CDS

Accession Number TCMCG024C39490
gbkey CDS
Protein Id XP_022018233.1
Location complement(join(179903936..179904025,179904145..179904383,179904490..179904754,179904843..179904971,179905062..179905169,179905253..179905365,179905457..179905670,179905763..179905948,179906031..179906123,179907318..179907858,179908705..179908832,179908906..179909012,179909343..179909385,179909984..179910103,179910210..179910307,179910402..179910459,179910556..179910661,179910760..179910796,179910901..179910997,179911898..179912020,179912150..179912204,179913262..179913590))
Gene LOC110918195
GeneID 110918195
Organism Helianthus annuus

Protein

Length 1092aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA396063
db_source XM_022162541.2
Definition protein transport protein SEC31 homolog B isoform X1 [Helianthus annuus]

EGGNOG-MAPPER Annotation

COG_category U
Description transport) protein
KEGG_TC -
KEGG_Module M00404        [VIEW IN KEGG]
KEGG_Reaction -
KEGG_rclass -
BRITE ko00000        [VIEW IN KEGG]
ko00001        [VIEW IN KEGG]
ko00002        [VIEW IN KEGG]
ko04131        [VIEW IN KEGG]
KEGG_ko ko:K14005        [VIEW IN KEGG]
EC -
KEGG_Pathway ko04141        [VIEW IN KEGG]
map04141        [VIEW IN KEGG]
GOs GO:0005575        [VIEW IN EMBL-EBI]
GO:0005622        [VIEW IN EMBL-EBI]
GO:0005623        [VIEW IN EMBL-EBI]
GO:0005737        [VIEW IN EMBL-EBI]
GO:0005829        [VIEW IN EMBL-EBI]
GO:0005911        [VIEW IN EMBL-EBI]
GO:0009506        [VIEW IN EMBL-EBI]
GO:0016020        [VIEW IN EMBL-EBI]
GO:0030054        [VIEW IN EMBL-EBI]
GO:0044424        [VIEW IN EMBL-EBI]
GO:0044444        [VIEW IN EMBL-EBI]
GO:0044464        [VIEW IN EMBL-EBI]
GO:0055044        [VIEW IN EMBL-EBI]

Sequence

CDS:  
ATGGATACATCCGCTTGCATAAAAGAGGTTAACAGATCGGCATCGGTCGCCTTCGCTCCCGATGCGCCGTACATCGCCGCCGGCACCATGGCCGGAGCCGTCGACATGTCGTTCAGCTCCTCCGCGAATCTCGAGATCTTCCAGCTTGATTTCCAATCCGACGATCGTAAACTTCCGTTAGCTGGCGCTATTCCTAGTTCCGAACCGTTTAATCGGTTATCCTGGGGGAAATCACCGGTGTCTGGTTCGGAAGAATTCTCACTCGGTCTCGTTGCCGGTGGTCTTGTTGATGGAAATATCGGTATCTGGAATCCAAGGATACTTATCAGTTCTGAAGAAAATGAAGGCGCTCTTATTCAACAACTATCAAGGCATAGAGGGCCTGTTCGTGGTCTTGAGTTTAGTAGTCTGTCACCAAACCATCTAGCTTCTGGTGCTGAAGAAGGGGAAATCTGTATATGGGATATCGCAAAACCAGCAGAACCTACACATTTTCCTCCCCTCAAGGGAAGTGCATCAGCTAAACAGGGTGAGATCTCTTTCTTATCGTGGAACAGGAAAGTTCAGCCCATATTGGCATCCACCTCTATTAATGGGACAACTGTGGTTTGGGACCTCAGGAAGCAAAAACCAATTATAAGTTTTTCAGATTCAGTTAGAAGACGATGCTCTGTTTTACAGTGGCATCCTGATTTTGCCACTCAGCTGATTGTTGCTTCAGATGATGATAGTTCACCTTCTTTGAGGATATGGGATATGCGTAACACAATGTCACCACTGCGAGAGTTGGTAGGTCACGATAAAGGTGTCGTTGCTATGTCATGGTGTCCCAGTGACAGCTCGTATTTGCTTACATGTGCCAAAGATAACCGTACTATTTGCTGGGACACCAACTCTGCTGAGATCGTATCTGAACTTCCAGCTGGCACCAACTGGAATTTTGACGTTCACTGGTATCCAAAGATACCAGGGATCATATCGGCTTCTTCTTTTGATGGGAAAATTGGCATTTATAATATTGAGGCTTGTGCACGATACGGTGCTGGTGCGAATTATTATGGTTCAGCACCATTAAAAGCCCCGAAATGGTATCAACGTAAAGCTGGAGTATCTTTTGGTTTTGGTGGAAAGCTTGTTTCTTTTCACTCAACTGGCTCTTCTGGACCATCAGAGGTTAATGTGCATGACTTGGTTACCGAGCACAATTTAGTGACTACTTCATCTGAATTTGAAGATGCAATGAGAAGTGGAGATAGATCTACGTTAAGGCTTCTTTGTGACAAAAAATCTCAAGAGTCTGAATCTGAGGAGGAAAAAGAAACATGGGGATTTTTGAAAGTGATGTTTGAAGATGACGGGACCGCAAGATCGAAGCTTTTGAACCACCTTGGCTTTACATTACCCGCAGAAGCGAATGAGGATGTGCAAGAGTTATCTCAAGAAATAAGTTCTCTAAACTTCGAAGAACAAGAAACAAATAAAGAAGCATTTATCGGTGGCAACCAAACACCAATTGATAATGGCGAAGATTTCTTCAACAATCTTCCAAGTCCTAAATGTGATACACCCGTCTCAACTCCTGGCAAAAACGCTGAAGAATACGTTCCTAATTTCGAAGAATCACCTAAGGAAAGTGATTTACATGTGGGGACCAATGACCCTTCGTTTAACGATGCTGTACAACGCGCTTTGGTTGTTGGGGATTATAAGGGAGCTGTTGCACAGTGCATAGCTGCAGATAAGATGGCTGATGCTTTAGTTATCGCACAGGTTGGCGGTGCTTCCCTTTGGGAGACCACACGCGATCAATACCTAAAGAAGAATCGTTCTCCTTACCTTAAGGTTGTTGCTGCAATGGTAAATAATGACTTAGTTAGTCTGGTAAATACCAGGCCCCTGAAATCCTGGAAGGAAACACTAGCTCTTCTATGCACTTTTGCCCAAAGGGAGGAATGGACTTTACTTTGTGACACCCTTGCAGCTAGGCTTGTGGCTTCTGGTAATACACTAGCTGCAACTCTTTGTTACATATGTGCTGGCAACATTGATAAAACAGTTGAAATTTGGTCAAAGAACGTTACTGGTGAACACAAGGGTGAATCCTATGTTGACCTTCTTCAGGATTTAATGGAAAAGACGGTGGTTCTTGCTTTAGCAACTGGTCAGAAGAGATTCAGTGCTTCTTTATGCAAACTTGTTGAAAAATATGCTGAAATATTAGCAAGTCAAGGACTTTTGACCACAGCTATGGAATATTTGAAACTAATGGGCACTGAAGATTTATCCCCTGAACTTGTTATTTTAAGAGATCGTATCGCACTCTCATCTGAACCAGAGAAAGAGACAACACGGTCTACAGATTATGTTCACACTCAACCACAAATGGGAGCTGTGTATGGTACACACCAGCAAACAAACTCTGTTGAACCTTCTAGAAACTATTATCAGGATGGGAGCTCTTACCAACAACCATCTGAACCTTTATACAATACTCAATATCAACAGCCGCAACAACCTTCTCTGTTTGTTCCAACTCCTGCAGCGCATGTTCCACCTGCGGGATTTAATCCACCTCCAGTGACAACTCAGCCTGCACCGAAAGTCTTTGTTCCGACAACACCTCCTGTTATGAGAAACGCTGATCAATACCAGCAGCCTCCCACTTTGGGTTCCCAGTTATACCCTTCTCAGGGGAATGCTAATCCTGTTTACCAACCTGGACCACCTGGGCCTGTTTCACTTGGGCCCGTTCCGTCTCCAATGGTTGCAACCACCGGGCCGAAGATATCACACGGTGTGACACCACCAGTCAGGGGGTTTATGCCCGTTAATAATACAGGATTACAAAGACCTTCCTCTACTCAAATGCAACCGTCTACTCCTCCACCGCCTTCCGCCCCTCCTGCCGCTCCTCCAACTGTACAGACAGCTGATGTGTCAAATGTACCTGCCCAGCAAAGGGGAGTTATTGGAACTCTGACAAGACTTTTCAATGAGACATCAGAAGCATTGGGAGGGTCAAACGCTGCGCCAGCTAAGCGGCGGGAAATCGATGATAACTCCAAGAAAATTGGTGCCTTGTTTGCGAAGCTAAATAGTGGTGATATATCAAAGAATGCTGCTGAAAAGCTTGTGCAGCTTTGTCAGTCGTTGGATCGTGGTGATTTTGCTACTGCTCTCAAAATTCAGGTGGATCTTACGACAAGTGACTGGGATGAGTGCAGCTTCTGGTTAGCAACTCTGAAGCGAATGATCAAGACCAGGCAAAATGTGAGATAA
Protein:  
MDTSACIKEVNRSASVAFAPDAPYIAAGTMAGAVDMSFSSSANLEIFQLDFQSDDRKLPLAGAIPSSEPFNRLSWGKSPVSGSEEFSLGLVAGGLVDGNIGIWNPRILISSEENEGALIQQLSRHRGPVRGLEFSSLSPNHLASGAEEGEICIWDIAKPAEPTHFPPLKGSASAKQGEISFLSWNRKVQPILASTSINGTTVVWDLRKQKPIISFSDSVRRRCSVLQWHPDFATQLIVASDDDSSPSLRIWDMRNTMSPLRELVGHDKGVVAMSWCPSDSSYLLTCAKDNRTICWDTNSAEIVSELPAGTNWNFDVHWYPKIPGIISASSFDGKIGIYNIEACARYGAGANYYGSAPLKAPKWYQRKAGVSFGFGGKLVSFHSTGSSGPSEVNVHDLVTEHNLVTTSSEFEDAMRSGDRSTLRLLCDKKSQESESEEEKETWGFLKVMFEDDGTARSKLLNHLGFTLPAEANEDVQELSQEISSLNFEEQETNKEAFIGGNQTPIDNGEDFFNNLPSPKCDTPVSTPGKNAEEYVPNFEESPKESDLHVGTNDPSFNDAVQRALVVGDYKGAVAQCIAADKMADALVIAQVGGASLWETTRDQYLKKNRSPYLKVVAAMVNNDLVSLVNTRPLKSWKETLALLCTFAQREEWTLLCDTLAARLVASGNTLAATLCYICAGNIDKTVEIWSKNVTGEHKGESYVDLLQDLMEKTVVLALATGQKRFSASLCKLVEKYAEILASQGLLTTAMEYLKLMGTEDLSPELVILRDRIALSSEPEKETTRSTDYVHTQPQMGAVYGTHQQTNSVEPSRNYYQDGSSYQQPSEPLYNTQYQQPQQPSLFVPTPAAHVPPAGFNPPPVTTQPAPKVFVPTTPPVMRNADQYQQPPTLGSQLYPSQGNANPVYQPGPPGPVSLGPVPSPMVATTGPKISHGVTPPVRGFMPVNNTGLQRPSSTQMQPSTPPPPSAPPAAPPTVQTADVSNVPAQQRGVIGTLTRLFNETSEALGGSNAAPAKRREIDDNSKKIGALFAKLNSGDISKNAAEKLVQLCQSLDRGDFATALKIQVDLTTSDWDECSFWLATLKRMIKTRQNVR