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Last updated: 2022/11/18
NameBGIBMGA001074-TA
JBrowseBomo_Chr13
chromosome_No.
Scaffold_id
Scaffold Length
chromo13
Bm_scaf1
16203812 bp
UniRef
UniRef50_Q9Y2Q0 (51%/1115)
Cluster: Probable phospholipid-transporting ATPase IA; n=33; Coelomata|Rep: Probable phospholipid-transporting ATPase IA - Homo sapiens (Human)
Ontology
GO:0000166 F nucleotide binding
GO:0000287 F magnesium ion binding
GO:0003824 F catalytic activity
GO:0004012 F ATPase-coupled intramembrane lipid transporter activity
GO:0005524 F ATP binding
Orthologue
Sequence
(Amino Acid)
MYTNEDEATTSGITDGATSDQQNRVIFVNRPQPQKFVSNRISTAKYSVPSFVPLFLFEQF
RRYSNCFFLLIALLQQIPDVSPTGRWTTLTPLILILSVSAIKEIVEDFKRHRADDETNRR
LVEVLRERRWVAIRWEHLQIGDICKVLNNQFFPADLVLLASRHVSLICLVDLTTQSPEQW
YCSEPQGISFIETSNLDGETNLKIRQAQPDTARLDAAPALADFRATVQCEPPNRHLYEFN
GLLKEANVKTLPLGLDQMLLRGAMLRNTAWVHGVVVYTGHETKLMKNSTKAPLKRSSIDR
QTNTHILMLFIILLALSLLSAGFNEFWMRNHNDWYIGLEEAQNAHFGFNFLTFLILYNNL
IPISLQVTAEIVRFFQAKFISMDSEMYDPASDTAAMARTSNLNEELGMVRYVFSDKTGTL
TQNVMVFHKCTIAEVIYSRPGPTERLEDTPLYQNLTREHPTAPVIREFLIMLAICHTVIP
ETKGDTVDYHAASPDERALVTGAAAFGFSFCTRTPSHVHVRALGDTLRYQLLHVLDFTSA
RKRMSVIVRTPEGTIKLYCKGADSVIYSRLSGGDSAPFAAATLAHLEHFAAEGLRTLVFA
VADIPEQVYQVRAGPRRPLRPLARIPSHRDLFEQDWSNTYHKASIAIQDREQKIEEAADL
VENNLRLLGATAIEDKLQDGVPETIAALLKANINVWVLTGDKQETAINIAHSARLIHTAM
PLLILNEDSLDGTRESMSRHAIDFGDNLRKQNDVALVIDGKSLKYAMGCDLKKDFLDLCI
SCKVVVCCRVSPIQKAEVVELVSGATGAVTLAIGDGANDVAMIQRASVGVGISGVEGLQA
VCASDYSIAQFRFLLRLLLVHGAWNYSRISKLILYSFYKNICLYVIELWFAIYSAWSGQI
LFERWTIGFYNVIFTALPPFAIGLFDKLCSPEIMLRHPILYIPSQQGLLFNVRVFWVWAV
NALLHSVLLFWLPVALADHHVLWSSGKDGGYLVLGNLVYTYVVLTVCLKAGLATHSWTWV
THVSIWGSLALWLLFLLIYSNIYPTILIGAVMLGMDRMVFGSLVFWFGLILIPIATLIPD
LVVTVVRNSAFKSATEAVRESELKQRAPPALLAQPRHS
(1118 a.a.)
Sequence
(Nucleotide)
ATGTATACTAATGAAGATGAAGCAACTACGTCAGGTATCACCGACGGTGCCACATCCGAT
CAGCAAAACCGTGTCATTTTCGTCAACAGACCGCAGCCCCAGAAGTTCGTCTCGAACAGG
ATCTCTACTGCTAAATACAGCGTGCCGTCCTTCGTTCCCTTATTCCTGTTCGAGCAGTTC
CGTCGGTATTCCAACTGCTTCTTCCTGTTGATAGCCCTGCTGCAGCAGATCCCTGACGTG
TCGCCGACGGGACGGTGGACAACCCTCACTCCTCTCATACTCATACTGAGCGTTAGCGCC
ATCAAGGAGATTGTTGAAGATTTTAAGCGGCACCGAGCGGACGACGAGACCAACCGCAGG
CTGGTGGAGGTGCTGCGGGAGCGGCGCTGGGTCGCCATACGATGGGAGCATCTACAGATC
GGCGACATCTGCAAAGTGCTCAACAACCAGTTCTTCCCAGCCGACCTGGTGCTGCTGGCC
TCTAGGCACGTCTCACTCATATGTCTCGTGGATTTAACCACCCAGTCACCAGAACAATGG
TATTGCAGCGAGCCCCAGGGCATATCCTTCATAGAGACCAGCAACCTGGACGGAGAGACC
AACCTGAAGATCCGGCAGGCGCAGCCCGACACGGCCCGACTGGACGCCGCCCCCGCCCTG
GCGGACTTCCGCGCCACCGTGCAGTGCGAGCCGCCCAACCGACATCTATACGAATTCAAT
GGATTGCTAAAGGAGGCCAATGTCAAGACGCTGCCTCTGGGCTTGGACCAGATGCTCCTC
CGGGGGGCGATGCTGCGGAACACGGCCTGGGTGCACGGCGTGGTGGTGTACACGGGACAC
GAAACTAAACTCATGAAGAATTCTACTAAAGCCCCGTTGAAGCGCTCATCGATCGACCGC
CAGACCAACACCCACATCTTGATGCTGTTCATCATCCTCCTGGCGCTGTCGCTGCTCAGC
GCCGGCTTCAACGAGTTCTGGATGCGGAACCACAATGACTGGTATATCGGCCTCGAAGAG
GCGCAGAACGCGCACTTCGGGTTCAACTTCCTGACGTTCCTGATCCTGTACAACAACCTC
ATACCGATATCGCTGCAGGTCACCGCCGAGATAGTTCGCTTCTTCCAGGCCAAGTTCATC
TCCATGGACAGCGAGATGTACGACCCGGCCAGCGACACGGCGGCCATGGCGCGGACCTCC
AACCTCAACGAGGAGCTGGGCATGGTGCGCTACGTGTTCAGCGACAAGACCGGCACCCTC
ACGCAGAACGTCATGGTCTTCCACAAGTGCACCATCGCAGAGGTGATCTACAGCCGGCCG
GGGCCCACGGAGCGGCTGGAGGACACGCCGCTGTACCAGAACCTGACGCGGGAGCACCCC
ACGGCGCCCGTCATCCGCGAGTTCCTCATCATGCTGGCCATCTGCCACACCGTCATCCCC
GAGACCAAGGGGGACACCGTGGACTACCACGCCGCTTCCCCCGACGAGCGCGCGCTGGTG
ACGGGCGCCGCGGCCTTCGGCTTCTCGTTCTGCACGCGCACGCCCAGCCACGTGCACGTG
CGCGCGCTGGGGGACACGCTGCGCTACCAGCTGCTGCACGTGCTCGACTTCACCTCCGCC
AGGAAGCGCATGTCCGTCATCGTGCGCACGCCGGAAGGGACCATCAAGCTGTACTGCAAG
GGCGCGGACAGCGTGATCTACAGCCGGCTGTCCGGCGGAGACAGCGCGCCCTTCGCGGCG
GCCACCCTGGCGCACCTGGAGCACTTCGCCGCGGAGGGGCTCCGGACCCTCGTGTTCGCC
GTCGCCGACATCCCCGAGCAGGTCTACCAGGTGCGTGCCGGGCCCCGCCGCCCCCTCCGC
CCCCTCGCTCGCATCCCATCACACCGTGATCTGTTCGAACAGGACTGGTCCAACACCTAC
CACAAGGCGAGCATCGCGATACAGGACCGCGAGCAGAAGATCGAGGAAGCTGCCGATCTC
GTAGAGAACAACCTGAGGCTGCTCGGAGCCACTGCCATTGAAGACAAGCTGCAGGACGGC
GTGCCGGAGACCATCGCCGCGCTCCTGAAGGCCAACATCAACGTGTGGGTGCTCACGGGA
GACAAGCAGGAGACCGCCATCAACATCGCGCACTCCGCGCGGCTCATCCACACCGCCATG
CCGCTGCTCATACTCAACGAGGACAGCCTCGACGGCACCCGGGAGTCCATGTCGCGCCAC
GCCATAGACTTCGGAGACAACCTCCGGAAGCAGAACGACGTGGCGCTCGTCATCGACGGA
AAGAGCCTCAAGTACGCGATGGGCTGCGACCTGAAGAAGGACTTCCTGGACCTGTGCATA
TCCTGCAAGGTGGTGGTGTGCTGCAGGGTGTCGCCCATACAGAAGGCCGAGGTGGTGGAG
CTGGTGTCGGGCGCCACGGGGGCGGTGACGCTGGCCATCGGCGACGGAGCCAACGACGTG
GCCATGATCCAGCGCGCGTCCGTCGGCGTCGGCATCTCCGGCGTCGAGGGGCTGCAGGCC
GTCTGCGCCTCCGACTACAGCATCGCGCAGTTCCGTTTCCTGCTCCGCCTGCTGCTGGTG
CACGGAGCCTGGAACTACTCGCGAATCAGCAAACTCATTCTGTATTCATTCTACAAAAAC
ATCTGTCTGTACGTCATCGAACTGTGGTTCGCCATATACTCTGCTTGGTCGGGGCAGATC
CTGTTCGAGCGGTGGACCATCGGCTTCTACAACGTTATCTTCACTGCGCTGCCACCCTTC
GCCATCGGACTCTTCGACAAGCTGTGCTCACCGGAGATCATGCTCAGGCACCCCATCCTG
TACATCCCGTCGCAACAAGGGCTGCTGTTCAACGTGCGCGTGTTCTGGGTGTGGGCGGTC
AACGCGCTGCTGCACTCCGTGCTGCTGTTCTGGCTGCCCGTGGCGCTCGCCGACCACCAC
GTGCTGTGGTCCTCGGGCAAGGACGGCGGCTACCTGGTGCTGGGGAACCTGGTCTACACC
TACGTGGTTCTGACCGTGTGTCTCAAAGCCGGGCTGGCCACGCACTCGTGGACGTGGGTC
ACGCACGTCTCCATATGGGGGTCCTTAGCTCTTTGGCTGCTATTCTTACTTATATACAGT
AACATATACCCAACGATTCTGATCGGAGCCGTGATGCTGGGCATGGACCGGATGGTGTTC
GGCTCCCTGGTCTTCTGGTTCGGCCTCATCCTCATCCCGATAGCGACCCTCATACCGGAC
CTCGTCGTCACCGTCGTGCGCAACTCCGCCTTCAAATCCGCCACCGAGGCCGTGCGGGAG
AGCGAGCTGAAGCAGCGCGCGCCGCCCGCCCTGCTGGCCCAGCCGCGACACTCGTAA
(3357 bp)

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