KEGG   Camelina sativa (false flax): 104785204
Entry
104785204         CDS       T05044                                 
Name
(RefSeq) 40S ribosomal protein S2-3
  KO
K02981  small subunit ribosomal protein S2e
Organism
csat  Camelina sativa (false flax)
Pathway
csat03010  Ribosome
Brite
KEGG Orthology (KO) [BR:csat00001]
 09120 Genetic Information Processing
  09122 Translation
   03010 Ribosome
    104785204
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03011 Ribosome [BR:csat03011]
    104785204
Ribosome [BR:csat03011]
 Ribosomal proteins
  Eukaryotes
   Small subunit
    104785204
SSDB
Motif
Pfam: Ribosomal_S5 Ribosomal_S5_C
Other DBs
NCBI-GeneID: 104785204
NCBI-ProteinID: XP_010508673
LinkDB
Position
5:complement(3193680..3195277)
AA seq 286 aa
MAERGGERGGAGGDRGGFGRGIGGGGRGDRGDRGRGGPRGRGGRRGGRATEEQKWVPVTK
LGRLVQTGEIKKLEQIYLHSLPVKEYQIIDTLVGPSLKDEVMKIMPVQKQTRAGQRTRFK
AFVVVGDGNGHVGLGVKCSKEVATAIRGAIILAKLSVVPVRRGYWGNKIGKPHTVPCKVT
GKCGSVTVRMVPAPRGAGIVAARVPKKVLQFAGIDDVFTSSRGSTKTLGNFVKATFDCLQ
KTYGFLTPEFWKETRFVKSPYQEYTDLLASKALPSNKVATDVEDQA
NT seq 861 nt   +upstreamnt  +downstreamnt
atggctgaacgtggtggagaacgtggcggcgctggtggagaccgtggtggtttcggacgt
ggaatcggaggaggtggccgtggagatcgtggtgaccgtggaagaggtggaccaagaggc
cgtggtggtcgacgtggaggccgagccactgaagaacagaaatgggttccagtgaccaag
cttggtcgtctcgtgcaaaccggagagatcaagaagctagagcagatctaccttcactca
ctcccggttaaggagtaccagatcattgatacccttgttggtccttcattgaaggatgaa
gtgatgaagatcatgcctgttcagaaacaaaccagagctggtcaaaggactcgattcaag
gcctttgttgtcgtcggagatggtaatggtcatgttggtttgggagtgaaatgctccaag
gaggttgctacggctattagaggagcgattattctcgctaagctctctgttgtcccagtt
aggagaggttactggggtaacaagatcgggaagccacatacggttccttgtaaggtgact
ggcaagtgtggatctgttacagtgaggatggttcctgctcctcgtggtgctggtattgtg
gctgctagagttcctaagaaggttcttcaattcgctggaattgatgatgttttcacttct
tccaggggatccaccaagactcttggaaactttgtcaaggctacattcgactgtcttcag
aagacatacggattccttacaccagagttctggaaagagacgagatttgttaaatcccca
taccaggagtacacagatctcttggcgtccaaggctcttccgagcaacaaagtggcgacc
gatgttgaagaccaagcctag

DBGET integrated database retrieval system