Mycolicibacterium thermoresistibile: 4412656_01532
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Entry
4412656_01532 CDS
T05542
Symbol
speE
Name
(GenBank) spermidine synthase
KO
K00797
spermidine synthase [EC:
2.5.1.16
]
Organism
mthn
Mycolicibacterium thermoresistibile
Pathway
mthn00270
Cysteine and methionine metabolism
mthn00330
Arginine and proline metabolism
mthn00480
Glutathione metabolism
mthn01100
Metabolic pathways
mthn01110
Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:
mthn00001
]
09100 Metabolism
09105 Amino acid metabolism
00270 Cysteine and methionine metabolism
4412656_01532 (speE)
00330 Arginine and proline metabolism
4412656_01532 (speE)
09106 Metabolism of other amino acids
00480 Glutathione metabolism
4412656_01532 (speE)
Enzymes [BR:
mthn01000
]
2. Transferases
2.5 Transferring alkyl or aryl groups, other than methyl groups
2.5.1 Transferring alkyl or aryl groups, other than methyl groups (only sub-subclass identified to date)
2.5.1.16 spermidine synthase
4412656_01532 (speE)
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GFIT
Motif
Pfam:
Spermine_synth
RrnaAD
Methyltransf_25
Methyltransf_12
Motif
Other DBs
NCBI-ProteinID:
SNW17723
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All DBs
Position
1:complement(1636356..1637939)
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AA seq
527 aa
AA seq
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MTLGRTLSAGTPGAAGSTRRWRALLLAAVAACAACGLIYELALLTLSASVHGGGIVATSL
IVAGYVAALGAGALLVKPLLGHAAITFIAVETLLGIIGGLSAAALYLAFVFIGGSLWVLV
VGTALIGCLVGAEVPLLMTLLQRGRVAGAADTGRVLANLNAADYLGALIGGLSWPFLLLP
QLGMIRGAAVTGVINLTAAAVVAVFLLRHIISGRQLAAALGVLAAALTLLTTLLVRADGI
ETTSRQRLYADPIIAYERSPYQEIVITRRGADLRLYLDGGLQFSTRDEHRYTESLVHPAL
DESTRSVLILGGGDGLAARELLRYPGIDSIVQVELDPAVIELARTTLRPVNGGALDDPRV
TVVTDDAMRWLREPPPDLRPPGGFDAVIVDLPDPDTPVLGRLYSTEFYALVTRALAPGGR
MVVQAGSPYSTPTAFWRTVSTIASAGYAVTPYHVHVPTFGDWGFVLATRGTEPPRPTVPA
NAPELRFLDQRVLDAATVFGKDRPPLTLEPSTLDRPRVVDDIRRGWQ
NT seq
1584 nt
NT seq
+upstream
nt +downstream
nt
gtgacgctcggcaggaccctctccgccgggacgccgggcgccgccgggtccacgcggcgc
tggcgggcgctgctgctggccgcggtggcggcctgcgcggcctgcggactgatctatgaa
ctcgcgctgctcaccctgtcggcgagcgtgcacggcggcggcatcgtcgccacctcgttg
atcgtggcgggttacgtggcggcgttgggcgccggcgccctgctggtcaaaccactgctc
gggcacgccgccatcacgttcatcgcggtggagacactgctcgggatcatcggcgggctc
tcggccgcggcgctgtacctcgcgttcgtgttcatcggcggttcactgtgggtgctggtg
gtgggcaccgcgctgatcggatgcctggtcggcgccgaggtgccgctgctgatgacactg
ctgcagcgcggccgtgtcgccggcgccgccgacaccggccgggtgctggccaacctcaac
gccgccgactatctgggcgcgctgatcggcggcctgtcctggccgttcctcctgctgccc
cagctcggcatgatccggggcgccgcggtcaccggcgtgatcaacctcaccgcggccgcc
gtggtcgcggtgttcctgttgcggcacatcatcagtggccgccagctcgccgccgcgctg
ggggtcctcgccgcggcactgaccctgctcaccacgctgctggtgcgcgccgacggtatc
gagaccaccagccggcagcggctctacgccgatccgatcatcgcctacgagcggtcgccg
tatcaggagatcgtgatcacccggcggggcgcggatctgcggctgtatctggatggcggc
ctgcagttctcgacccgcgacgagcaccgctacaccgagagtctggtgcatccggcgctc
gacgagtcgacccgctcggtgctgatcctcggcggtggcgacggtctggcggcacgggag
ctgctgcgctaccccggcatcgacagcatcgtgcaggtcgaactcgacccggcggtgatc
gagttggcgcgcaccacgttacgcccggtcaacggcggcgcgctggacgatccccgggtc
acggtcgtcaccgacgatgcgatgcggtggctgcgtgaaccgccgccggatctgcgtccg
cccggtggattcgacgcggtgatcgtcgatctgcccgatccggacaccccggtgctgggc
cggctctactcgaccgagttctatgcgctcgtcacccgtgcgctcgcgcccggcgggcgc
atggtggttcaggccggcagcccctactcgacgccgacggcgttctggcgcaccgtttcg
acgatcgcatccgccgggtacgcggtcacgccgtaccacgtgcacgtccccaccttcggc
gactggggtttcgtgctggcgacccgtggcaccgagccgccacggcccaccgtgccggcc
aacgccccggagctgcggttcttggatcagcgagttctggacgccgccaccgtgttcggc
aaggaccgtccgcctctcacactggaaccctccaccctggatcggccccgggtggtggac
gacatccggcgtggctggcagtga
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