Streptomyces cinereoruber: CP977_27945
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Entry
CP977_27945 CDS
T07115
Name
(GenBank) methyltransferase domain-containing protein
KO
K15942
O-methyltransferase / aklanonic acid methyltransferase [EC:2.1.1.-
2.1.1.288
]
Organism
scin
Streptomyces cinereoruber
Pathway
scin01057
Biosynthesis of type II polyketide products
scin01100
Metabolic pathways
scin01110
Biosynthesis of secondary metabolites
Module
scin_M00781
Nogalavinone/aklavinone biosynthesis, deoxynogalonate/deoxyaklanonate => nogalavinone/aklavinone
Brite
KEGG Orthology (KO) [BR:
scin00001
]
09100 Metabolism
09109 Metabolism of terpenoids and polyketides
01057 Biosynthesis of type II polyketide products
CP977_27945
09180 Brite Hierarchies
09181 Protein families: metabolism
01008 Polyketide biosynthesis proteins [BR:
scin01008
]
CP977_27945
Enzymes [BR:
scin01000
]
2. Transferases
2.1 Transferring one-carbon groups
2.1.1 Methyltransferases
2.1.1.288 aklanonic acid methyltransferase
CP977_27945
Polyketide biosynthesis proteins [BR:
scin01008
]
Polyketide tailoring proteins
Methylase
CP977_27945
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Methyltransf_31
Methyltransf_25
Methyltransf_11
Ubie_methyltran
Methyltransf_12
Methyltransf_23
PCMT
CMAS
MTS
Methyltransf_32
Methyltransf_4
PrmA
FtsJ
mRNA_G-N7_MeTrfase
Methyltransf_9
UPF0020
MetW
TPMT
N6_Mtase
Methyltransf_2
GCD14
Methyltr_RsmB-F
Cons_hypoth95
Fibrillarin
Motif
Other DBs
NCBI-ProteinID:
QEV35537
UniProt:
A0AAV4KEC4
LinkDB
All DBs
Position
complement(6198306..6199163)
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AA seq
285 aa
AA seq
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MDETKYKSTVTEAFNEAAATYDQMGVEFFTPMGRRLVERIAPRPGERVLDVGCGRGAVLF
EAADRVGPSGHVLGIDIAPAMVEAARERAAALGTRHVEVRVMDGEHPDLPPASFDAVTGS
YSVIFLPDAPKALGRYAALLRPAGRIAFTSPVFTDDTFPFLPPIFTELIPERLLRNLPAE
WQPEALKRRFNSWLGDGDELTGTMLRAGFEDVEITDEHVQLVAADGTTWVDWSHTQGMRL
LWRHLPAYESAQLRKRLITELDRLRGDGPLRLPTPVRFVLASVGG
NT seq
858 nt
NT seq
+upstream
nt +downstream
nt
atggacgagacgaagtacaagtcaacggtgaccgaggcgttcaacgaggccgccgccacc
tacgaccagatgggcgtcgagttcttcacgcccatggggcggcggctcgtggagcggatc
gccccgcgcccgggcgagcgggtcctcgacgtcggctgcggccgcggcgcggtcctgttc
gaggccgccgaccgggtcggcccctcggggcacgtgctcggcatcgacatcgcgcccgcg
atggtggaggcggcccgcgagcgggcggccgcgctgggcacccgccacgtcgaggtgcgg
gtcatggacggcgagcaccccgatctcccgccggcctcgttcgacgcggtgacgggcagc
tacagcgtgatcttcctgccggacgcgccgaaggcgctggggcggtacgcggcgctgctg
cgcccggccggccggatcgccttcaccagtcccgtcttcacggacgacaccttcccgttc
ctgccgccgatcttcaccgagctgatcccggagcggctgctgcgcaacctgccggcggag
tggcagccggaggcgctgaagcgccggttcaacagctggctcggggacggggacgagctg
accggcacgatgctccgggccggtttcgaggacgtcgagatcaccgacgagcacgtccag
ttggtggccgcggacggcacgacgtgggtggactggtcgcacacccagggcatgcggctg
ctctggcggcacctgccggcgtacgagagcgcgcagctgcggaagcgcctgatcacggag
ctggaccggctgcggggggacggtccgctgcgcctgccgacgccggtgcggttcgtgctg
gcctccgtcgggggctga
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