KEGG   Alysiella filiformis: H3L97_00405
Entry
H3L97_00405       CDS       T06725                                 
Name
(GenBank) polyamine aminopropyltransferase
  KO
K00797  spermidine synthase [EC:2.5.1.16]
Organism
aff  Alysiella filiformis
Pathway
aff00270  Cysteine and methionine metabolism
aff00330  Arginine and proline metabolism
aff00480  Glutathione metabolism
aff01100  Metabolic pathways
aff01110  Biosynthesis of secondary metabolites
Module
aff_M00133  Polyamine biosynthesis, arginine => agmatine => putrescine => spermidine
Brite
KEGG Orthology (KO) [BR:aff00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00270 Cysteine and methionine metabolism
    H3L97_00405
   00330 Arginine and proline metabolism
    H3L97_00405
  09106 Metabolism of other amino acids
   00480 Glutathione metabolism
    H3L97_00405
Enzymes [BR:aff01000]
 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
     H3L97_00405
SSDB
Motif
Pfam: Spermine_synth Methyltransf_25 MTS RrnaAD Methyltransf_12
Other DBs
NCBI-ProteinID: QMT31415
LinkDB
Position
64090..65604
AA seq 504 aa
MKFSRTLILSVFIVASCGLAYELIMAALASYLLGDSIFQYSFIIGLYLFSMGIGAHITRY
ISDQDTLTRFIEIELLVGLLGGISALFLFVAFGFAAAPFRTLLYALVFIIGTIVGMEIPL
VMRVLNHQDIDFKEIVSRVLTFDYLGALAVSLLFPLVLAPKLGMARSALLFGLLNAAVAW
LTARVFRQHLPNFKSLNFRAYFVLMMLLLAFVYANRLVFAAEQKYFGDPVVYESHSPYQR
LVVTQWKDDIRLYINGNLQFSSRDEKRYHEALVIPAMQMAAQHQRVLILGGGDGLAAREV
LKFPQVQSVTLIDLDPEMTQTFQTAPKLTALNQNALNHPKMRIINDDAAQWLEKNQEKFD
VMIVDLPDPSNFALGKLYSVPMYRLTARHLAEGGKIVIQSTSPYFAPNAYWSVVATLEAA
GLHTAPYHAYVPSFGEWGFVLASAKNDFRLPEKVDVPSHFLNATTLRQMFDFPPDMARRN
VEPNYLNNQKLVAYFEQDWAEVIR
NT seq 1515 nt   +upstreamnt  +downstreamnt
atgaaattttcacgcaccctgattttgtctgtgtttatcgtggcaagctgcggtttggct
tacgagctgattatggcggcattggcaagctatttgttgggcgacagcatttttcaatat
tcgtttatcattggtttgtatttgttttcaatggggattggggcgcacatcacgcgctac
atttcagaccaagacacgctcacacggttcatagaaattgaattgctggtgggtttattg
ggtggcatttctgccttgtttttgtttgtggcgtttggttttgcggctgcgccatttcgc
actttgctttacgcgctggttttcatcattggcacgatagtgggcatggaaattccgctt
gtgatgcgcgtactcaatcatcaagatattgattttaaagaaatcgtatcgcgtgttttg
acttttgattatttgggggcattggcggtatcgttgttgtttccgcttgtgcttgcgccc
aaattgggcatggcgcgttcggctttgctgtttggtttgctcaatgcggcggtggcgtgg
ctgacggcacgggttttcaggcagcatttgcccaatttcaaatcattgaattttcgtgct
tattttgttttgatgatgttgttgctggcatttgtgtatgccaaccgtttggtgtttgcg
gcagagcagaaatattttggcgaccctgtggtttacgaaagccattcgccctatcaacgc
ttggtggtaacgcaatggaaagacgatatccgattgtacattaacggcaatttgcaattt
tcatcgcgcgatgaaaagcgttatcacgaggcgttggtcattcccgccatgcaaatggca
gcgcaacaccagcgcgtgttgattttgggtggcggagacggcttggcagcgcgtgaagtg
ctgaaattcccacaagttcaaagcgttaccctgattgacctagaccctgaaatgacccaa
acctttcagactgcccccaaattgaccgcgctcaatcaaaacgcgctcaaccaccccaaa
atgcggattatcaatgacgatgccgcccaatggcttgaaaaaaatcaagaaaaatttgat
gtgatgattgtggatttgcccgacccgtccaattttgcgctgggcaaactgtattccgtg
ccgatgtatcgcttgacggcacggcatttggcagaagggggcaaaatcgtgattcaatcc
acttcgccctattttgcgcccaatgcgtattggtcggtggtggcgactttggaggcggca
gggctgcacaccgcgccctatcacgcttatgtacccagttttggcgaatggggttttgtg
ctggcaagcgcgaaaaacgatttcaggctgcctgaaaaagtggacgttcccagccatttt
ctcaacgccaccactttgcggcaaatgtttgattttccacccgatatggcacggcgcaat
gtggaacccaattatttgaacaaccaaaaattggttgcctattttgagcaagattgggcg
gaagtgatacgctga

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