTCGTACGTGTGTCAATCGCAGCACCAGAAATCGAACGACTCGAAGGACGCCGAAGCAACCATCAAAACGGAAGCATCGTCCGCCTCCATCGCTAAGCAGGAGATGATGGATGCGTCCTCGTCACCTGTTCCTTCGCTgtcacaccaccacacaagGCAGTCCTCATCGCAACCGTCCAGCGGCTCACCATCATCCGCCACAACGGGTGGTACCTCCGATAAGCAGTCGTTCGAGAGTATATTCGGCTACCAGGATCACACGCCGATGGCGAGCCCGGTGCAGGGCATGGAGAACAGCGGTCCGGTCCATCACCACGACAATCTGCCGTTCTTCAACGAAACGCTCGATCTCTCGCAGGAAGACATCCAGAAGACGCTCAGCGCAAATATGCCCCTCGGGGGCCACGTGAATACGCACGACAACACCCCGACGGACGACGCGATGAACGGCGAGATCAACCCGATGGACTTCATCGAGAACTGCGGCGACAACCACGGCACGGTGGACGACGATGTGTTTGTCAATCTGGACGCGTTCGACATGCTGGTGGAGTTTccggagctggagctggacgCGAAGAGTGAGTTTCTGCGCGACGCCACAGATGACGCCACGGATGACCCCACCGGTGGGGGAGATCTCGCGGGGGACAGTGGCAGCGAGCTCGGACAGTACAAGCACCACGTGCGGAAcgagcatcagcagcagccgccaccgCAGTCCCTGCCGAACGTGTCCACCATCACGGACTTCAGCCCGGAGTGGGCCTACCCGGAGGGTGGCATCAAGGTGCTGGTGACCGGTCCGTGGAGTGCCAGCTCCGCCTATACAGTATTATTCGACTCGTTCCCGGTGCCGACGACGCTCGTGCAGGACGGTGTGCTCCGGTGCTACTGTCCGGCGCACGAGGTCGGCGTCGTGACGCTGCAGGTCGCCTGTGATGGTTTTGTGATATCCAACGCGGTCAACTTCGAGTACAAATCGCCGCCAAAGTTCGAGACGAAGTGCGAGGGCAACGGGAACGACATGCTGTACAAGTTCAACCTGCTCAACCGgctcgaatcgatcgacgaGAAGCTGCAGATTAAGGTGGAACCGGGTGAGCTGCCCGAAGACGCTCTGCTGTTCAAGCAGAACAACTTTGAGGATCGGTTGGTGAACTACTGTGAAACGCTGACGGCGAAAATGTGGCGCTCCGTGACTCCCGGGCCGTTCATCGACAAGCACCAGGGCATGACGTTGCTGCATCTGGCCGCGGCTCTCGGCTATGCGAAACTGGTGCGCACGATGCTGACCTGGAAGGCGGAAAACTCGAACGTTATCCTGGAGGCAGAAATCGATGCGCTCAGCCAGGACAAGGATGGCCACACGCCGCTGACACTAGCCTGCGCCCGGGGACACACCGAGACGGCCATCATGCTGTACAAGTGGAACCAGAACGCGCTGAACGTACGCACCAACGCGCAGAAAAGCCCGGTCGAAGTGGCGCGCGACCACGGTCACGCCGAGCTGGCGCGCGAACTCGAACGCCAAGAGAAGGAACGACTGCACATCCAGCAGCGCACGCCGACCAGTACTTCCATCCCGACGCTTGCCTCCATCTCGTCGTCCACGACGGCTACTTCCAGCACGACGaccgcttcttcttcctccgctTCGCCAAATGCAATGCGCCAAACCAGCTCGAATCACTCTTCCAGCGCTTCGTCGCCCGCCGCTTCACCGAAGCAGACTCACCCGGGAGTGTCCGGAGCGGATGGCTTGGCTGTCGCTGCCGCCGGAACCGGCCCGACTGCCACTCGGTTCTCCGGCGTCGATCTCCTCAGCAATCTAAACGAAAGCaatagtagcagtagtaacagtagcagcagtagcagcagcagcagtagtagcaatGGTGCCATCCTATCGGGGGGTGCGGAGACGCGCTGTAAAGGCACGGATGGAAACAACAACCTGCACGCCAGCAGCGGTGGCGACGTCGTCGGCTCGATGGCGAACGATGCGTCCAGCTCGATGCACAACTTTCTCAACCTGAACCAAATCTTCAGCTACGGGGAGGGTTTACACGGTGCCAACAGTGACAGCTGCAGCAACGATAACTTCGGTCTGGTGGCGGCCTTCAATCCGTCACTCTCACCGACGGCCCTGTCGCCGTACAGTGAGATGAAGGGTTCCTGCTCGTCGACCGGTTCGCAATCCGGTGGACTCCATTACGGGCTGGAGAACACAAACTCCAACCCGATGCTCTCGAACGCGCTCTCGCCAAACTCGGACAGCAATCGGAGCCACGACGGTGTGTTCCTGCGACCCGGAGCCGTCTACTCGAGCCAAAGTCCACCCGGCGCGAGACTTTCGAAGCGCTCGTCGATCGACAGTGGCATCAACATGGACAACCGATCGGTCGGACTCGGCCGTACGGGCAAAGCGTTCCGGGAGGCTCAGCGCACGGCCCGGATGGATCGCAGCATGTCTCTACCGCTGTCGTCGGGTGGTGCGCCACCGACCGGCAAGAACATGCCCGGCACGCCATCGAGCAGCACCGTCGCTGGCGATCGGGAGACGGATAGCTTCTCGCTTTCGCTCAGCGAACGCACCACGGAGTCACCGTCGCAGGTGTCGAGTAATGTCTCGCTGCTGTCTCCGCTGCGCAAGATGGACTTTGCACTGTGTGAGGTTTCGGCAACGGAAACCAGCCCGATGTGCGAAGACGCTGACTCGCTGCAGGAAGACGACTGCCACCTTCCGCACCATCAGCTTCCTGATAGTATGGATATGGGTCAGGGAAGCACCGGCCCCAGTGCCGGTGCGGTGGCGAGCGCCGTAGGGGATTCCGATGTAAAAGTCCTTACACTAGCCGAGCAAATCATCGCCGCCATGCCAGAGCGTATTAAgAATGAATCCGAAGAAACTATGTACCTGGGTAGTCCATTGCCCGATTCACTTAACGAAGACACATCCGGAATGGGCATACTGAACGATACCTTCATGGAGCCGCTGCTCGATTCCCTTCCTTCATCACAGTTTGACCAGGAGTTCAATTTCGAGTTCAGTGACCATAACTATCGCTATCATGACGTCGGTACACCCTGTTCAAGCCTCAGCCCTGCATCGTCCGGTCCGCTGCAGTCTCCTGCCAGCTATTCGATACCGCAGGATCATCCCGTTGGTTCGCCGAGTCCCCCGCCCACAACGCAGGACTTTACCGAGTTTCTACAGTCCACGAGCGGCACCGTGAGACCCTTCGAGGCCGATTTCTCCAACCTGAAGCTTAACGATCGTGAACAGCGCGAGCTGTACGAGGCGGCCAAGTGCATTCAGAAGGCATACCGTTCGTACAAGGGCCGCAAGAGCCGAATGGAGGAGCAGGACAAGGAGCGCACGGCAGCGGTCGTGATACAGAACTACTACCGGCGCTACAAGCAATACGCGTATTACCGACAGATGACGCAGGCCGCACTCGTCATCCAGAACGGGTACCGGTCGTACTGCGAGAACAAGCGGTTCAAGAAGTCGCAAACGGCCCAGCCACACCAGCAGCCGCTGACGAGCAGCGAGGAGGACAAGGCGTCCTCGCAGTGCATCGAAACGTACTACCAGAACTTCCGCaacgagcagaagcagcaacaatcgcctcaacagcaacagcagaacaatCAGCAAGGTGGTTCCGGCTCGAAGGAACCAAGCCCGTCCGGTCCATTGAAACGAACTTATTCGCAACGAACACAAAATCAGGCCGCTAGAAAGATACAGCAGTTTATGAGACAATCGAAAAACAAGCTACAGAGAGAACGAGCCGAAAAAGAGAGGCTGGTCCACCTACGCAGGGTGGAGTACCTCCAAAGCTTGCAGTGTCACGAACCGCCCGAGGCACAGCCTACCAACGCTCCAAGGTGA
Protein Sequence
MTSQAVYCLSLQIRPSAEEGNATATAANGGNDQQQLGGKPVATTAGTATVVSNASTMVSTTGATLLSGLEKSGVTISAEASRALQTHALQIAQSQIVTTCQSPATVTVAASQHQQQQQQQQHSNIILVRGSRSENGQIILQNTHELLSLLSDEDKPIFLQHQRLTTSAGTTIAKAHATKTLTEAAGSGGGASTILFQPAIKSGTLESISGVGGTGGTILLQSDALKKGTTLEVGSTSTAGTTGGPIFLQQRLSKNGTEGPILLRTLKRLDKSQSILVIRNATTAGTVTTAGSTVVAASAAAAPGGISVSTAGGATLAKVKPVSTPTTTVVTVTAAPVGAGSVGGAIARRVQEETEEKKEPVAVAKVVHKSNNMPLGTDGEPIKLPDNLESLPRADHFPTQRHRWNTNEEIAAILISFDKHSEWQSKEVKTRPKSGSMLLYSRKKVRYRRDGYCWKKRKDGKTTREDHMKLKVQGTECIYGCYVHSAILPTFHRRCYWLLQNPDIVLVHYLNVPYPDDNKMAVITPNLALWGDKKEWTKEELVSQLKPMFFPTVFSEDEPDTANEIEISTAETVEAIVSQLMEKQRMARQTALVKQLECGCPDANCADGKSCSHPMRRISAAKSVQELGKRTDGHGGGTAPNVLIGSRMYPRWLDNRRMATGRVEQQQQQQQQQHSQHTILDPNGARAITPKTLDSSIHFQVIPTSAQSLTAQNSIRAGNQNASALVSLSSSNSSSQLTSVSSHLTNGIGGGTQGNHLAGHRSAMIITSNQHQQQQQQQQQQQHQLHQQQQQQQQQQQQQQQQHQHHQHPQQQQHANVHSHPHHGLPHPQQQHPQSQQHTLTMNGNSNTSSTSTSSNSNSSNSSSNNSVGSNQLTAIGHSNQVAPSNNAGSGTGADRSGVPNVSSGGTREANIHLNGSNENHISMIGSGQGNRPAAALGMNQRTGGDGSCGDASGTGVNGLLANGNGNGQSTTAGTLHHNRISVSSSLSGGSVATSTPPLVLSLGQNLGAPGSLLILNGQQSSYVCQSQHQKSNDSKDAEATIKTEASSASIAKQEMMDASSSPVPSLSHHHTRQSSSQPSSGSPSSATTGGTSDKQSFESIFGYQDHTPMASPVQGMENSGPVHHHDNLPFFNETLDLSQEDIQKTLSANMPLGGHVNTHDNTPTDDAMNGEINPMDFIENCGDNHGTVDDDVFVNLDAFDMLVEFPELELDAKSEFLRDATDDATDDPTGGGDLAGDSGSELGQYKHHVRNEHQQQPPPQSLPNVSTITDFSPEWAYPEGGIKVLVTGPWSASSAYTVLFDSFPVPTTLVQDGVLRCYCPAHEVGVVTLQVACDGFVISNAVNFEYKSPPKFETKCEGNGNDMLYKFNLLNRLESIDEKLQIKVEPGELPEDALLFKQNNFEDRLVNYCETLTAKMWRSVTPGPFIDKHQGMTLLHLAAALGYAKLVRTMLTWKAENSNVILEAEIDALSQDKDGHTPLTLACARGHTETAIMLYKWNQNALNVRTNAQKSPVEVARDHGHAELARELERQEKERLHIQQRTPTSTSIPTLASISSSTTATSSTTTASSSSASPNAMRQTSSNHSSSASSPAASPKQTHPGVSGADGLAVAAAGTGPTATRFSGVDLLSNLNESNSSSSNSSSSSSSSSSSNGAILSGGAETRCKGTDGNNNLHASSGGDVVGSMANDASSSMHNFLNLNQIFSYGEGLHGANSDSCSNDNFGLVAAFNPSLSPTALSPYSEMKGSCSSTGSQSGGLHYGLENTNSNPMLSNALSPNSDSNRSHDGVFLRPGAVYSSQSPPGARLSKRSSIDSGINMDNRSVGLGRTGKAFREAQRTARMDRSMSLPLSSGGAPPTGKNMPGTPSSSTVAGDRETDSFSLSLSERTTESPSQVSSNVSLLSPLRKMDFALCEVSATETSPMCEDADSLQEDDCHLPHHQLPDSMDMGQGSTGPSAGAVASAVGDSDVKVLTLAEQIIAAMPERIKNESEETMYLGSPLPDSLNEDTSGMGILNDTFMEPLLDSLPSSQFDQEFNFEFSDHNYRYHDVGTPCSSLSPASSGPLQSPASYSIPQDHPVGSPSPPPTTQDFTEFLQSTSGTVRPFEADFSNLKLNDREQRELYEAAKCIQKAYRSYKGRKSRMEEQDKERTAAVVIQNYYRRYKQYAYYRQMTQAALVIQNGYRSYCENKRFKKSQTAQPHQQPLTSSEEDKASSQCIETYYQNFRNEQKQQQSPQQQQQNNQQGGSGSKEPSPSGPLKRTYSQRTQNQAARKIQQFMRQSKNKLQRERAEKERLVHLRRVEYLQSLQCHEPPEAQPTNAPR

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

100% Identity
iTF_00108382; iTF_00103664;
90% Identity
-
80% Identity
-