KEGG   Lycorma delicatula (spotted lanternfly): 142325226
Entry
142325226         CDS       T11193                                 
Symbol
Atpalpha
Name
(RefSeq) sodium/potassium-transporting ATPase subunit alpha isoform X1
  KO
K01539  sodium/potassium-transporting ATPase subunit alpha [EC:7.2.2.13]
Organism
lda  Lycorma delicatula (spotted lanternfly)
Pathway
lda04820  Cytoskeleton in muscle cells
Brite
KEGG Orthology (KO) [BR:lda00001]
 09140 Cellular Processes
  09142 Cell motility
   04820 Cytoskeleton in muscle cells
    142325226 (Atpalpha)
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:lda04147]
    142325226 (Atpalpha)
Enzymes [BR:lda01000]
 7. Translocases
  7.2  Catalysing the translocation of inorganic cations
   7.2.2  Linked to the hydrolysis of a nucleoside triphosphate
    7.2.2.13  Na+/K+-exchanging ATPase
     142325226 (Atpalpha)
Exosome [BR:lda04147]
 Exosomal proteins
  Exosomal proteins of haemopoietic cells  (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
   142325226 (Atpalpha)
  Exosomal proteins of other body fluids (saliva and urine)
   142325226 (Atpalpha)
  Exosomal proteins of colorectal cancer cells
   142325226 (Atpalpha)
  Exosomal proteins of bladder cancer cells
   142325226 (Atpalpha)
SSDB
Motif
Pfam: E1-E2_ATPase Cation_ATPase_C Cation_ATPase Cation_ATPase_N Hydrolase Hydrolase_3 HAD MgtE SLX9 Sigma70_r4
Other DBs
NCBI-GeneID: 142325226
NCBI-ProteinID: XP_075222815
LinkDB
Position
5:complement(95401022..95731256)
AA seq 1038 aa
MFSNKLMGRSDSYRVATGPVIYDDNKTADGKYKSRRKRTKTQKKGDLDDLKQELDIDHHK
ISVEELYQRFQTHPDTGLTHAKAKENLERDGPNSLTPPKTTPEWVKFCKQLFGGFALLLW
IGAILCFIAYSIQASTVEEPADDNLYLGIVLAAVVIVTGIFSYYQESKSSRIMESFKNMV
PQFATVIRQGEKLTLRAEDIVLGDVVDVKFGDRIPADIRIIEARGFKVDNSSLTGESEPQ
SRGVDFTHENPLETKNLAFFSTNAVEGTAKGVVISCGDNTVMGRIAGLASGLDTGETPIA
KEIHHFIHIITGVAVFLGVSFFIIAFILGYHWLDAVIFLIGIIVANVPEGLLATVTVCLT
LTAKRMASKNCLVKNLEAVETLGSTSTICSDKTGTLTQNRMTVAHMWFDNQIIEADTTED
QSGVQYDRTSPGFKALAKIATLCNRAEFKGGQEGVPILKKEVNGDASEAALLKCMELALG
DVMSIRRRNRKVCEIPFNSTNKYQVSIHETEDPNDPRHLMVMKGAPERILDRCSTIFIGG
KEKLLDEEMKEAFNNAYLELGGLGERVLGFCDFMLPSDKFPLGFKFDCDDPNFPLSGMRF
VGLMSMIDPPRAAVPDAVAKCRSAGIKVIMVTGDHPITAKAIAKSVGIISEGNETVEDIA
QRLNIPVSEVNPREAKAAVIHGTELRDIGPEQLDEILRYHTEIVFARTSPQQKLIIVEGC
QRMGAIVAVTGDGVNDSPALKKADIGVAMGIAGSDVSKQAADMILLDDNFASIVTGVEEG
RLIFDNLKKSIAYTLTSNIPEISPFLAFILLDIPLPLGTVTILCIDLGTDMVPAISLAYE
EAESDIMKRQPRNPFTDKLVNERLISMAYGQIGMIQAAAGFFVYFVIMAENGFLPRKLFG
IRKLWDSKAVNDLADSYGQEWTYRDRKALEFTCHTAFFVSIVVVQWADLIICKTRRNSII
HQGMRNWALNFGLVFETALAAFLSYTPGMDKGLRMYPLKFVWWLPPIPFMISIFVYDEVR
RFYLRRNPGGWLEQETYY
NT seq 3117 nt   +upstreamnt  +downstreamnt
atgtttagtaacaaattaatggggagatctgattcatatcgtgttgctactggacctgtt
atttatgacgacaacaaaacagcagatggaaaatataagtcaaggcggaaaagaaccaaa
acacagaaaaaaggagatttagatgacctgaaacaagaattggatattgatcaccacaaa
atctcagtagaagaattatatcagagatttcaaacacatccagacacaggcctgacacat
gcgaaggcaaaagaaaacctagaacgagatggacccaattcattgacaccaccaaagacg
acaccagaatgggtaaaattttgcaaacagttgtttggaggttttgcccttcttctatgg
ataggtgcaatcctttgctttattgcatattctatccaagccagtacagtcgaggagcct
gccgacgacaatttgtacctgggcatagtgttggcagctgtggttattgtcactggtatc
ttctcatattatcaagaaagcaagagttcacgaattatggaatccttcaaaaatatggtt
cctcagtttgccactgtcattcgacaaggtgaaaaattgacacttagagcagaagatatt
gtgctcggtgatgttgtggatgtaaagtttggtgataggatccctgctgatatacgtatc
attgaagctcgaggttttaaggttgacaattcatcattgacaggagagtctgagccacag
agccgtggtgtagatttcacacatgagaatcctcttgagacaaaaaatcttgcatttttc
tctaccaatgcagtagaaggtacagcgaagggagttgtgatcagttgtggagacaacact
gttatgggtagaattgctggtcttgcatcaggtttggacactggtgaaacaccaattgct
aaggagattcatcactttattcatatcattactggtgttgccgtcttccttggagtgtca
ttcttcataattgcctttattcttggttatcattggttggatgccgttatcttccttatt
ggtattattgtggctaatgtacctgagggattgttggctactgtcactgtatgtttaaca
ttaacagctaaacgaatggcatcaaagaactgcctggtgaagaacttggaagctgtagag
acattaggttcaacatctactatttgttcagataaaactggtactttgactcagaatcga
atgactgttgctcatatgtggtttgataatcagattattgaagctgacactacagaagat
cagtcaggtgtccagtatgatagaacaagtcctggttttaaagcacttgcaaagattgca
actttatgcaacagagctgaatttaaaggtggccaggaaggtgtcccaattttgaagaag
gaagtaaatggtgatgcatctgaagctgctcttttgaaatgtatggaacttgcattagga
gatgtaatgtcaatcagaagaagaaacagaaaagtttgtgaaattccatttaattctaca
aataaatatcaggtatctatacatgaaactgaagatcctaatgacccaaggcacttgatg
gttatgaagggtgctccagaacgaattcttgatcgttgctcaactatatttattggtgga
aaggaaaagcttttggatgaagaaatgaaagaggcctttaataatgcttaccttgaactt
ggtggtcttggtgaacgtgtacttggattctgtgatttcatgttgccatcagacaaattc
ccacttggtttcaaatttgactgtgatgatcctaatttcccactgtctggtatgaggttt
gttggtttaatgtccatgattgatcctcctcgtgcagctgtaccggatgctgttgctaag
tgccgatcagctggtattaaagttataatggtcacaggtgaccaccctatcactgccaaa
gccattgccaaatctgttggaatcatttcagaaggaaatgaaactgttgaagatattgct
cagcgattaaatattccagtatcagaagtaaatccaagagaagccaaagcagctgtcatt
catggcactgaacttagagatattggacctgaacaacttgatgaaattctcaggtaccac
actgaaattgtgttcgctcgtacatcacctcaacaaaagttgatcattgtagaaggttgt
cagagaatgggagccattgtcgctgtgactggtgatggtgttaatgattcacctgcattg
aagaaagctgatattggtgtcgctatgggtattgctggttctgatgtgtcaaaacaagct
gccgacatgattctgcttgatgataattttgcatcgattgtaactggtgttgaagaaggt
agattgatttttgacaacttgaaaaaatcaattgcttacactctgacatctaatattcct
gagatttcaccgttcttggccttcattttgttggatattccacttccacttggaactgtt
actatcctctgcattgatcttggaactgacatggtgcccgctatatctctggcctatgag
gaagccgagtctgatatcatgaagcgacaacctcgaaatcctttcacagataaactcgtg
aacgaaaggttgatttcaatggcttatggccagattggtatgatacaagctgctgctgga
ttttttgtgtactttgttataatggctgaaaatggattcctgcctcgaaaattgtttggt
atcagaaagttatgggattctaaagctgtcaatgatcttgctgactcttatggacaagaa
tggacctatcgggaccgaaaagcacttgaatttacatgccatactgctttctttgtctca
attgttgttgtacagtgggctgatttgataatttgtaaaacacgaagaaattctatcatt
catcaaggaatgagaaattgggccttgaattttggtttggtatttgaaacagccctggca
gctttcttgtcatacactcctggtatggataaaggtcttcgaatgtatccactcaagttt
gtatggtggcttccacctattccgttcatgatttccatatttgtatatgatgaggtccgt
cgtttctatttgcgtcgaaaccctggtggctggcttgaacaggagacttactattaa

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