CDS

Accession Number TCMCG024C26325
gbkey CDS
Protein Id XP_022001722.1
Location join(72567299..72567341,72568507..72568604,72568715..72568765,72569112..72569225,72569321..72569521,72569601..72569702,72569909..72570016,72570733..72570966,72571077..72571327,72571409..72571580,72571983..72572138,72572227..72572277,72572346..72572486,72572568..72572765,72573067..72573198,72573281..72573454,72573532..72573774,72573892..72574083)
Gene LOC110899159
GeneID 110899159
Organism Helianthus annuus

Protein

Length 886aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA396063
db_source XM_022146030.2
Definition coatomer subunit gamma-2 isoform X1 [Helianthus annuus]

EGGNOG-MAPPER Annotation

COG_category U
Description The coatomer is a cytosolic protein complex that binds to dilysine motifs and reversibly associates with Golgi non- clathrin-coated vesicles, which further mediate biosynthetic protein transport from the ER, via the Golgi up to the trans Golgi network. Coatomer complex is required for budding from Golgi membranes, and is essential for the retrograde Golgi-to-ER transport of dilysine-tagged proteins
KEGG_TC -
KEGG_Module -
KEGG_Reaction -
KEGG_rclass -
BRITE ko00000        [VIEW IN KEGG]
ko04131        [VIEW IN KEGG]
ko04147        [VIEW IN KEGG]
KEGG_ko ko:K17267        [VIEW IN KEGG]
EC -
KEGG_Pathway -
GOs -

Sequence

CDS:  
ATGGCGCAGTACGTGAAGAAAGACGATGATCTCGACGAAGAAGCAGAGTACTCCCCCTTCTGTGGAATTGAGAAAGGAGCGGTTCTTCAGGAAGCTAGGGTCTTCAATGATCCTCAGTTAGATTCGAGGAGATGTTCCCAGGTTATTACAAAGCTGCTTTATCTTCTGAATCAAGGTGATACCTTCACAAAGACTGAAGCTACAGAAGTGTTCTTTTCAGTAACAAAACTTTTCCAGGCTAGAGATATTGGATTAAGAAGAATGGTTTATTTGATTATAAAGGAGCTATCCCCCTCTTCAGATGAGGTTATCATTGTCACAAGTTCCCTTATGAAAGACATGAATAGCAAGACTGACGTGTATCGAGCAAATGCTATTCGTGTTCTCTGTCGCATCACAGATGGAACACTTCTTACTCAAATTGAAAGATACTTAAAACAAGCTATTGTTGACAAAAACCCTGTCGTAGCCAGTGCAGCCCTAGTTAGCGGTATCCACTTGCTCCAGACAAACCCAGAGATTGTGAAAAGATGGAGCAATGAGGTACAAGAAGCCGTTCAATCGAGGGCTGCACTTGTACAATTCCACGCACTAGCTTTGCTCCAACAGATAAGACAAAATGACCGTTTAGCTGTGAGCAAATTAGTGACCAGCTTGACAAAGGGCACTGTACGTTCACCTTTGGCTCAATGCCTGCTGATTCGTTACACCAGCCAGGTTATTAGGGAATCAAGCATGAACGGTCAAACTGGGGACCGCCCATTTTATGACTATTTGGAAGGATGTCTCCGCCACAAATCAGAAATGGTCATTTTTGAAGCAGCAAGGGCAATAACAGAATTAAGCGGTGTTACTAGCCGAGAATTGACCCCTGCAATTACTGTCCTTCAGCTCTTCCTAAGTTCATCTAAGCCAGTACTTCGGTTTGCTGCTGTCCGAACATTAAACAAGGTAGCAATGACTCATCCAATGGCTGTAACTACCTGCAACATAGATATGGAGAGCTTGATTTCAGATCAAAATAGAAGTATTGCAACCCTTGCCATTACTACACTTCTCAAAACTGGCAATGAATCAGGTGTTGACCGTTTAATGAAACAAATTACCAGCTTCATGTCTGACATTGCCGACGAATTCAAAATTGTTGTGGTTGATGCCATTAGATCATTGTGTTTAAAGTTCCCTCTTAAGTTCAGAACATTGATGAATTTCTTAAGCAGTATCCTAAGGGAGGAAGGTGGATTTGAGTACAAGAAAGCGATCGTTGATTCAATTGTAACTATAATAACAGATGTCCCAGATGCAAAGGAGGGCGGGCTTCTTCACCTCTGTGAATTCATTGAGGACTGTGAATTCACATATCTTTCAACACAGATTCTCCATTTTCTAGGTAATGAGGGACCAAAGACATCAGATCCCAGCAAATACATACGGTATATATATAACCGAGTTATACTTGAAAATGCAACTGTTCGAGCCAGCGCAGTGAGCACTTTGGCGAAGTTCGGTGCTATGGTTGATTCATTGAAGCCACGCATATTTGTTTTGTTGAGACGCTGTTTATATGATAACGATGATGAGGTTCGTGACCGGGCTACACTATATTTAAATACAATTGGAGGTGACGGTTCTGTTGTTGAAACAGATAAAGATGTAAAAGGATTTCTTTTTGGTTCTTTGGATCTGCCACTAGCCAACTTGGAGACTAGTTTGAAGAACTACGAACCATCAGAAGAACCCTTTGATATAAGTTCTGTTTCAAAGGCGATTAAGTCTCAGCCATTCGCAGAGAAAAAGGCTGCTGCTAAAAAGCCGACTGGCTTAGGTGCTCCTCCAGCTGGCCCCACTTCAACCGCCGATACTTATGAGAAGTTACTCTTGTCAATTCCAGAGTTCTCTACTTTTGGACCCCTTTTCAAGTCCTCTGCACCCGTGGAGCTCACTGAATCTGAAACCGAGTATGAAGTCAATGTAGTCAAACACATATTCGATAAGCACGTTGTCTTCCAATTCAACTGTACCAACACGATTCCTGAACAGTTACTGGAAAACGTTACCGTTGTTGTGGATGCTTCAGAAGCCGAAGAATTTGAAGAAGTGGCAACCAAGCCATTAACATCGTTACCGTATGGTACTCCGGGACAAACATTTGTCGCATTCGAGAAACCCGAAGGGGTTCCGGCTGTTGGCAAATTCACCAACGTCTTGAGGTTTATCGTGAAAGAGGTTGATCCCTCCACCGGTGAGGCTGAAGAAGAAGACGGTGTGGAAGATGAATACCAGCTGGAGGAATTTGAGGTGGTTGCAGCGGATTACATGCTTAAAGTTGGGGTTTCGAATTTCAGAAACGCATGGGAAAGTTTGGGCCCGGATTTTGAGCGTGTCGATGAATATGGGCTCGGCCCAAGGGAAAGTTTGAAAGAAGCAGTTAGTGCCGTTATCAACCTTCTTGGCATGCAACCTTGTGAGGGCACGGAGGTAGTTGCAGCAAACTCGAGATCACACACGTGCTTGTTATCAGGTGTATACATAGGCAACGTGAAGGTAGCTGTTCGATTATCATTTGGAGTCGATAGTGCAAAAGAGGTGGCGATGAAACTCGCCGTTAGATCCGAGGACGAAGCTGTAAGTGATGCAATTCATGAACTAGTAGCCAACTAG
Protein:  
MAQYVKKDDDLDEEAEYSPFCGIEKGAVLQEARVFNDPQLDSRRCSQVITKLLYLLNQGDTFTKTEATEVFFSVTKLFQARDIGLRRMVYLIIKELSPSSDEVIIVTSSLMKDMNSKTDVYRANAIRVLCRITDGTLLTQIERYLKQAIVDKNPVVASAALVSGIHLLQTNPEIVKRWSNEVQEAVQSRAALVQFHALALLQQIRQNDRLAVSKLVTSLTKGTVRSPLAQCLLIRYTSQVIRESSMNGQTGDRPFYDYLEGCLRHKSEMVIFEAARAITELSGVTSRELTPAITVLQLFLSSSKPVLRFAAVRTLNKVAMTHPMAVTTCNIDMESLISDQNRSIATLAITTLLKTGNESGVDRLMKQITSFMSDIADEFKIVVVDAIRSLCLKFPLKFRTLMNFLSSILREEGGFEYKKAIVDSIVTIITDVPDAKEGGLLHLCEFIEDCEFTYLSTQILHFLGNEGPKTSDPSKYIRYIYNRVILENATVRASAVSTLAKFGAMVDSLKPRIFVLLRRCLYDNDDEVRDRATLYLNTIGGDGSVVETDKDVKGFLFGSLDLPLANLETSLKNYEPSEEPFDISSVSKAIKSQPFAEKKAAAKKPTGLGAPPAGPTSTADTYEKLLLSIPEFSTFGPLFKSSAPVELTESETEYEVNVVKHIFDKHVVFQFNCTNTIPEQLLENVTVVVDASEAEEFEEVATKPLTSLPYGTPGQTFVAFEKPEGVPAVGKFTNVLRFIVKEVDPSTGEAEEEDGVEDEYQLEEFEVVAADYMLKVGVSNFRNAWESLGPDFERVDEYGLGPRESLKEAVSAVINLLGMQPCEGTEVVAANSRSHTCLLSGVYIGNVKVAVRLSFGVDSAKEVAMKLAVRSEDEAVSDAIHELVAN