KEGG   Thermogladius calderae: TCELL_0842
Entry
TCELL_0842        CDS       T02127                                 
Name
(GenBank) Nucleotidyl transferase
  KO
K16881  mannose-1-phosphate guanylyltransferase / phosphomannomutase [EC:2.7.7.13 5.4.2.8]
Organism
thg  Thermogladius calderae
Pathway
thg00051  Fructose and mannose metabolism
thg00520  Amino sugar and nucleotide sugar metabolism
thg00541  Biosynthesis of various nucleotide sugars
thg01100  Metabolic pathways
thg01110  Biosynthesis of secondary metabolites
thg01250  Biosynthesis of nucleotide sugars
Module
thg_M01000  GDP-Man biosynthesis, Fru-6P => GDP-Man
Brite
KEGG Orthology (KO) [BR:thg00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00051 Fructose and mannose metabolism
    TCELL_0842
  09107 Glycan biosynthesis and metabolism
   00520 Amino sugar and nucleotide sugar metabolism
    TCELL_0842
   00541 Biosynthesis of various nucleotide sugars
    TCELL_0842
Enzymes [BR:thg01000]
 2. Transferases
  2.7  Transferring phosphorus-containing groups
   2.7.7  Nucleotidyltransferases
    2.7.7.13  mannose-1-phosphate guanylyltransferase
     TCELL_0842
 5. Isomerases
  5.4  Intramolecular transferases
   5.4.2  Phosphotransferases (phosphomutases)
    5.4.2.8  phosphomannomutase
     TCELL_0842
SSDB
Motif
Pfam: NTP_transferase PGM_PMM_I LbH_EIF2B Hexapep NTP_transf_3 Hexapep_GlmU GMPPB_C PGM_PMM_II PGM_PMM_III Fucose_pyrophosphorylase
Other DBs
NCBI-ProteinID: AFK51266
UniProt: I3TES8
LinkDB
Position
772381..774891
AA seq 836 aa
MVKAVIMAGGEGSRLRPLTVTRPKPMIPLANTPIIVRLIKHLKENTGISDIGITLHYLPN
VIMSHLNDGADLGVRLHYAVEEKPLGTAGGVKNLVEAEGWDDTILVISGDVVTNIDLKRL
VEFHFDNRADLTMAVRRETDVTRFGIVALDERGRVLRFKEKPSPNEVFSDIVNTGIYVIE
PHVFKKLESKRSIDFASDVIPRLLADNFRVFAMRVDDYYWSDIGDIEQYRATHADLLSRR
LALPGGVEGREVRPGVFIGRNAHVDVERVIPPVVVGNNSKIISSTLGPYTVIGSNVVVEE
GSRVENSIVFDNAYIGSASVVEGAVIGEKVTLGDHVVVSEGVVIGDETRVGRGASLKARV
KIWPMKIIDPYTTVSSDIRWGVRWSRVLFEPWGLTGILNIDITPEFLVKLGSAIGSIMRE
GESVIAGSDISPASHVGLQSMIAGFMSVGVGVRYAGYTPLPFIAFGVKWLKTSGGVYVNT
LQGEYAKIRVKVFDREGKFLSKNLARKIEDVFFREQLRRSAEIDAGFLVEENGLEKLYAE
EASTLLDLEEVDGSKLSKVLVDCGGGVVSKVIADVFFKTKLPLYYSNCTDVRTPRAIRRQ
AFTELVDSSIAIVKGTGFRLGFIFDSDGDKLTLVTDRHGLVAGDKLVALMAQVVLAERPG
SRILLPETTPRAIVEFVERLGGRVELAETGLMGLSEKINTSYALAADERGSIIYPEFHYG
PDAIFTAMRLLVFASRFDINEAVSRLPLIHRVVKEIYLPFEKRGLFARELTRALDMREIE
MIDGLKIFDEGVGWVYLRFSRTDPVVEVIFEPIEEGKLEYMIKSVMDLIGRVLGKI
NT seq 2511 nt   +upstreamnt  +downstreamnt
ttggtcaaggcagttataatggctggaggagagggctctcgcctcagacccctgacagtg
acaaggcctaagccgatgatccctctggcaaacacgccgattattgtaaggctgatcaag
cacttgaaggagaacacgggcatcagcgacataggcatcacccttcactatctacccaac
gtaataatgtcccacctcaacgacggggcagacctaggggttaggcttcactacgctgta
gaggagaagccgctggggacggcagggggtgtcaagaacctcgtcgaggcagagggctgg
gacgacactatactagtgatcagcggcgacgtcgtcacgaacatcgacttgaagaggctg
gtcgagttccacttcgataaccgtgctgacttgaccatggccgtcaggagggagacggat
gtcacgaggttcggtatcgtggcgctagacgagagggggagggtgctgaggtttaaagaa
aagccgtcgccgaacgaagtcttcagcgacatcgtaaacacgggtatctacgttatcgaa
ccccacgttttcaagaagttggagtccaagcgtagcatagacttcgcctccgacgtgatt
ccccggctcctcgcagacaacttcagggtcttcgccatgagagtggacgactactactgg
agcgacataggggacatagagcagtacagggccacacacgcggacctcttgtcccggagg
ctcgctttaccgggcggggtagaggggcgagaagtcaggccgggcgttttcatcggcagg
aacgcgcacgtcgacgtcgagagggtcataccgcctgtggtggtcggtaacaactccaag
atcatatcctccacgttgggcccctatactgttataggtagcaacgttgtggtagaggag
ggcagtagagtcgagaactcgatcgttttcgacaacgcctacataggtagcgcgagcgtt
gtagagggggcggtgatcggcgagaaggtcaccctcggagaccacgtcgtcgtgtcggag
ggggttgttataggcgacgagacacgcgtaggtaggggggcaagcctaaaagcgagggtc
aagatctggcctatgaagatcatcgacccgtacacaactgtctcctccgacattaggtgg
ggcgtgaggtggagtagggtactcttcgagccctggggcttgaccggtatactgaatatc
gacataacgccggagttcctcgtgaagctgggctcggctatcggcagtataatgagggag
ggcgagagcgtgatagcgggcagcgacatctcgccggccagccacgtaggtttacagagc
atgatagccgggttcatgtctgtcggggtcggggtgaggtacgccggttacacgcccctc
cccttcattgcgttcggcgtgaagtggctgaagacgagcggcggggtctacgtgaacact
ctacaaggcgagtacgcaaagatccgcgtcaaggtcttcgacagggagggcaagttcctg
tccaagaacctggcgaggaagatcgaggacgtcttcttccgcgagcagttgaggaggtct
gccgagatagacgccggcttcctcgtcgaggagaacgggctcgaaaagctgtacgcggag
gaggcgtccactctactcgacctagaggaggttgatggtagtaagctctcgaaagtccta
gtggactgcggcggaggcgtggtctccaaggttatagcggacgtcttcttcaagacgaag
ctccccctgtactactcgaactgtacagatgtgaggacgccgagggctattaggagacag
gccttcacggagctggtcgattccagcatcgctatagtgaagggcacggggttcagacta
gggttcatcttcgatagcgacggggacaagctgacgctggtcactgacaggcacggcttg
gtcgccggcgacaagctcgtagcattaatggcgcaggtggtcctggccgagaggcctggg
agcaggatactcctcccagagacgacgcctagggccatagtcgagttcgtggaaaggctc
ggcggtagagtagagctggccgagacggggctcatgggtctatcggagaagattaacacc
tcctacgctctggcggcggacgagaggggctctataatctacccggagttccactacggc
ccggacgcgatattcacggccatgaggctcctggtgttcgcgagcaggttcgacatcaac
gaggcagtctcgagactccctctgatacacagggtggtcaaggagatctacctcccgttc
gagaagcgaggcttgtttgccagggagctgacgagggccttagacatgagggagatcgag
atgatagacgggctaaagatattcgatgagggggttggctgggtctacctcaggttctcg
aggacagaccccgtggtcgaggttatattcgagcccatagaggagggcaagctggagtac
atgatcaagtcggtgatggacctgatcgggagggttctcggaaagatataa

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