CDS

Accession Number TCMCG067C45022
gbkey CDS
Protein Id KAF8052109.1
Location join(39479..42374,42556..43121)
Organism Sinapis alba
locus_tag N665_1606s0006

Protein

Length 1153aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA214277, BioSample:SAMN02744833
db_source MU107156.1
Definition hypothetical protein N665_1606s0006 [Sinapis alba]
Locus_tag N665_1606s0006

EGGNOG-MAPPER Annotation

COG_category S
Description Coiled-coil region of Oberon
KEGG_TC -
KEGG_Module -
KEGG_Reaction -
KEGG_rclass -
BRITE -
KEGG_ko -
EC -
KEGG_Pathway -
GOs GO:0001708        [VIEW IN EMBL-EBI]
GO:0007275        [VIEW IN EMBL-EBI]
GO:0007389        [VIEW IN EMBL-EBI]
GO:0008150        [VIEW IN EMBL-EBI]
GO:0009653        [VIEW IN EMBL-EBI]
GO:0009790        [VIEW IN EMBL-EBI]
GO:0009880        [VIEW IN EMBL-EBI]
GO:0009888        [VIEW IN EMBL-EBI]
GO:0009933        [VIEW IN EMBL-EBI]
GO:0009987        [VIEW IN EMBL-EBI]
GO:0010014        [VIEW IN EMBL-EBI]
GO:0030154        [VIEW IN EMBL-EBI]
GO:0032501        [VIEW IN EMBL-EBI]
GO:0032502        [VIEW IN EMBL-EBI]
GO:0045165        [VIEW IN EMBL-EBI]
GO:0048507        [VIEW IN EMBL-EBI]
GO:0048532        [VIEW IN EMBL-EBI]
GO:0048856        [VIEW IN EMBL-EBI]
GO:0048869        [VIEW IN EMBL-EBI]
GO:0090421        [VIEW IN EMBL-EBI]

Sequence

CDS:  
ATGAAGCGACTAAGATCCAGCGGCGATCTTGATTCATACACCGATAACAACAATAGCGTCGACGGAGATCCACCGTTCAACTCCGACCGCCCTGCCTCCGCCTCCTCCCACCGCTGGGGTCGCAGGGGACCCTTATCCCCTTCTCGATACGACCGCGACCGCGGCGACGATCCCGCCGCTAACTTCTCGAGGTCCTTATCCCGAAGGCGATCCAATCTCGACTTCGATGGTGGTAGTAGCAATCGAAGGAAAGATCCCGATGTACGGTTCAGCAGAGACGACAGGCTCCATCGATCTGAGAGCGCTTCTTCGAGGAGAGCTTTTCCGAAGGGGTTTCGCTCCGAGAGAGAGAGGCCTAACAGAGAAGCTAGCGTGTCTTCTTCGTGGAGGAGGTTTGGTGGTCCAGGGAATGATTTTGGAAGAGAAAGGCGTGGAGGTCTTTGGGATGGTGAGAGGGAGAGGAGTGTTAAGTCTCCTTCTTGGTCGAGAGACTCGAGTAATAACGAGGTGTCGAGAGTGAAGGTGGATTCGAGAAATTCACGGTCCAGATCTAAATCTCTAGCTTCTCCGACGTGGTCTAAAGACTCTGGGAGTGAGCAATCTAAGAGTGTTGGCAAGAAAAGCGAGGAGGTGCATGGTAAGAGTAGTAGTGAGATGGAGGAAGGAGAGCTGGAGCCTGAGCCTGAGCCACAGTCTCAACCAGAGACTGTATCTGAGGCTACTGCTGGTGATCAGAATAATGAAAGGCTTGATAGCGGCTTCCAAGAGAGGAACAAAAACGCTGACTTTGATGACGATGATAGGGAAATGAAAACGGCTGAGAGTACGATGGATAAGGAAAGTGTTGAGAAAGGAGAAAATGTGGGTGATCATGCGACAGAGAGCATGCATACTTCTCAAAACAATGTGAATGATAGTTCTACAGCTTTAGCTAGTGAACAAGAGCTTAGCGATGACAGAAACACTGCTGCTGTCAATGAGGTTACAGATATGGTCGATGATAAAGGTGACAAAGAAGAGAAATACCAGGAGAATCATGAAGTGAAGTTGGAAGAAAGTCTTTACCCTGAACAGTCTCAGGCAGAGGATCTTAATCTAGGGAAAGGTAGTGATGGTGACACCAACGAAGCAGAAGTTGAAGCCCCAAAATGTGTTGAGGAAAATGCTCTAGGGAATAGACCGCTTGTATCAGATAGCTCCATCCACAAGGATAAAGGCAAACAATTGGATGTCCCATTTACTCTTTTACATGAAAATGCTGTCTTGTCTGAAAGAAAGCCTGAGGATCTTACTGACAGGGATAGAGATGAAGATGACAACTTCGGTGGACCAAGTACCAGAGGGTTTGAACTGTTTTCTAGGTCTCCCGTCAGAAAAACAAATAAAACTGAGCAGTCAGGTGTCAATAAGCCTAAGGATGAGAAGTTGTTGGAGCCACTGGATCTTTCACTTAGCCTACCAGATGTGTTGTTGCCGATTGGTGGTCAGGATACTAATCAGCCTCTGGGTTCACCCGTCCGTTCTGGAAGTGTTCGTTCTATGACAGACACGTTTCGTACTGATTCCGAGGGCTTCACCATGTCTATGTCCTTTTCAGGTTCACGTTCGTTTAATCATAACCCAAGCTGTTCGTTGAATCACAATATTGGAGATAATGAGCAGTCAGTTCATAGCCGACCTATATTTCAAGGTATAGATTGGCAGGCACTGTCTCATAATGATCCAAGGTACAATGAGAATACAGTCTATCAGAATTTGATGGAGAATGGAAATGGTTCAGTTCCTCCTCAGTCAATGAAAGGAATTTTAATTCCGGGTCAAGCTGATGAAGAGCATCTTAGATTGACAGATGGGAGCTCTAAGGCAGTAGATAGGCTTGAGAAACAGTTGAGTTTCCAGAAAAGTGTTGATGTTAGATCAGCATGTCCAAAACAGTTGAGCTCTAAGGCAGTAGATAGGCACTCTCTCGAAAATGGTTCTAAGCTCCGTGTTGAGAAGAAAAAAGCCACGGACTTTTTTGGAGGTAGCATCTCCGGGGTAAGTGGCTTGAACGCTGGTGGGGATGAATCTGTTGAGATGGTAATAAGATACATTCTCTCTGATTCGATGCATGTGATGACCAAGAGGTTTCAAGAGATGCCCACGCGATACATAACTAGTTTGAAGGAATACATCCGGCAGATGATACTGAACAAGGATAAGAATGTACGACTTGGTGTTTTTCAAGATGCTCTGCAGAACAGGACTGATATTACACTGGAATTGCTTACAAAATCACATCGTGCTCAGTTGGAGATCTTGGTCTCTCTGAAAACTGGACGTTCTGATTTCCTTGAGTTGGATGAGAGTATCTCCTCTGCCCACTTAGCTGAGATCTACATGAATATGAGATGTAAAAATCTTTCATGTAGGGGTTTGGTGCCTGTGGATGAATGTGATTGCAAGGTTTGTTCAAGTAAGGATGGGTTTTGTAGTGCTTGCATGTGTCTTTTGTGCTCAAACTTTGATATGGCATCTAACACCTGTAGCTGGGTTGGGTGTGATGTGTGTCTTCACTGGTGTCACACAGAATGTGGGATACGAGAATCTTACATCCGGAATGGGATTAGTGCTTCTGGTACTCGAGGAATGACTGAGATGCAATTCCACTGTGTCGCCTGTAACCATCCCTCGGAGATGTTTGGGTTTGTCAAAGAAGTATTTCTGAATTTTGCAAGGGAATGGAAATCTGAGCGGTTTTGCAAGGAACTGGAATATGTCAGTAAGATATTTTCATCAAGCAAAGACTTTAGAGGGAAACAGCTTAGACAAGCTGTTGATGCGATGCTGGCAAGTTTGTCAAGTAAATTGATAGACCTTCCTGAAGCATGCAATAAGATATTGGGTTTCATTTCAGACTGTGATTCCTCCACTCCTGGTGAAACTTGTGCGCCGTTGAGATACGAGCAGCCAAAACAAAGGCACGAGAGGGGAAGCCCTAGTCAGGACACGGCATGGCTGAGATCGGTATGCTCGGAGAAACCGCATCATCAGGTGAAAAGATCAGCAAGCGTAGTTGATGGATTCCACATAGAGAGACAAGGTGAAATATTTGGAGTGGAGACAGGTTTGAAAAGGGAAGCTCCAACGGAACCTCGTTTTGAAGAACTAGAGAGCATAGTGAGAATGAAGCAAGCAGAGGCAGCGATGTTCCAAGGGCGAGCGGATGATGCAAGAAAAGAAGCAGAGGGGCTGAAACGAATAGCTATAGCGAAGAAGGAGAAGATAGAAGAAGAGTACAAGAGGAGAATGGGGAAGCTTAGTGTGGAGGAGGTACAGGAGAGGAAGAGGAGGAAGCTGGAGGAGTTGGTGGCGATGGAGAGAGGGCAGAGAGAGTTTTACGAAATGAAGATGAGAATGGAGGAAGAGATGAGAGGGCTTCTCACCAAAATGGAAGTGACGAAGCATACTCTGGCCCTGTAA
Protein:  
MKRLRSSGDLDSYTDNNNSVDGDPPFNSDRPASASSHRWGRRGPLSPSRYDRDRGDDPAANFSRSLSRRRSNLDFDGGSSNRRKDPDVRFSRDDRLHRSESASSRRAFPKGFRSERERPNREASVSSSWRRFGGPGNDFGRERRGGLWDGERERSVKSPSWSRDSSNNEVSRVKVDSRNSRSRSKSLASPTWSKDSGSEQSKSVGKKSEEVHGKSSSEMEEGELEPEPEPQSQPETVSEATAGDQNNERLDSGFQERNKNADFDDDDREMKTAESTMDKESVEKGENVGDHATESMHTSQNNVNDSSTALASEQELSDDRNTAAVNEVTDMVDDKGDKEEKYQENHEVKLEESLYPEQSQAEDLNLGKGSDGDTNEAEVEAPKCVEENALGNRPLVSDSSIHKDKGKQLDVPFTLLHENAVLSERKPEDLTDRDRDEDDNFGGPSTRGFELFSRSPVRKTNKTEQSGVNKPKDEKLLEPLDLSLSLPDVLLPIGGQDTNQPLGSPVRSGSVRSMTDTFRTDSEGFTMSMSFSGSRSFNHNPSCSLNHNIGDNEQSVHSRPIFQGIDWQALSHNDPRYNENTVYQNLMENGNGSVPPQSMKGILIPGQADEEHLRLTDGSSKAVDRLEKQLSFQKSVDVRSACPKQLSSKAVDRHSLENGSKLRVEKKKATDFFGGSISGVSGLNAGGDESVEMVIRYILSDSMHVMTKRFQEMPTRYITSLKEYIRQMILNKDKNVRLGVFQDALQNRTDITLELLTKSHRAQLEILVSLKTGRSDFLELDESISSAHLAEIYMNMRCKNLSCRGLVPVDECDCKVCSSKDGFCSACMCLLCSNFDMASNTCSWVGCDVCLHWCHTECGIRESYIRNGISASGTRGMTEMQFHCVACNHPSEMFGFVKEVFLNFAREWKSERFCKELEYVSKIFSSSKDFRGKQLRQAVDAMLASLSSKLIDLPEACNKILGFISDCDSSTPGETCAPLRYEQPKQRHERGSPSQDTAWLRSVCSEKPHHQVKRSASVVDGFHIERQGEIFGVETGLKREAPTEPRFEELESIVRMKQAEAAMFQGRADDARKEAEGLKRIAIAKKEKIEEEYKRRMGKLSVEEVQERKRRKLEELVAMERGQREFYEMKMRMEEEMRGLLTKMEVTKHTLAL