KEGG   Thalassotalea nanhaiensis: RI845_10055
Entry
RI845_10055       CDS       T10168                                 
Name
(GenBank) VWA domain-containing protein
  KO
K07114  Ca-activated chloride channel homolog
Organism
tnn  Thalassotalea nanhaiensis
Brite
KEGG Orthology (KO) [BR:tnn00001]
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   02000 Transporters [BR:tnn02000]
    RI845_10055
Transporters [BR:tnn02000]
 Other transporters
  Pores ion channels [TC:1]
   RI845_10055
SSDB
Motif
Pfam: VWA_2 VWA vWA_Ro60
Other DBs
NCBI-ProteinID: WNC66881
UniProt: A0ABY9TDR9
LinkDB
Position
2292733..2293695
AA seq 320 aa
MNELMQFQHFHFLRPFWLLALIVGYWLINAFTKRSDTLATWRPIMSKEIIDHLNVEGNTN
HWLSPRRLGQYCLFLLCLILSGPTWQQQPSPLTEDNSALVIALDVSNTMQQSDVQPTRLA
RAKHKIIELLKLRGDSNTALIAYSGSAHTVMPITKDTEMISHFLDALDSNLMPMQGKLPE
KVIPITQSMLSPTKVPGSLLLIGDGATAETVAKFSEFFNVQPHQLVVWAIGNTEQTLDSD
KNIIPMQLAQLENLADESGGRIVELTFDNHDVEQVNRFIENNLVIVEDAGRPWLDAGYPL
VFILALMFLFWFRRGWTLQW
NT seq 963 nt   +upstreamnt  +downstreamnt
atgaacgagttaatgcagtttcaacactttcattttttacgccccttttggttattggcc
cttatcgttggatattggttaatcaatgcttttaccaaacgcagtgatactttagccact
tggcgccctattatgtcaaaagaaataattgatcacctaaatgtagaaggcaatacaaat
cattggttatcccctagaaggttaggtcaatactgcttatttttactgtgtttaatatta
tctggcccaacttggcaacaacaaccgtcgcctctaactgaagacaattcagccttagtg
atagcgctggacgtgtcaaatacgatgcagcaaagtgatgtgcaacctactcgtttagca
cgcgctaaacataaaatcattgagttactaaaattgcgaggtgacagtaataccgcccta
atagcctactcaggtagtgctcatacggtaatgccaattactaaagacacagagatgatc
agccactttttagatgccttggatagcaatttaatgccaatgcaaggcaaattaccggaa
aaagtaatacctataacccaatctatgttgtcccctactaaagtgccagggtcgttatta
ttgattggcgatggtgctaccgcagaaacagtagccaaattctctgaattttttaatgtt
caaccacatcaattggttgtttgggcaataggaaatacagaacaaacactggattcagat
aaaaatataatcccaatgcaactagcccagttggaaaatttagccgatgaaagtggtggt
cgaatcgttgaacttacctttgataatcatgatgttgaacaggtaaaccgttttattgaa
aataacctagtgatcgtagaagacgcaggtcgtccctggcttgatgccggttaccctctg
gtatttattcttgcgttaatgtttttattttggtttcgtcgaggctggactttgcaatgg
taa

DBGET integrated database retrieval system