KEGG   Malassezia restricta: MRET_1467
Entry
MRET_1467         CDS       T06113                                 
Name
(RefSeq) AdoMet-dependent methyltransferase SPB1
  KO
K14857  AdoMet-dependent rRNA methyltransferase SPB1 [EC:2.1.1.-]
Organism
mrt  Malassezia restricta
Brite
KEGG Orthology (KO) [BR:mrt00001]
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03009 Ribosome biogenesis [BR:mrt03009]
    MRET_1467
Ribosome biogenesis [BR:mrt03009]
 Eukaryotic type
  Pre-60S particles
   Other pre-60S particles
    MRET_1467
SSDB
Motif
Pfam: Spb1_C FtsJ DUF3381 ANIS5_cation-bd
Other DBs
NCBI-GeneID: 38738233
NCBI-ProteinID: XP_027483561
LinkDB
Position
II:1030568..1033186
AA seq 872 aa
MGKHEKKAGKGRLDKFYWLAKEQGYRSRAAFKLVQLNKKYNFLENAHCCIDLCAAPGGWL
QVASKHMPPNSLILGVDLVPIKPIPRCITFAEDINSYRCRDQLREHMKDWKADVVLHDGA
PNVGTAWVQDAYAQNELTLQSLRLAVEFLVPGGAFVTKVFRSKDYNNLMWVFQQLFHHVE
ATKPPSSRNVSAEIFVVCQRFKNLARIDPKFLDPRYVFKELDPTGKDMLGSSSRNLLENV
VNPEKSRRKRDGYEDGNYTLYKTISADDYIRADDAVAVLGTYNRITFDSDADKAHLKHPS
TNDDVKANCEDLKVLGRRDFSVLMKWRKMIRESLELDKLPVKDNATNVTVEMEPMNEEDA
IDEELARLNEVASKRARKERRRRNEARAKAVQKLQLNMTTPMDLGEEWQDRALEGEDMFS
LDAVDNARHRDSTTLLDADEAPSSDDEDDEETPEDDSEEDLDDRERRLNELESGMDHMYQ
QYQEHLQRRDSKHLAKEARRKSSKYEEWNGISSKPEGVSDESDDENVAKGFDAAIRRKYH
EETYDSDDAEDDEIEREELREKVASRQKARQSTDHDDDVYATVDTTRVPKQSAASAMWFD
NPIFQDMVPLESLAPKPKASVQVPTPVEDDDEEKEEEDDMELVPSNQLDTIPEQEWSVHD
EDQVAKNQAKVNDYGLQTAEAVSMAHALVNRQMTKTDLVNQGFNRHSFNDKSGLPEWFLE
DENKHYRSNMPLSKEAVEALRARQRALDARPIKKVAEAKARKKHRAALRLERAQKKADAI
NENADLTEREKAENISKIMARSGKKTQKQAPQLVVARGPNRGIKGRPTGTKGRYRMVDRR
MKKELRAQKRIDKRDGKKRSSSHHKRQIPKGY
NT seq 2619 nt   +upstreamnt  +downstreamnt
atgggtaagcacgagaagaaggcgggtaagggccgtctggataaattctactggctcgcc
aaggagcaagggtatcgctctcgtgctgctttcaagctggtacaactcaacaaaaagtac
aattttttagaaaatgctcattgttgtatcgacttgtgtgccgcgccaggcggttggctc
caagtggccagtaagcacatgccgccgaacagcttgattctgggtgtggatctggttccc
atcaagccgatacctcgctgtattacctttgcagaagatatcaactcatatcgatgtcgt
gaccagctcagggagcacatgaaagattggaaggctgatgtggtgcttcatgacggtgcg
cctaatgtcggtactgcttgggtgcaggatgcttatgctcaaaatgagctgaccttgcag
tcactccgtcttgcggtcgaattcctcgtgcctggtggcgcattcgtcaccaaggtattc
cgctccaaagactataataatcttatgtgggtatttcagcagctgttccatcacgttgaa
gcaaccaagcctccatcttcacgtaatgtatcagctgagatcttcgttgtttgtcagcgc
tttaagaacctcgcgcgcatcgatcccaagttccttgacccccgctacgttttcaaagaa
ctcgatcccactggcaaggacatgctcggttccagctcacgtaacctgttggaaaatgtc
gtaaaccctgaaaaaagccgtcgtaaacgcgatggttatgaggatggcaactataccctg
tacaaaaccattagtgccgacgattacattcgtgccgacgatgcagtggctgtactcggc
acatataatcggatcacctttgatagtgatgctgacaaggcacacctcaaacatccctct
actaacgatgatgtcaaggcgaactgcgaagacttgaaggtacttggtcgtcgcgacttc
tctgtcctgatgaagtggcgcaagatgattcgtgagtcgcttgaactggacaaactcccc
gtcaaagataatgcgaccaatgtcacagtggagatggagccgatgaatgaggaagatgct
attgacgaagagcttgcacgtttaaatgaagtggcttccaagcgtgcccgcaaagaacgc
cgtaggcgtaacgaagcgcgcgccaaggccgttcagaagcttcagctcaacatgacaaca
cctatggatttgggtgaagagtggcaagatcgggctttagaaggagaggatatgttctcg
ttggatgctgtagacaatgcgcgtcatcgtgattctacaactctgctcgatgctgacgag
gctcctagtagtgacgacgaagacgacgaagaaactccagaagatgactcagaggaagac
ctggatgaccgtgaacggcgtttgaatgaacttgagtctggtatggaccacatgtaccag
cagtaccaagagcaccttcaacgtcgtgattcgaagcatcttgcgaaagaagcgcgtcga
aagtcatctaagtatgaggaatggaacggtatttcttcaaaacctgaaggcgtttctgat
gaaagtgacgacgaaaatgtggccaagggctttgatgctgccattaggcgcaaataccac
gaagaaacttatgattctgatgatgctgaggatgatgaaatcgagcgcgaagaactacgg
gaaaaggtcgcatctcgacaaaaggcgcgccagtctacggatcatgatgatgatgtttat
gcgacagttgacactactcgcgtgccgaaacaaagcgctgcttcagctatgtggtttgat
aaccctatctttcaggatatggtaccgcttgaatcccttgcgcctaaacccaaggcaagt
gttcaagtcccgacacctgtggaagatgacgacgaagagaaggaagaagaagatgacatg
gagcttgtgccatcgaatcaactcgacacaatccctgagcaagaatggagcgtacatgat
gaagaccaagttgccaaaaaccaagccaaagtcaatgactatggtttacagacggcagaa
gctgtatctatggctcacgctctcgtaaacaggcaaatgaccaagacggaccttgtgaat
caaggattcaaccgccacagtttcaatgataagtcgggtctcccggaatggttcttggag
gatgaaaacaaacactaccgctcaaatatgccgctctcaaaagaagccgtcgaggcactt
cgtgcgcgtcagcgtgcgctggatgcacgtcctattaagaaagtggctgaagccaaggct
cgcaagaagcatcgcgcagctttgcgcctcgagcgtgcgcaaaagaaagctgatgccatc
aacgaaaatgccgatctgactgaacgcgagaaggcggagaatattagcaagattatggct
cgctctggcaagaagacgcaaaagcaggcaccacagcttgtcgtggcccgcggtccgaac
cgtggtatcaaaggtcgtccaacgggcaccaagggtcgctaccgcatggttgaccgacgc
atgaaaaaggaactccgcgcgcaaaagcgtatcgacaagcgggacggtaagaagcgcagt
tcatcgcatcataaacgacagattccaaaaggatactga

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