KEGG   Eleginops maclovinus (Patagonian blennie): 134870501
Entry
134870501         CDS       T09869                                 
Symbol
rpp30
Name
(RefSeq) ribonuclease P protein subunit p30
  KO
K03539  ribonuclease P/MRP protein subunit RPP1 [EC:3.1.26.5]
Organism
emac  Eleginops maclovinus (Patagonian blennie)
Pathway
emac03008  Ribosome biogenesis in eukaryotes
Brite
KEGG Orthology (KO) [BR:emac00001]
 09120 Genetic Information Processing
  09122 Translation
   03008 Ribosome biogenesis in eukaryotes
    134870501 (rpp30)
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03009 Ribosome biogenesis [BR:emac03009]
    134870501 (rpp30)
   03016 Transfer RNA biogenesis [BR:emac03016]
    134870501 (rpp30)
   03029 Mitochondrial biogenesis [BR:emac03029]
    134870501 (rpp30)
Enzymes [BR:emac01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.26  Endoribonucleases producing 5'-phosphomonoesters
    3.1.26.5  ribonuclease P
     134870501 (rpp30)
Ribosome biogenesis [BR:emac03009]
 Eukaryotic type
  Pre-60S particles
   RNases
    RNase MRP
     134870501 (rpp30)
Transfer RNA biogenesis [BR:emac03016]
 Eukaryotic type
  5'processing factors
   Ribonucrease P
    134870501 (rpp30)
Mitochondrial biogenesis [BR:emac03029]
 Mitochondrial DNA transcription, translation, and replication factors
  Mitochondrial transcription and translation factors
   RNase MRP
    134870501 (rpp30)
SSDB
Motif
Pfam: RNase_P_p30
Other DBs
NCBI-GeneID: 134870501
NCBI-ProteinID: XP_063748755
LinkDB
Position
10:complement(319366..326965)
AA seq 273 aa
MSVFMDLNLVHSPDQSRLQRLVETAAHLGFSTVAINYVFEPTAKKKQIPSPMPIKDLIPE
LPIVQGRSRPIRVLNRLTVVMSDSSHFRPTAAEYRGFDLLAVQPTTEKLFHAACMICDVD
IICISVTEKLPFFFKRAPVNGAIERGVAFEVSYAAAIRDSTRRRYTIANATALMESCRGK
NVILSSAAETPLELRGPYDITNLGVLFGLSDGDSKEAVSSTCRSVVLHAETRKTASGIIY
TVQVPEAPPCRAPEDTGEAPAAKRAKPGAVIDS
NT seq 822 nt   +upstreamnt  +downstreamnt
atgtctgtgtttatggatctgaatctggtccacagtccggaccagagccgtctgcagagg
ctggtggagactgcagctcacctgggtttctccaccgtcgccatcaactatgtgtttgaa
ccgacagccaagaagaaacagattccctccccaatgccgatcaaagatctgatcccagag
ctgcccatcgtacagggtcgctctcgtccaatcagagtgctgaacagactgactgtggtg
atgtcagactccagtcactttaggccgacggctgcagagtaccggggtttcgacctgctg
gccgtgcagccaaccacagagaagctgttccacgcagcctgtatgatctgtgacgtggac
atcatctgtatctcagtgacggagaagctccccttcttcttcaagagagcgccggtcaac
ggggccatagagcgaggtgttgcgttcgaggtctcttatgctgcagccatcagagactcc
accaggcggcgctacaccatcgccaacgccaccgccctgatggagagctgcagagggaag
aacgtgatcctgagcagtgccgccgagacgcctctggagctccgggggccctatgacatc
accaacctaggtgtgttgttcggtctgtcggacggagactctaaagaagccgtttcctcc
acctgcagatcagtggtgctgcacgcagaaaccaggaagacggcaagcggcatcatctac
acggtgcaggttccggaggccccgccctgtagagcacctgaggacacaggtgaagctccg
gcagccaagagagccaagcctggtgcagtgattgacagctga

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