KEGG   Chelonia mydas (green sea turtle): 102935550
Entry
102935550         CDS       T02989                                 
Symbol
BTG4
Name
(RefSeq) protein BTG4
  KO
K14443  protein Tob/BTG
Organism
cmy  Chelonia mydas (green sea turtle)
Pathway
cmy03018  RNA degradation
Brite
KEGG Orthology (KO) [BR:cmy00001]
 09120 Genetic Information Processing
  09123 Folding, sorting and degradation
   03018 RNA degradation
    102935550 (BTG4)
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03019 Messenger RNA biogenesis [BR:cmy03019]
    102935550 (BTG4)
Messenger RNA biogenesis [BR:cmy03019]
 Eukaryotic type
  mRNA surveillance and transport factors
   mRNA cycle factors
    P-body specific factors
     102935550 (BTG4)
  mRNA degradation factors
   3'-5' decay
    Other 3'-5' decay factors
     102935550 (BTG4)
SSDB
Motif
Pfam: BTG LTI65_PGEED
Other DBs
NCBI-GeneID: 102935550
NCBI-ProteinID: XP_043390113
LinkDB
Position
22:complement(13648272..13652750)
AA seq 233 aa
MKDEIAATVFFITRLVKKQDKLSKLKTEKFAAKLTTILFEKYKNHWYLDNPSRGQAFRCI
RINKHQTRDPVLEQACYDSNVDFDNLGLPREITIWVDPFDVCCRYGEKNLPFTVVHFEGS
EDDRELSQRISHAVDKATSDYHSGTSSDEEGYTKEAKAIPTVSNPNSVYQFSDYCKLPIQ
PWSRYPHKKSYTTNGLHQASVYYPQHKGFKCYWPTAAFSGPRMDRYHWVNTNR
NT seq 702 nt   +upstreamnt  +downstreamnt
atgaaagatgaaattgctgccacagtctttttcatcacaaggctggtgaagaagcaagac
aaactgagcaagctcaaaactgagaaatttgcagctaagctgacaacaatactgtttgaa
aagtataagaaccactggtacctagacaacccatctaggggacaagccttcaggtgtata
cggataaacaaacatcagacaagagatcctgtactggaacaagcttgttatgacagtaat
gtggattttgataaccttggcttgccaagagagatcaccatatgggttgatccatttgac
gtgtgctgcaggtatggtgaaaagaatctgcctttcacggtggttcactttgaaggttct
gaagacgaccgagaactctctcaacgcatcagccatgctgttgataaagcaacctcagat
tatcattctggcacctcctcagatgaggagggctataccaaggaagctaaagctatccct
acggtcagcaacccaaacagtgtctatcagttcagtgactactgcaagctgcccattcag
ccgtggtctcggtatcctcacaagaagagctacacaaccaatggacttcatcaggcaagt
gtttactatccccagcacaagggcttcaaatgctactggccaacagctgctttttctgga
cctcgtatggatcgatatcactgggtgaataccaaccgatag

DBGET integrated database retrieval system