KEGG   Clupea harengus (Atlantic herring): 105891680
Entry
105891680         CDS       T09045                                 
Name
(RefSeq) LOW QUALITY PROTEIN: putative claudin-24
  KO
K06087  claudin
Organism
char  Clupea harengus (Atlantic herring)
Pathway
char03272  Virion - Hepatitis viruses
char04382  Cornified envelope formation
char04514  Cell adhesion molecules
char04530  Tight junction
Brite
KEGG Orthology (KO) [BR:char00001]
 09120 Genetic Information Processing
  09125 Information processing in viruses
   03272 Virion - Hepatitis viruses
    105891680
 09130 Environmental Information Processing
  09133 Signaling molecules and interaction
   04514 Cell adhesion molecules
    105891680
 09140 Cellular Processes
  09144 Cellular community - eukaryotes
   04530 Tight junction
    105891680
 09150 Organismal Systems
  09158 Development and regeneration
   04382 Cornified envelope formation
    105891680
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   03037 Cilium and associated proteins [BR:char03037]
    105891680
   04147 Exosome [BR:char04147]
    105891680
   04515 Cell adhesion molecules [BR:char04515]
    105891680
Cilium and associated proteins [BR:char03037]
 Other cilia and associated proteins
  Stereociliary proteins
   105891680
Exosome [BR:char04147]
 Exosomal proteins
  Exosomal proteins of ovarian cancer cells
   105891680
  Exosomal proteins of colorectal cancer cells
   105891680
Cell adhesion molecules [BR:char04515]
 Immunoglobulin superfamily
  L1 family
   105891680
SSDB
Motif
Pfam: PMP22_Claudin L_HMGIC_fpl TMEM37 DUF5360
Other DBs
NCBI-GeneID: 105891680
NCBI-ProteinID: XP_012673314
UniProt: A0A6P8FTM9 A0A6P3VJQ3
LinkDB
Position
7:complement(26476029..26477156)
AA seq 218 aa
MVFLTTKLVERVSLFVSFGGLVTSFVTFFLPLWKTLNSDLNEMENWYEGLWHMCIFTEEL
GLHCKAYESTLALSADKLASRALMFISIGTGLLGVLVAFFGLEGVNVARGHRRLKRALLI
TGGVLIWVSGLTTLAPVSLVAYLTVVEFWDENIPDVVPRWEFGEAMFSXWIAGLLLVVGG
SFLFVAVCMGDYEAEQAEDLAFSKETPRTQYYLKTEVL
NT seq 657 nt   +upstreamnt  +downstreamnt
atggtgtttctaaccaccaagctcgtggagagagtgtccctcttcgtgtctttcggggga
ctggtgacctcgttcgtcacgttcttcttgcccctgtggaagaccctcaactcggacctg
aacgagatggagaactggtacgaggggctgtggcacatgtgcatcttcacagaggagttg
ggcctgcactgcaaagcctacgagtccaccttggcgctgagcgctgacaagctagcgtcg
cgggcgctcatgttcatctccataggcacggggctgctgggggtgctggtggcattcttc
gggctggagggagtcaacgtcgcgcgcggacacaggcgactgaagagggctctgctcatc
acgggaggggtcctcatctgggtgtcgggcctcaccaccctggcccccgtgtcccttgtg
gcctatttgactgtggtggagttctgggatgagaacatccccgacgtggtgccgcgctgg
gagtttggcgaggccatgttttcgnggtggatcgcgggactccttctggtggttggtggg
tctttcttgttcgtggctgtatgtatgggggattacgaggcggagcaggctgaagattta
gccttctcgaaggagacaccaaggacacagtactacctaaagacagaggtcctatag

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