Xylella fastidiosa M23: XfasM23_0113
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Entry
XfasM23_0113 CDS
T00692
Name
(GenBank) phosphoglucomutase/phosphomannomutase alpha/beta/alpha domain I
KO
K15778
phosphomannomutase / phosphoglucomutase [EC:
5.4.2.8
5.4.2.2
]
Organism
xfn
Xylella fastidiosa M23
Pathway
xfn00010
Glycolysis / Gluconeogenesis
xfn00030
Pentose phosphate pathway
xfn00051
Fructose and mannose metabolism
xfn00052
Galactose metabolism
xfn00230
Purine metabolism
xfn00500
Starch and sucrose metabolism
xfn00520
Amino sugar and nucleotide sugar metabolism
xfn00521
Streptomycin biosynthesis
xfn01100
Metabolic pathways
xfn01110
Biosynthesis of secondary metabolites
xfn01120
Microbial metabolism in diverse environments
xfn01250
Biosynthesis of nucleotide sugars
Module
xfn_M00549
UDP-Glc biosynthesis, Glc => UDP-Glc
xfn_M01000
GDP-Man biosynthesis, Fru-6P => GDP-Man
Brite
KEGG Orthology (KO) [BR:
xfn00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00010 Glycolysis / Gluconeogenesis
XfasM23_0113
00030 Pentose phosphate pathway
XfasM23_0113
00051 Fructose and mannose metabolism
XfasM23_0113
00052 Galactose metabolism
XfasM23_0113
00500 Starch and sucrose metabolism
XfasM23_0113
09104 Nucleotide metabolism
00230 Purine metabolism
XfasM23_0113
09107 Glycan biosynthesis and metabolism
00520 Amino sugar and nucleotide sugar metabolism
XfasM23_0113
09110 Biosynthesis of other secondary metabolites
00521 Streptomycin biosynthesis
XfasM23_0113
Enzymes [BR:
xfn01000
]
5. Isomerases
5.4 Intramolecular transferases
5.4.2 Phosphotransferases (phosphomutases)
5.4.2.2 phosphoglucomutase (alpha-D-glucose-1,6-bisphosphate-dependent)
XfasM23_0113
5.4.2.8 phosphomannomutase
XfasM23_0113
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GFIT
Motif
Pfam:
PGM_PMM_I
PGM_PMM_III
PGM_PMM_II
PGM_PMM_IV
GAGA_bind
PFF1_TM
Neur_chan_memb
Zip
Tim54
Presenilin
SID-1_RNA_chan
DUF2218
SLC52_ribofla_tr
Motif
Other DBs
NCBI-ProteinID:
ACB91570
UniProt:
B2I6M8
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All DBs
Position
151926..154469
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AA seq
847 aa
AA seq
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MSVTIGNELILPMKRRRIAFLLAMLCLLLAGVFCWGAYIQWRQNVVQQKLEQARDGAVAS
LLQVLSAQVKQLQNVVQRPAIVQVLGGGDVTAAAAAVREQFPGTEDVQVLTGDLSAAYAD
VARSGYARLGLIEAALGGDGVKAWVVRDGTQIGLGMAVMVKLGQAPAVVYLRLPLRGLIS
VLDAIEVPNSTYLALRQGSYTVVERGSAALASGGEALAKPLGWADLRMAAAVPQLENVPF
DLGLLPSLIVVGVFALVAAVLLLVAGGHRMLPRRHGQMADAEQEQVTLRESVMQEAPERA
IVLNDENKENKENKENKENKENKENKENKENKENKENKENKENKENKENKENKENKENKE
NKENKENNVALSSSLHLQFNLEAVVQPSLFHEDDIHGVVPSELNPGVAKLIGQAIGSAMQ
AKGLSDIVIGRDGRVSSSELSAALSDGLRHAGCNVVDIGLVPIPVVYFAACHLGVWSCVA
VTGGHHPHDYNGFKIVLGGESLSSEAMSDLYQCITNGRLYASVDSGSLSERDVVDDYIQR
IADDVQLNRPLKIVVDPGHGAAEEILSRLFKAIGADLVSLYGDIDGVSLIVHPDSGEPGN
LQKLIQRVERADADLGLAFDGDAESLRVVTREGEVILSDSVLMLFATDVLQRNPGALVIY
DAECTSKLSDYVLRNGGSPLMWKIGHSSIKAKMRETGAELAGEMSGYFFFKERWYGFEDA
LYAAARLLEILAQREDNPSQVFAALPHAYFTAQMEQSVEGDAQACVQSFIEEVQRSVEGG
VFDGARLFAFDGLRADFTDGWGLVRVSDTASALVLRFEADTQAGLERIQSAFRTHLQALL
PGQVLVF
NT seq
2544 nt
NT seq
+upstream
nt +downstream
nt
atgagcgtgacaattggaaacgagttgattttgccgatgaaacgacgccggattgcattt
cttttggcgatgttgtgtttgttgctggcaggggtgttttgttggggggcgtacatacag
tggcgccagaatgtggtgcagcagaagctcgagcaggcacgtgatggtgctgttgcgtca
ttgcttcaggtgctgtctgctcaggttaagcagttgcaaaatgtggtgcagcgtccggcc
atcgtacaggtgctgggtggaggtgacgtcacggcagcagctgcagcggttcgtgagcaa
tttccaggcactgaggatgtacaggttctgaccggcgatctgagtgctgcttatgcggat
gtggcgcgctccggttatgcccgccttgggctgatagaggcggctcttggtggtgatggt
gtgaaggcatgggttgtacgtgacggtactcagattggcttgggtatggctgtgatggtc
aagcttggccaagctccggcggtggtctatcttcgcctgccgctacgtggcttgataagt
gtgttggatgcgattgaggtgcccaatagcacttacttggcattgcgtcaggggagttat
acggtggtcgagcgcggtagcgccgcgttagccagtggtggtgaggcattggctaaaccg
ctgggttgggctgacttgcgtatggctgccgctgtgccgcagctggaaaacgtccctttt
gatttgggattgctgccatctttgattgtggtaggggtgtttgcgctagttgcggcggtc
ctgttgttagttgcgggtgggcataggatgctacccaggcgtcacgggcaaatggccgat
gcagaacaagaacaggttactttgcgtgaaagtgtgatgcaggaggcgccggagcgcgcg
atcgttttgaatgacgaaaacaaggaaaacaaggaaaacaaggaaaacaaggaaaacaag
gaaaacaaggaaaacaaggaaaacaaggaaaacaaggaaaacaaggaaaacaaggaaaac
aaggaaaacaaggaaaacaaggaaaacaaggaaaacaaggaaaacaaggaaaacaaggaa
aacaaggaaaacaaggaaaacaacgttgcgttgtcgtcgtcgctgcatcttcagttcaat
ttggaagcggtggttcaacctagtcttttccatgaagacgatatccacggtgtggtccct
agcgagttgaacccaggtgtggcgaagttgatcggtcaagcgatcggcagtgcgatgcag
gccaaaggtttgagtgacattgtgattggccgtgacggccgcgtgtccagttctgagttg
tccgcagcattaagtgatggtctacgtcatgccggttgcaatgtggtagacatcggcttg
gtgccgatccctgtagtgtatttcgctgcctgccatcttggcgtttggagttgcgttgcg
gtcacaggggggcatcatcctcatgattacaacggtttcaagatcgtgcttggtggtgag
tccttatccagtgaggcgatgagcgatttgtatcagtgcatcaccaatggtcgcttatat
gcgtccgttgactccggcagtttgagtgagcgtgatgtggttgacgattacattcagcgt
attgctgatgatgtgcagttgaatcgtccgctgaagattgttgttgatcctggtcacggt
gcggctgaagagatcctgtcacgtttatttaaggcgattggtgcggatctggtgtcactg
tacggtgatattgatggtgtttcccttattgtccatcctgattcgggcgagccagggaat
ctgcagaagttgattcagcgggttgagcgggccgatgccgatttgggtcttgcttttgat
ggggatgcggaaagtctcagagtggtgactcgagaaggtgaggtcattttatcggatagc
gtgttgatgttgtttgcgacggatgtgctacagaggaatccgggtgctttggtgatctat
gatgctgaatgtactagcaagttgtctgattatgtattgcgcaatggcggcagcccgttg
atgtggaagatagggcattcctccatcaaagctaagatgcgcgagaccggtgccgagttg
gctggtgaaatgagtggctatttcttcttcaaagaacgctggtatggttttgaggatgct
ctgtatgcggcggcgcgtttgctggagatcttagcgcagcgcgaggataatccgtctcag
gtgtttgctgcattgccccatgcttatttcactgcgcaaatggagcagtctgtcgagggt
gatgcgcaggcatgtgtacagtcctttattgaggaagtgcagcgtagcgttgagggcggt
gtgttcgatggtgctcgtttgttcgcctttgatggtttgcgtgctgatttcactgatggt
tgggggctagtacgcgtttctgacactgcatctgcactggtgttgcgttttgaggctgac
acgcaggctggattggagcggattcagagtgcattccgcacgcatctgcaggcattacta
cccggtcaggtactggtgttctaa
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