KEGG   Qingshengfaniella alkalisoli: FPZ52_16050
Entry
FPZ52_16050       CDS       T06129                                 
Symbol
speB
Name
(GenBank) agmatinase
  KO
K01480  agmatinase [EC:3.5.3.11]
Organism
lit  Qingshengfaniella alkalisoli
Pathway
lit00330  Arginine and proline metabolism
lit01100  Metabolic pathways
Brite
KEGG Orthology (KO) [BR:lit00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00330 Arginine and proline metabolism
    FPZ52_16050 (speB)
Enzymes [BR:lit01000]
 3. Hydrolases
  3.5  Acting on carbon-nitrogen bonds, other than peptide bonds
   3.5.3  In linear amidines
    3.5.3.11  agmatinase
     FPZ52_16050 (speB)
SSDB
Motif
Pfam: Arginase LDcluster4
Other DBs
NCBI-ProteinID: QDY71297
UniProt: A0A5B8JAH0
LinkDB
Position
unnamed3:complement(231234..232085)
AA seq 283 aa
MRDFLDGELSADELDVTKARFRVIPVPLERTVSYGAGTGAGPEAILEASVELERLFRGAE
PCAQGISTEDAVDCFGPLPEVMGRIANRTGAAVAEGRIPVTLGGEHSLTYGAFRGVAAAA
GAPVGIVQIDAHADMRFAYQGERHSHASVMRLLAEEDGVHIAQYGVRAFSQEELDARGRL
GVHYIDAEELVTANTLSVKLPDEFPELVYVSFDVDGLDPSILPATGTPVPGGLGYWQALK
IVETALQGRRMIGCDVVELAPNGDSMVSDFTTAQIVYALMAMA
NT seq 852 nt   +upstreamnt  +downstreamnt
atgcgcgactttctggatggcgaactgagtgcagatgagttggacgtgacgaaggcccgc
ttccgcgtgattcccgtgccgctggaaaggaccgtgtcctatggtgccggaactggcgcg
ggccccgaggctatccttgaagccagcgtcgaactggaaagactgttccgcggcgccgaa
ccctgcgcgcaggggatttccacggaagatgccgtcgattgtttcgggcctttgccagag
gtgatgggccggattgcgaaccgcacaggtgctgcggttgctgaagggcgtattccggtt
acgttgggcggcgagcattccctgacttacggggcgtttcgtggcgtggccgctgccgcc
ggtgcgccggtcgggatcgtgcagatcgatgcgcatgcggatatgcggtttgcctatcag
ggtgaacgccattcgcacgcttcggtcatgcggcttcttgcggaggaagatggcgttcat
attgcacaatacggggtgcgtgccttcagccaagaagagctggatgcgcgcggtcgtttg
ggcgtgcactatatcgacgctgaagaactggtgacagcaaacacgctttcggtaaagctg
ccggacgaatttccagagctggtttatgtcagcttcgacgtcgatggtctggatccgtcc
attctgcccgcgacaggtaccccggtgccaggtggcttgggatattggcaggcattgaag
atcgtggaaaccgcgttgcaggggcggcggatgatcggctgcgatgttgtagagcttgca
ccaaatggcgacagtatggtctcggacttcaccactgctcagatcgtatatgcgctcatg
gcaatggcttaa

DBGET integrated database retrieval system