CDS

Accession Number TCMCG061C67969
gbkey CDS
Protein Id XP_042031457.1
Location join(22106477..22106539,22106654..22106789,22106914..22106986,22108518..22108578,22108652..22108810,22109127..22109243,22109370..22109535,22109617..22109729,22109874..22109945,22110233..22110454,22111147..22111205,22111340..22111424,22111515..22111652,22112162..22112386,22112471..22113258,22113989..22114155,22114411..22114718)
Gene LOC121778212
GeneID 121778212
Organism Salvia splendens

Protein

Length 983aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA737421
db_source XM_042175523.1
Definition protein RRC1-like isoform X1 [Salvia splendens]

EGGNOG-MAPPER Annotation

COG_category A
Description U2 snRNP-associated SURP motif-containing protein-like isoform X1
KEGG_TC -
KEGG_Module -
KEGG_Reaction -
KEGG_rclass -
BRITE ko00000        [VIEW IN KEGG]
ko00001        [VIEW IN KEGG]
ko03041        [VIEW IN KEGG]
KEGG_ko ko:K12842        [VIEW IN KEGG]
EC -
KEGG_Pathway ko03040        [VIEW IN KEGG]
map03040        [VIEW IN KEGG]
GOs GO:0005575        [VIEW IN EMBL-EBI]
GO:0005622        [VIEW IN EMBL-EBI]
GO:0005623        [VIEW IN EMBL-EBI]
GO:0005634        [VIEW IN EMBL-EBI]
GO:0005654        [VIEW IN EMBL-EBI]
GO:0031974        [VIEW IN EMBL-EBI]
GO:0031981        [VIEW IN EMBL-EBI]
GO:0043226        [VIEW IN EMBL-EBI]
GO:0043227        [VIEW IN EMBL-EBI]
GO:0043229        [VIEW IN EMBL-EBI]
GO:0043231        [VIEW IN EMBL-EBI]
GO:0043233        [VIEW IN EMBL-EBI]
GO:0044422        [VIEW IN EMBL-EBI]
GO:0044424        [VIEW IN EMBL-EBI]
GO:0044428        [VIEW IN EMBL-EBI]
GO:0044446        [VIEW IN EMBL-EBI]
GO:0044464        [VIEW IN EMBL-EBI]
GO:0070013        [VIEW IN EMBL-EBI]

Sequence

CDS:  
ATGAGTGCTCGGAAGAAGACGCCATTTCAAAAGCACAGAGAAGAGGAAGAGGCGAAGAAAAAGAGAGCAGAGGATGAAACTGCACGGTTATATCAGGAATTTGTAGAATCATTTCAAGCGGATAATACGCCTGGGTCAAAGGCTTTTGTGAGAGGTGGAACTATCAACCCAAATGAGAAGCTGAAGAATGATTCAGTAGGCCTTTTCTATCATTCGCGGATGGCAGGTGGAAATTCCAAAGATGAGGGTTCTGGTATAAAGAAAGGGAGTAGGTATGTTCCATCTTTCATCCCGCCACCAATGGCAACAAAGGGTAAAGAATATGAAAAGAAAAGCATCCAGAAAGAGGACAAGCCAAAGGAGAGAGATAAAGGGAAGTCGAGGAATATTGATCATTTTATGGAGGAACTGAAGCATGAACAAGAATTGAGGGAGAGAAGGAATCAAGATCGTGAATATGGCCGTGATACACGTCATGGGGACAATTCTGTGCTATCTAGCAGGTTCGATGAACTGCCAGATGATTTTGATCCAATGGGAAGACCTGGATCATTTGATGATGGAGATCCACAGACTACAAATCTTTATGTGGGAAACTTGTCACCTCAGGTTGATGAGAATTTCCTTTTGCGTACTTTTGGAAGATTTGGTCCAATTGCTAGTGTAAAAATCATGTGGCCAAGGACAGAAGAGGAACGGAGACGGCAAAGGAATTGTGGATTTGTGGCTTTCATGAATAGAACTGAGGCTCAAGCTGCGAAGGATGAGATGCAAGGGGTGGTGGTCTATGAATATGAATTGAAAATTGGGTGGGGTAAATCTGTATCTCTTCCATCACAGGCACTTCCTGCACCACCTCCTGGACATATGGCCATCAGGAGCAAGGAGGGGGCAACTGTCATTTTGTCTGGTCCTTCTGGTCCTCCAGTAACTTCTGTTCCAAGCCAGAACTCAGAATTGGTACTTACACCAAATGTACCTGATATAAATGTTGTTCCTCCTGACGATGATCATCTCCAACATATTATTGATACAATGGCTCTCTATGTTCTGGATGGGGGCTGTGCTTTTGAACAAGCAATAATGGGGCGAGGCCGTGGAAATCCTCTATTCAGTTTTTTGTTTGAGCTTGGTTCAAAGGAACATACTTACTATGTGTGGAGGCTTTATTCATTTGCTCAGGGTGATACACTTCAGCGATGGCGAACGGAACCTTTTATCATGATAACTGGTAGTGGAAGATGGATACCGCCTTCATTACCATCAGCAAAAGGCCTGGAGCATGAAAAGGAAGCTGGGAACACTTATGCTGCTGGGAAAAGCAAACGTGCGGAGATGGAACGGACACTGACAGATACCCAAAGAGATGAATTTGAGGACATGCTACGTGCATTGACATTGGAGAGAAGCCAGATAAAAGAAGCCATGGGATTTTCTCTAGTTAATGCTGATGCTGCAGGAGAGGTGGTTGAAGTATTAACTGAGTCTTTGACTCTTAAAGAAACTCCAATTCCCACAAAAGTTGCTAGACTCATGCTAGTCTCAGACATCCTGCACAATAGCAGCGCTCCTGTGAAAAATGCATCTGCTTATCGCACCAAATTTGAAGCAACTTTACCAGACATTGTGGAAAGCTTTAATGACTTGTATCGTAGTGTAACTGGACGAATTACAGCTGAAGCCCTTAAGGAGCGTGTTTTGAAAGTTCTTCAAGTATGGGCTGATTGGTTTCTGTTCTCGGATGCATATGTCAATGGATTGCGAGCTACCTTTCTTCGATCTAGTAACTCAGGTGTAATACCGTTCCATTCTATATGTGGTGATGCCCCTGAGCTAGAGAGGAAGGTTGGTTCTGCAGAAGCAGGTGATGGGGAAAAGTTCAACCAAGATACTGCTTTAGCAATTGGTAAAGGAGCTGCCATGAGAGAGTTGTTGAGTTTGCCCCTTACCGAATTGGAAAGACGTTGCAGACACAATGGGTTATCTCTGGTTGGTGGAAGAGAAATGATGGTTGCTCGACTGCTTTATCTGGAAGAGGCGGAAAAGCAAAGGGGCTACGAATTAGATGATGAGTTAAAGTCTTCTCATAGCCAGTCAAGCTCTGGAAGATACCCAAGTGGACAGAAGGAACTAAACTCGGAAATGGATCTGGGGAAAATATCAGTAAGGGGTAGTAATATGGATGATAATATGCAGTCAATGGGGAGAGGAACAATGCTTTCCTCCCCAAATCCGCAATCTGACATTAACAATAGTGAAGGAAAAAATGAATCAATTCTCCCATCCTCTAAGTGGGCTAAAGAGGACGAGGAAAGTGATGAGGAGCGTGATAGAAGCACTAGAGACCTGGGGTTGACTTATTCATCTTCTGGTAGTGAGAATGCTGGTGATACTGTCTACAAAACAGAGGAGCCTGAGCTTATTACTGATGCCACTAATTCAACACATCTAGATAGTGTGATGAATGAAGAGCAGAGACAAAAAATGAGGCGTCTTGAAGTTGCTTTGATGGAATACCGTGAATCCCTTGAAGAACAGGGGATAAAGAATCCTGAGGAAATCGAGAGAAAAGTTGCTGTGCGCAGGAGGCGGCTGCAGGCTGAATATGGTCTAGTCGACTCAAATGCTCATGCGTCAGGCAAAAAGATATTGTCTGAGAGGAAGGAGCCACGAGATGACTCACGTGAGCTATCAAAAAAGCGTCGCCGTAGCCAAAGCAGAAGCCGAAGCCCTCAATGGAAATCATCCATCCGAGACAGAGATAGGGAGAATGATGTGAACAGAGACCGGGACAGACGGCGTGAACGGGACAGACCACACGAGATGGATAGTGAGAGAGGAAGGGAGCGGGATAGGGACCATGACAAGAGTGGCAGCAGGGAGAGGGATGATCACGATAGAGAAAGGACCCGCGAGAGAGATAGAGATAGGGAAAGGAGGAGGGTAAAATGA
Protein:  
MSARKKTPFQKHREEEEAKKKRAEDETARLYQEFVESFQADNTPGSKAFVRGGTINPNEKLKNDSVGLFYHSRMAGGNSKDEGSGIKKGSRYVPSFIPPPMATKGKEYEKKSIQKEDKPKERDKGKSRNIDHFMEELKHEQELRERRNQDREYGRDTRHGDNSVLSSRFDELPDDFDPMGRPGSFDDGDPQTTNLYVGNLSPQVDENFLLRTFGRFGPIASVKIMWPRTEEERRRQRNCGFVAFMNRTEAQAAKDEMQGVVVYEYELKIGWGKSVSLPSQALPAPPPGHMAIRSKEGATVILSGPSGPPVTSVPSQNSELVLTPNVPDINVVPPDDDHLQHIIDTMALYVLDGGCAFEQAIMGRGRGNPLFSFLFELGSKEHTYYVWRLYSFAQGDTLQRWRTEPFIMITGSGRWIPPSLPSAKGLEHEKEAGNTYAAGKSKRAEMERTLTDTQRDEFEDMLRALTLERSQIKEAMGFSLVNADAAGEVVEVLTESLTLKETPIPTKVARLMLVSDILHNSSAPVKNASAYRTKFEATLPDIVESFNDLYRSVTGRITAEALKERVLKVLQVWADWFLFSDAYVNGLRATFLRSSNSGVIPFHSICGDAPELERKVGSAEAGDGEKFNQDTALAIGKGAAMRELLSLPLTELERRCRHNGLSLVGGREMMVARLLYLEEAEKQRGYELDDELKSSHSQSSSGRYPSGQKELNSEMDLGKISVRGSNMDDNMQSMGRGTMLSSPNPQSDINNSEGKNESILPSSKWAKEDEESDEERDRSTRDLGLTYSSSGSENAGDTVYKTEEPELITDATNSTHLDSVMNEEQRQKMRRLEVALMEYRESLEEQGIKNPEEIERKVAVRRRRLQAEYGLVDSNAHASGKKILSERKEPRDDSRELSKKRRRSQSRSRSPQWKSSIRDRDRENDVNRDRDRRRERDRPHEMDSERGRERDRDHDKSGSRERDDHDRERTRERDRDRERRRVK