CDS

Accession Number TCMCG007C59339
gbkey CDS
Protein Id XP_033135423.1
Location join(43401626..43401711,43401810..43401849,43402740..43402949,43403031..43403084,43403150..43403211,43403462..43403594,43403701..43403811,43403923..43404019,43404249..43404331,43404777..43404842,43405067..43405222,43405318..43405373,43405467..43405524,43405605..43405715,43405799..43405855,43405992..43406126,43406216..43406470,43406645..43406719,43406841..43406962,43407055..43407127,43407238..43407342,43407439..43407606,43407832..43407901,43407975..43408126,43408216..43408293,43408379..43408471,43408545..43408682,43408754..43408793,43408876..43408949,43409024..43409161,43409242..43409361,43409450..43409575)
Gene LOC103843376
GeneID 103843376
Organism Brassica rapa

Protein

Length 1113aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA249065
db_source XM_033279532.1
Definition DNA replication ATP-dependent helicase/nuclease JHS1 isoform X3 [Brassica rapa]

EGGNOG-MAPPER Annotation

COG_category L
Description DNA replication factor Dna2
KEGG_TC -
KEGG_Module -
KEGG_Reaction -
KEGG_rclass -
BRITE ko00000        [VIEW IN KEGG]
ko00001        [VIEW IN KEGG]
ko01000        [VIEW IN KEGG]
ko03032        [VIEW IN KEGG]
KEGG_ko ko:K10742        [VIEW IN KEGG]
EC 3.6.4.12        [VIEW IN KEGG]        [VIEW IN INGREDIENT]
KEGG_Pathway ko03030        [VIEW IN KEGG]
map03030        [VIEW IN KEGG]
GOs -

Sequence

CDS:  
ATGGGGAGTTCGAGATTGTTAACACTTCTAGTAGTGGAAACAGTCCTTTCCAGACCCCACCGTCACTTTCATGCTCTCACAACAAGTGCAGCTTGTGGGTCCACGGGCACTGGGCAACATAAAAAGGCCTTGCTTGAACTTCTAGATCAAGTGGAGGATGTCATCTCAGTTGATGAAAAAACAGCTGATGAAGTGGGGACTGTGGTTCCCCAAATTCGACTTGAAGAAGATAAAATCTGTTCCGTTGGTGTCTACAACGCCGTAGACGAAAAGCCAATTGCTCTACTAAAAAAGAATAATTCTGCAAATCCAGATAGCTATTTCCTTGTATTGGAGGTATCTGAGAAACGTGGCTTCGCTGGCTCATCTAGGGTTCAGTCTCCTTATAAGGTTCTTCGCCTGCTAGACGAGCACACTGGAAAAGAATGCGCTTTATATCTCTGGGATGAATGGTTTTACAGCACTGTATCACCAGGAGATTCAATCAATGTTATCGGAGATTTTGACGGGGAGGGCAAGTGTGACGTAGACCACCAAAATAATTTCTTAATTGTTCATCCTGACACCCTTGTTGCTGGAACTAAGGTTGCAGCAAGTTTTGGTTGCCCAAGGAGAACCGTGCTGGATGAGAGGCTAAGATCCAATGAACACGCTACAGCTGCCTTGCTTGGAACCTTGCTGCACCAAGTTTTTCAGGCAGGTCTCACGCAAGAGTCTCCATCTGCAGATGGTTTGCAGGAATACGCGAGCATAGTGATTAAGAATAATATTGAGAGCTTATATGCATGTGGAGTGCATGAGCGAGGCGTGAAAGCAACCTTACACGAAGCTATCCCAAAAATGTTGAATTGGATTCATCACTTCCGAGATTCGAAGGACTCAACAATATCAAATGTTGATTTTGGGTCTACTAATGGGCAGCGAATGGTAAAGATATCAGAGGTAATTGACATTGAGGAGATGTCATGGGCCCCTAAATATGGTCTGAAAGGAATGGTCGATGCTTCAGTCAGAGTGATAGTTGGATCTGACATGAACACAGCGAATGAGAAAATAATGCCTCTTGAGTTTAAATCTGGAAAGGCTCCCAATGGGCAGGCATCAATGGAACATTGTGCACAGGTGATCTTGTACACGCTCCTTATGTCTGAGAGGTACCTAAAGCATATTGACAATGGCCTTCTGTATTATCTACAGTCAGATCAGACACAGGGAATTTCTGTTCAAAGATCAGATTTGGTGGGTTTGATTATTCGTCGTAATGAACTTGCAAATGACATCCTCGTGGCATCAACAACCCAACAATTGCCACCAATGTTACGGAATCCAAATATGTGTCGTAACTGTCGCCATCTGGACGCCTGCACGATTTATCATAAGGCAGATGGTGGAAACACGGAGAGTAGCGGACTTGCTGATCTCTTTGACGCACATGTATCTCATCTTTCAACTTTGCATTTTAAATTCATACGACACTGGAACAGACTGATTGACTTGGAAGCTAGAGAGATGAAGCTTCCAAGGAAAGACATTGCACATCCACGTGGTTCAAAGGGCAGCGACTCAGCCAGTTATCTTTCTTCTATGGTTCTTGACATGAAAGATGGGTTTCAGCATCATAGCTCTCATAAAGATTCTAGATTCATTTATCGTTTTGTACGTCAAAACTTATCTGAATCTAGAGAAAGAGTACCCAGCGAAGATACGACTAGGACTGGAAAGCCTTCAGCTGATGACCTGGATTGCAAACTTAGACCAGGAGACCGCGTGATTCTTCGCACAGAAGTCAGCCACCTAACCGTTGCAAATGGAATTATAGCAGAGATTAGTCGCACTCATGTATCAGTTTCTTTATCCAAGCGATTACGTCTTCCTTGGAGCGAGCCTTCTTCTGAGGTGTCCAATCTCTCTAATGAGTCATGGCGAATTTACAAAGATGAATACATGACATCATTTTCAATTATGAGGTTCAATCTCATGCAGCTTTTCATACAAAGCGTACATACCATTGGCATCAGGAAAATGATTGTGGATCTTGAGCCTCCTAGGTTTGACAATGGATCTATACTGAGCCAGGATCCAGCAATATCATATATTTGGTCAGAAAAGAGCTTAAATAATGATCAGCGTCAAGCTATACTAAAGATACTCACTGCAAAGGACTATGCGTTGATCTTAGGAATGCCTGGAACAGGAAAAACCTCCACAATGGTTCATGCTGTGAAAGCTTTGTTGATCAGAGGCTCATCTATTCTGCTGGCATCGTACACAAACTCTGCAGTTGATAATCTACTTATCAAATTGAAAGCACAGGGAATTGAGTTTTTACGTATTGGAAGAGACGAGGCTGTACACGAAGAAGTTCGAGAAAGTTGCTTTTCGGCTATGGATATGTGCAGTGTCGACGAGATCAAAACAAAGTTGGACCAGGTCAAAGTTGTGGCCTCTACATGTCTGGGAATCAATAGTCCCTACCTTGTGAATAGGCGTTTTGACGTTTGCATTATTGATGAAGCCGGCCAAATTGCCCTCCCTGTATCAATAGGACCTTTGCTGTTTGCCTCTACATTTGTACTTGTTGGTGACCACTATCAACTACCGCCACTAGTGCAGAGTACAGAGGCTAGAGAGAATGGGATGGGGATAAGCTTGTTTCGTAGGTTATCAGAAGCTCATCCCCAGGCAATTTCAATGTTACAGAACCAGTACCGAATGTGTCGAGGTATTATGGACCTATCAAATGCCTTGATATATGGAGATAGATTGTGCTGTGGTTCCGCTGAAGTAGCTAACGCCACACTTTTTCTTTCTACTTCCAGTTCTAATTCGCCATGGCTTAGAAAGGTTCTGGAGCCAACCAGAACAGTTGTATTTATTAACACAGATATGCTGCGTGCTTTTGAAGCCAGGGATCAGAATGCGATCAACAATCCAGTTGAAGCTTCAATAATAGCTGAGATTGTGAAGGAGCTAGTTAACAATGGAGTGGATAGTAAAGATATTGGAATCATTACTCCTTATAACTCACAAGCGAGCCTCATTCAACACGCCATTCCAACGGCGTCTGTGGAGATACATACTATTGACAAGTATCAGGGAAGAGATAAAGACTGCATAATAGTTTCATTTGTGAGATCGCGAGAGAAACCAAGGAACTCTGGTTCTTCACTGCTCGGAGATTGGCATAGGATCAACGTTGCTTTGACACGAGCAAAGAAAAAGTTGATAATGGTGGGATCACAAAGAACACTATCAAAAGTTCCACTCCTGATGCTTCTACTGAAGAAGGTTAAGGAGCAGTCAGGTATCTTGACTCTTTCTCCGGGGGACCTAAAACCATAA
Protein:  
MGSSRLLTLLVVETVLSRPHRHFHALTTSAACGSTGTGQHKKALLELLDQVEDVISVDEKTADEVGTVVPQIRLEEDKICSVGVYNAVDEKPIALLKKNNSANPDSYFLVLEVSEKRGFAGSSRVQSPYKVLRLLDEHTGKECALYLWDEWFYSTVSPGDSINVIGDFDGEGKCDVDHQNNFLIVHPDTLVAGTKVAASFGCPRRTVLDERLRSNEHATAALLGTLLHQVFQAGLTQESPSADGLQEYASIVIKNNIESLYACGVHERGVKATLHEAIPKMLNWIHHFRDSKDSTISNVDFGSTNGQRMVKISEVIDIEEMSWAPKYGLKGMVDASVRVIVGSDMNTANEKIMPLEFKSGKAPNGQASMEHCAQVILYTLLMSERYLKHIDNGLLYYLQSDQTQGISVQRSDLVGLIIRRNELANDILVASTTQQLPPMLRNPNMCRNCRHLDACTIYHKADGGNTESSGLADLFDAHVSHLSTLHFKFIRHWNRLIDLEAREMKLPRKDIAHPRGSKGSDSASYLSSMVLDMKDGFQHHSSHKDSRFIYRFVRQNLSESRERVPSEDTTRTGKPSADDLDCKLRPGDRVILRTEVSHLTVANGIIAEISRTHVSVSLSKRLRLPWSEPSSEVSNLSNESWRIYKDEYMTSFSIMRFNLMQLFIQSVHTIGIRKMIVDLEPPRFDNGSILSQDPAISYIWSEKSLNNDQRQAILKILTAKDYALILGMPGTGKTSTMVHAVKALLIRGSSILLASYTNSAVDNLLIKLKAQGIEFLRIGRDEAVHEEVRESCFSAMDMCSVDEIKTKLDQVKVVASTCLGINSPYLVNRRFDVCIIDEAGQIALPVSIGPLLFASTFVLVGDHYQLPPLVQSTEARENGMGISLFRRLSEAHPQAISMLQNQYRMCRGIMDLSNALIYGDRLCCGSAEVANATLFLSTSSSNSPWLRKVLEPTRTVVFINTDMLRAFEARDQNAINNPVEASIIAEIVKELVNNGVDSKDIGIITPYNSQASLIQHAIPTASVEIHTIDKYQGRDKDCIIVSFVRSREKPRNSGSSLLGDWHRINVALTRAKKKLIMVGSQRTLSKVPLLMLLLKKVKEQSGILTLSPGDLKP