KEGG   Candidatus Methanosphaerula palustris: Mpal_2125Help
Entry
Mpal_2125         CDS       T00823                                 

Definition
thymidine phosphorylase
Orthology
K00758  
thymidine phosphorylase [EC:2.4.2.4]
Organism
mpl  Candidatus Methanosphaerula palustris
Pathway
Pyrimidine metabolism
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:mpl00001]
 Metabolism
  Nucleotide metabolism
   00240 Pyrimidine metabolism
    Mpal_2125
Enzymes [BR:mpl01000]
 2. Transferases
  2.4  Glycosyltransferases
   2.4.2  Pentosyltransferases
    2.4.2.4  thymidine phosphorylase
     Mpal_2125
BRITE hierarchy
SSDB OrthologParalogGene clusterGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
JGI: 
UniProt: 
Position
complement(2256845..2258374)
Genome map
AA seq 509 aa AA seqDB search
MKYSAKILDIADRGVLLNASDARMVGVLEGDRVQIMNHASGLSTPAVVDITTTMIPVGVI
GIYGLTNRTLLLVDGTEVEVWEAKKPLALDLIKKKMNHEKLTKDDTRQIIQDIVNDSLSQ
AELSAYVTACYINGLDMDEVEYLTHAMVESGDRLKFSNHPIVDKHSVGGVPGNKISLLIV
PIIAASGLKIPKTSSRAITGAAGTADLMEVLAPVEFSAVEVQQMTEKVGGVIVWGGATNI
APADDKIIVVEYPFKIDARGQMLASVMAKKFAVGADLVVIDIPVGSSTKVPDMAEGRKMA
REFIELGERLGIRVECALTYGDSPVGRTIGPNLEVREALAILEGGDEPRSLIQKSLSLAG
IALEMSGKAAKGQGYQMAEEILRSGKALRKLRQIIEIQGGDPAVTSESIKPGEFEFVVNA
QNTGYIIELNNRALVSLARIAGAPHDHGAGLLLHAKKGEQVNAGDPIFTIYADRDWRLKM
AVEEGRRLMPVIVEGMLLDRIPSEYRGQV
NT seq 1530 nt NT seq  +upstreamnt  +downstreamnt
atgaagtattctgcaaagattctggatatcgccgaccgcggggttctcttgaacgcctct
gatgcgcggatggtcggtgttctcgaaggcgatcgagtgcagatcatgaaccatgccagt
gggctatcaactccggctgtggtggatatcaccacgacgatgatccctgttggagtgatt
ggcatctatggactcaccaacaggacccttttgttggtcgatggaactgaggtcgaggtc
tgggaggcgaagaagccgctcgcccttgacctgatcaagaagaagatgaaccatgagaaa
ttgaccaaggatgatacacgtcagatcatccaggatatcgtcaacgattctctctcccag
gctgaactatcagcctatgtgaccgcctgttacatcaatggtctcgatatggatgaggtc
gagtacctgacccacgcgatggtcgagtcgggggaccggctgaagttcagtaaccaccca
attgtggacaagcattcggtcggtggcgtcccgggcaacaagatctccctgctgatcgtc
ccgatcatcgcggccagcgggctgaagatcccaaagaccagttcccgggcgatcaccggg
gctgcagggacggccgatctgatggaggtgctggcgccggtggagttctctgcggttgag
gttcagcagatgaccgaaaaggtcggcggggtgatcgtctgggggggtgcgaccaacatc
gctccagccgacgataagatcatcgtcgtcgagtacccgttcaagatcgacgcccgcggg
cagatgctcgcctcggtgatggcgaagaagttcgcggtcggtgccgatctggtggtgatc
gacataccagttggatcctcgaccaaggtccctgatatggcggaggggaggaagatggcc
cgggagttcatcgagctcggtgagcggctcgggatccgggtggagtgcgccctgacctat
ggagattccccggtcggacggacgatcgggccgaacctcgaggtgcgggaggcgctggcc
atcctcgagggcggagatgagcccaggtcgttgatccagaagagcctctcgctggcaggg
atcgcgctggagatgtccggtaaggccgcaaaggggcaggggtaccagatggcagaagag
attctgcggagcggaaaagcgcttcggaagctccgccagatcatcgagatccaggggggg
gacccggccgtcacgtcggagagcatcaaacccggggagttcgaattcgttgtgaacgct
cagaacactgggtacatcatcgagttgaacaatcgggcgctggtcagcctcgcccgaatc
gccggcgctccgcacgatcatggtgccggcctcctcctccatgcgaagaaaggggagcag
gtgaacgctggagacccgatctttacgatctatgccgatcgcgactggaggctgaagatg
gccgtcgaagaggggcgccggctgatgccggtgatcgtcgagggaatgctcctcgatcga
atcccgtctgagtatcgggggcaggtctga

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