KEGG   Methylorubrum extorquens AM1: Mex_1p1862
Entry
Mex_1p1862        CDS       T00921                                 
Name
(GenBank) putative Transaldolase Phosphoglucose isomerase
  KO
K13810  transaldolase / glucose-6-phosphate isomerase [EC:2.2.1.2 5.3.1.9]
Organism
mea  Methylorubrum extorquens AM1
Pathway
mea00010  Glycolysis / Gluconeogenesis
mea00030  Pentose phosphate pathway
mea00500  Starch and sucrose metabolism
mea00520  Amino sugar and nucleotide sugar metabolism
mea00710  Carbon fixation by Calvin cycle
mea01100  Metabolic pathways
mea01110  Biosynthesis of secondary metabolites
mea01120  Microbial metabolism in diverse environments
mea01200  Carbon metabolism
mea01230  Biosynthesis of amino acids
mea01250  Biosynthesis of nucleotide sugars
Module
mea_M00004  Pentose phosphate pathway (Pentose phosphate cycle)
mea_M00007  Pentose phosphate pathway, non-oxidative phase, fructose 6P => ribose 5P
mea_M00909  UDP-N-acetyl-D-glucosamine biosynthesis, prokaryotes, glucose => UDP-GlcNAc
Brite
KEGG Orthology (KO) [BR:mea00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00010 Glycolysis / Gluconeogenesis
    Mex_1p1862
   00030 Pentose phosphate pathway
    Mex_1p1862
   00500 Starch and sucrose metabolism
    Mex_1p1862
   00520 Amino sugar and nucleotide sugar metabolism
    Mex_1p1862
  09102 Energy metabolism
   00710 Carbon fixation by Calvin cycle
    Mex_1p1862
Enzymes [BR:mea01000]
 2. Transferases
  2.2  Transferring aldehyde or ketonic groups
   2.2.1  Transketolases and transaldolases
    2.2.1.2  transaldolase
     Mex_1p1862
 5. Isomerases
  5.3  Intramolecular oxidoreductases
   5.3.1  Interconverting aldoses and ketoses, and related compounds
    5.3.1.9  glucose-6-phosphate isomerase
     Mex_1p1862
SSDB
Motif
Pfam: TAL_FSA PGI
Other DBs
NCBI-ProteinID: ACS39702
UniProt: C5B1R8
LinkDB
Position
1944631..1947483
AA seq 950 aa
MNPLKALQDQGQAVWLDFVARGFMADGHLKKLVEEDGLRGVTSNPAIFEKAIAHSDEYDT
SLRSAEAGADVPVIALFEQLAIEDIRNAADVLRPVYDATDGADGFVSLEVSPYLALETED
TIAEGRRLWREVGRENLMIKVPATQAGLPAIRHLIGEGINVNVTLLFAQDVYEAVANAYI
EGLEALAAKGNVSRVASVASFFVSRIDSAIDQRLDQKIREANDPDEKAALERLKGKVAIA
NAKLAYQRYKRLFATSRWNGLAVRGARPQRLLWASTGAKNKAYRDVLYVEELIGPDAVNT
MPPATLDAFRDHGRVRPSLEEGVGEAQRALVALARAGISLDEVTAGLVDDGVRLFVDAAD
KLLGAVASKRAAILGTRLNRQTLALGADLDREVGATIEQWRANAAARRLWRKDKSLWTGA
DEDRWLGWLDIIDRELGRVDAYRAFAEDVRREGFSDAVLLGMGGSSLGPEVLAETVGAAP
GFPRLRILDSTDPAQVRAMEEAIDLHRTLFIVSSKSGSTLEPNIFKDYFFERVASVVGPE
RAGQRFVAVTDPGSSMEQAAQAARFWRIFHGDPGIGGRYSVLSAFGLVPAAAAGLDVGRF
LESACLMARSCGPDVPPAENPGVRLGLAMGLAARQGRDKVTVVAAPSIAAFGAWAEQLIA
ESTGKDGKGLIPVAAEPLGPPEIYGQDRFFIHLRLEGKRDDSQEAALGALETAGHPVARI
DLASPDGIVQEFFRWEFATAVAGAVIGINPFDQPDVEASKVRTRELTAAYEKSGELPLEM
PLFSGEGVEVYADPRNADALRELVRDDHLEGWLRAHLRRLTPGDYFALLAYVARTQEHTA
ALQNVRLAVRDARRVATCLGFGPRFLHSTGQAYKGGPNSGVFLQVTADGAEDLAIPGHAF
GFGTVKAAQARGDFEVLADRGRRALRVHLKGGDVAAGLGSLGAALRRALA
NT seq 2853 nt   +upstreamnt  +downstreamnt
atgaacccgctcaaggccctccaggatcaaggtcaggccgtctggctcgacttcgtcgcc
cgcggcttcatggccgacggtcatctcaaaaaactcgtggaggaagacgggctgaggggg
gtgacctcgaacccggccatcttcgagaaggcgatcgcgcactccgacgagtacgatacc
tccctgcgcagcgcggaagccggcgccgacgtgcccgtgatcgcgctgttcgagcaactg
gcgatcgaggacattcgcaacgcggccgacgtgctgcggccggtctacgacgcgactgac
ggagcggacggcttcgtcagcctagaggtgtcgccctatctcgccctggagactgaggac
acgatcgccgagggaaggcggctttggcgggaggtcggccgcgagaacctgatgatcaag
gttccggcgacgcaagccggcttgccggctatccggcatctgatcggggaggggatcaac
gtcaacgtgaccctgctgttcgcgcaggacgtctacgaagccgtggcgaacgcctacatt
gaggggctcgaggcgcttgccgccaagggcaacgtgagccgggtcgcgagcgtggcgagc
ttcttcgtgagccgcatcgacagcgccatcgaccagcggctcgatcaaaagattcgcgag
gcgaacgatccggacgagaaggcggcgctcgaacggctcaagggcaaggtcgcaatcgcc
aacgccaagctcgcctaccagcgctacaagcgcctcttcgcaacctcgcgctggaacggt
ctggccgtgaggggcgcccgcccgcagcgcctcctgtgggcctcgaccggcgccaagaac
aaggcctaccgcgacgtcctctacgtggaggagctgatcgggccggacgccgtcaatacc
atgccgcccgccaccctggacgcctttcgcgaccatggccgggtgcgcccgagcctggag
gagggcgtcggggaggcgcagcgcgccctcgtggcgctcgcccgcgccggaatctcgctc
gacgaggttacggccggcctcgtggatgacggcgtgcggctcttcgtggacgcggccgac
aagctcctcggcgccgtggccagcaaacgcgccgcgatcctcgggacgcgcctcaaccgc
cagacgctcgcgctcggcgccgacctcgatcgagaggtcggcgccacgatcgagcaatgg
cgcgcgaacgccgccgcgcggcggctgtggcgcaaggacaagagcttgtggaccggcgcc
gacgaggatcgctggctcggctggctcgacatcatcgaccgcgagctcggccgcgtcgac
gcctatcgcgccttcgccgaggacgtgcggcgcgaggggttttcggatgcggtcctcctc
ggcatgggcggatcgagcctcggccccgaggtcctggccgagaccgtgggcgcggcgcca
ggcttcccgcgccttcgcatcctcgattcgaccgacccggcgcaggtgcgcgcgatggaa
gaggcgatcgacctccacaggacgctctttatcgtctcgtcgaagtcgggatcgaccctc
gagcccaacatcttcaaggactacttcttcgagcgggtggcgagcgtcgtcgggcccgag
cgcgccggccagcgcttcgtcgccgtgacggaccccggctcctcgatggagcaggccgcg
caggccgccaggttctggcgcatcttccacggcgaccccggcatcggcgggcgctattcg
gtgctctcggccttcggccttgtcccggcggccgccgccgggctcgacgtcgggcggttt
ctcgaatccgcctgcctcatggcgcgctcctgcggtcccgacgtcccgccggccgagaac
cccggcgtgcggctcggcctcgccatgggcctcgcggcgcgccaaggccgcgacaaggtc
acggtcgtcgctgcgccgagcatcgccgcgttcggggcctgggccgagcagctcatcgcc
gagtcgaccggcaaggatggcaagggcctgatcccggtcgccgccgagcccctggggccg
cctgagatctatgggcaggaccgctttttcatccatcttcgcctcgaggggaagagggac
gacagccaggaggccgcgctgggcgcgctcgagacggcgggccatccggtcgcgcgcatc
gacctcgcctcgcccgacggcatcgttcaggagttcttccgatgggagttcgccaccgcg
gtcgccggcgcggtgatcggcatcaaccccttcgatcaacccgacgtcgaggcgagcaag
gtgaggacgcgcgagctcacggccgcttacgaaaagagcggggagcttccgctcgagatg
ccgctgttctcgggcgaaggggtcgaggtctacgccgacccgcgcaacgccgacgcgctg
cgcgagcttgtccgggacgaccacctcgaaggctggctccgggcgcacctgcggcgcctg
acgccgggcgactacttcgcgctccttgcctatgtcgcgcgcacgcaggagcacacggct
gccttgcagaacgtgcgcctcgccgtgcgcgacgccaggcgggtcgcgacctgcctcggg
ttcgggccgcgcttcctgcactccaccggtcaggcctacaagggcgggccgaactcaggc
gtcttcctccaggtcacggcggacggcgcggaggacctcgctatcccgggccacgccttc
ggcttcggcaccgtcaaggccgcgcaggccaggggcgatttcgaggtgttggccgaccgc
ggccggcgggccctgcgcgttcatctcaagggcggcgatgtcgcggccgggctcgggtcg
ctcggggccgcgctccggcgggccctggcgtag

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