CDS

Accession Number TCMCG020C14433
gbkey CDS
Protein Id RAL45177.1
Location complement(join(193096..193182,193687..193925,195353..195638,195742..195867,196683..196796,196949..197061,197140..197353,197917..198102,198273..198365,199172..199718,199809..199936,200027..200139,200627..200669,200884..201003,201178..201275,202258..202315,202406..202511,202596..202632,202717..202819,204518..204628,204743..204818,205652..205968))
Organism Cuscuta australis
locus_tag DM860_014587

Protein

Length 1104aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA394036, BioSample:SAMN07347267
db_source NQVE01000135.1
Definition hypothetical protein DM860_014587 [Cuscuta australis]
Locus_tag DM860_014587

EGGNOG-MAPPER Annotation

COG_category U
Description Sec23-binding domain of Sec16
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:  
ATGGCGATTGTAAAGGCGGTGAACAAATCGGCGACGGTGGCGTTCGCGCCCGAATCACCGTACCTCGCGGCCGGGACCATGGCGGGAGCTGTGGATCTGTCATTCAGCTCAGCGGCCAATCTAGACATCTACAAGCTCGACTTCACCTCAGATGACCAGGAGCTCATATTGGCCGGATCTGCGGCCTCTTCTGAGCGCTTCAACAGGTTGTCATGGGGGAAGCGTCTGCCTAATTCAGAAGAATTTTCTATGGGGCTCATTGCTGGAGGCATGGTTGATGGCACCATTGGTTTGTGGAATCCCAAGCGTTTGATATCCTCTGATGAGAATCAGGAAGGTACTGAAGCAGCTGGTGAAGCTTTTTTAGGTCCTCTTTCTGACCATAGTGGACCTGTTCGCGGATTGGAATTCAATGTATTTACTTCAAATCTCCTTGCTTCTGGTGCTGATGAAGGCAAAGTCTGCATATGGGACATTGCAAATCCCGCTGAACCTACCCAAAAGGGTGGTGGACGTGTATCATCAACGCAAAGTGAAATTTCATATATATCTTGGAACAGAAAGGTTCAACAAGTATTGGCATCCACATCAGTCAATGGAACAACTGTGGTTTGGGATCTTAGGAGGCCAAAGCCGGTGATTAGTTTCTCAGATTCTATTAGAAGACGCTCTTCAGTTTTGCAGTGGCATCCTGATTTTGCAACTCAGCTTATTGTAGCATCAGATGAAGATAGTTCTCCTGCACTTACTATGTGGGATATGCGAAATGTAATGTCTCCGATGAAAGAGTTTGTGGGGCATACCAAGGGTGTCATTGCAATGTCATGGTGTCCCATGGACAGTTCATACCTCCTTACTTGTGCAAAAGATAATCGCACTATATGCTGGGATGTCTCATCTGGAGAGATTGTGTCTGAATTACCATCAGGAACTAACTGGAATTTTGATGTGCACTGGTATTCCAAGTGTCCTGGTGTCATATCAGCTTCTTCATTTGATGGAAAGATTGGGATTTATAATATCGAGGGTTGTGATCGGTATGGTGCCAAAGAGGGAAATTTTGGAGCAGCAACTCCTTTGAGAGCTCCAAAATGGTACAAACGAGGAGGAGGAGTATCATTTGGCTTTGGAGGGAAATTGGTTTCTTTTCGTTCCACTAATGTCTCAGAGAAACCATCAGAGGTGGAAGTCAAAACTGTGATTACTGAGCACGGTTTAGTAAGTTGTTCATCCGAGTTCGAGACTGCAATCCAGGATGGAGAGAGATCTCAACTCAGGCTCTTTTGTGAAAAGAAATCCCAGGAATTAGAATCTAGTGATGAAAGGGAGACTTGGGGTATTCTGAAGGTTATGTTTGAAGAAGAAAGGACTGCAATGATCAAACTACTTTCACACCTTGGTTTTAGCCTGCCTGTAGAAGAAAAAGATATCTCTGAACAGGTATCTGCTCTTGGTCTAGGTGAAAGTCACATGGCTCATCAACAAAATGCTGTGGTGGAGGAAACCACAGGACAGCCATTTGATAATGAGGAAGATTTCTTTAACAACCTCCCCAGTCCAAAAACTGACACTCCTATGTCAACCTCTGGAAATAATTTCTATACTAATGAAGCCGGTCCAGGATGGGAGGAGGCTCCCCCTGAGATAAATGGATTAGAGGACACAACTGCCTCATCTTCTGATGATGATGCTATTCTGCATGCCTTGGTTGTTAAAGACCTCAAGACTGCTGTAACACACTGCATATCTGCTGGTAGAATCACTGATGCACTTGTTATCGCACATGTTGGTGGTCCTTCCCTGTGGGAAAAAACCCGAGATCAGTACCTTAAGACAAGCCGATTGCCTTACCTTAAGGTTGTCTCTGCATTGGTTAATAATGATCTCAGTAGTCTTGTAAAAAGCAGGCCATTGAAATCGTGGAAGGAAACACTTGCTCTCATTTGCACTTTTGCTCAGCAAGATGATTGGACTTCATTGTACGACACACTTGGCTCACGACTACTTTCTGTTGGTGAACTACTTCCAGCAACACTTTGTTTCATATGTGCTGGGAATATTGATAAAACAATTGAGATATGGTCGAGGAAGTTGTCAGATAATCACGATGGCAAATCTTATTTTGATCTCCTTCAGGATTTAATGGAGAAGACTATAGTATTTGCACTAGCAACTAGACAGAAGCGGTTTAGCAATTCTCTATGCAAGCTTGTTGAGAAGTATGCTGAAATCTTAGCAAGTCAGGGGCAGTTAAGTACAGCAATGAATTATTTGAAGGTTCTGGGAACTGAGGAATTGTCTCCTGAGCTGACAATATTACAAGATCGTATATCCCTCTCTATTTCCCCCGAAAAGGACACAATGTCTATGACTTATGAGACCTCACAGTTGCAAACTGGACCTGAATACAACATGGATCAATCACCTTTCAGCATAAATGAGGCTTCTCAGCACTTTTATCCACGTCATCTTGGTTCTCCATACATGGGATATCCTCCCCCCTACCTGCCTACTCCACCGCAAACTGTCCAACAGCCCAACATGTTTCTTCCAACATTGAGCTCTCATGTTACCCAGGGGAGTACTGCTGTAGCACCCACAGCTCCTCAGCCTACTACAAAACCCTTCACTCCAACTAACCCTCCTGCTTTGAGAAATGCAGAGCAATATCATCATTCCACTTTGGGTTCCCAGCTGTATCCTGGACATGGTAACACTGATTTCCCAGCTGTTCCTCGTGAGCCTAGTGTATCCAACCCTAATGCAATGCAAATCAACCAGCCTCTTGGACAAAGGATGCCTCAGGTTGCTGCACCTTCTCAAAATATTCGAGGGATTTCCCCAGTTGCAAACCCAGGAGTCCAGAGACCTGTTATGGGTCCCATTCATCCTCCTAGCACTAATGCTCAAGCAGCTCCCCTCCAAAAACCTGTATCTTCTGCTCTGCCTCCACCCACAGTGCAGACAGTTGATACTTCTAATGTCCCTGCTAAACAAAAACCTGTTGTAACAACATTGACTAAACTCTTCAACGAGATATCCGAGGTGTTAGGAGGGTCACGTGCAAATCCGGCAAAGAGACGTGAAATTGAGGACAATTCAAGGAAGCTAGGGGCATTGTTTGCTAAGCTTAACAGTGGGGATATATCTAACAATGCTGCAGAAAAGCTCGTACAGCTTTGTCAGGCTTTAGACAATGGTGACATCAGCACTGCTCTTCAGATTCAGGTGCTCCTCACAACTACCGAATGGGATGAGTGTCACTTTTGGCTAGCGACACTCAAACGAATGCTCAAGACGAGACAAAGCTTGTGA
Protein:  
MAIVKAVNKSATVAFAPESPYLAAGTMAGAVDLSFSSAANLDIYKLDFTSDDQELILAGSAASSERFNRLSWGKRLPNSEEFSMGLIAGGMVDGTIGLWNPKRLISSDENQEGTEAAGEAFLGPLSDHSGPVRGLEFNVFTSNLLASGADEGKVCIWDIANPAEPTQKGGGRVSSTQSEISYISWNRKVQQVLASTSVNGTTVVWDLRRPKPVISFSDSIRRRSSVLQWHPDFATQLIVASDEDSSPALTMWDMRNVMSPMKEFVGHTKGVIAMSWCPMDSSYLLTCAKDNRTICWDVSSGEIVSELPSGTNWNFDVHWYSKCPGVISASSFDGKIGIYNIEGCDRYGAKEGNFGAATPLRAPKWYKRGGGVSFGFGGKLVSFRSTNVSEKPSEVEVKTVITEHGLVSCSSEFETAIQDGERSQLRLFCEKKSQELESSDERETWGILKVMFEEERTAMIKLLSHLGFSLPVEEKDISEQVSALGLGESHMAHQQNAVVEETTGQPFDNEEDFFNNLPSPKTDTPMSTSGNNFYTNEAGPGWEEAPPEINGLEDTTASSSDDDAILHALVVKDLKTAVTHCISAGRITDALVIAHVGGPSLWEKTRDQYLKTSRLPYLKVVSALVNNDLSSLVKSRPLKSWKETLALICTFAQQDDWTSLYDTLGSRLLSVGELLPATLCFICAGNIDKTIEIWSRKLSDNHDGKSYFDLLQDLMEKTIVFALATRQKRFSNSLCKLVEKYAEILASQGQLSTAMNYLKVLGTEELSPELTILQDRISLSISPEKDTMSMTYETSQLQTGPEYNMDQSPFSINEASQHFYPRHLGSPYMGYPPPYLPTPPQTVQQPNMFLPTLSSHVTQGSTAVAPTAPQPTTKPFTPTNPPALRNAEQYHHSTLGSQLYPGHGNTDFPAVPREPSVSNPNAMQINQPLGQRMPQVAAPSQNIRGISPVANPGVQRPVMGPIHPPSTNAQAAPLQKPVSSALPPPTVQTVDTSNVPAKQKPVVTTLTKLFNEISEVLGGSRANPAKRREIEDNSRKLGALFAKLNSGDISNNAAEKLVQLCQALDNGDISTALQIQVLLTTTEWDECHFWLATLKRMLKTRQSL