KEGG   Meyerozyma guilliermondii: PGUG_04679Help
Entry
PGUG_04679        CDS       T01150                                 

Definition
hypothetical protein
Orthology
K00850  
6-phosphofructokinase 1 [EC:2.7.1.11]
Organism
pgu  Meyerozyma guilliermondii
Pathway
Glycolysis / Gluconeogenesis
Pentose phosphate pathway
Fructose and mannose metabolism
Galactose metabolism
Methane metabolism
Metabolic pathways
Biosynthesis of secondary metabolites
Carbon metabolism
Biosynthesis of amino acids
Module
Glycolysis (Embden-Meyerhof pathway), glucose => pyruvate
Brite
KEGG Orthology (KO) [BR:pgu00001]
 Metabolism
  Overview
   01200 Carbon metabolism
    PGUG_04679
   01230 Biosynthesis of amino acids
    PGUG_04679
  Carbohydrate metabolism
   00010 Glycolysis / Gluconeogenesis
    PGUG_04679
   00030 Pentose phosphate pathway
    PGUG_04679
   00051 Fructose and mannose metabolism
    PGUG_04679
   00052 Galactose metabolism
    PGUG_04679
  Energy metabolism
   00680 Methane metabolism
    PGUG_04679
Enzymes [BR:pgu01000]
 2. Transferases
  2.7  Transferring phosphorus-containing groups
   2.7.1  Phosphotransferases with an alcohol group as acceptor
    2.7.1.11  6-phosphofructokinase
     PGUG_04679
Protein phosphatases and associated proteins [BR:pgu01009]
 Protein Ser/ Thr phosphatases
  Phosphoprotein phosphatases (PPPs)
   Protein phosphatase-1
    PP1-interacting proteins (PIPs)
     PGUG_04679
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
UniProt: 
AA seq 952 aa AA seqDB search
MKWPVVNGVSCVTYYAHDHELVDNAVRFYTNYLGLTIHSETDNGVYLASDDSLLVLKLVV
SKEAPDSAEVKKIHKRFEEDLNIVDWRSRAPGFTLSIADLNSTILKLQQAGLVLQITPND
LYPNEAYFIDPLGNLVGLTTTANPLSLVPPVKKLDQPNEGYIMSATVSEATNNNGAPLKG
SKNVAVMTSGGDAPGMNACVRAVVRAAIYHECKAFCVMEGYEGLVRGGKEYIKEMSWQDV
RGLLAEGGTNIGTARCKAFRERPGRLQACQNMIEAGIDALIVCGGDGSLTGADLFRAEWP
SLIKELLDTNRINQSQYHTYKHLNICGTVGSIDNDMATTDATIGAYSALARVCQAIDYID
ATANSHSRAFVVEVMGRHCGWLALMAGIATSADYIMIPEKPSSSKGWKEQMCEIVSKHRS
KGKRKTIVIVAEGAVTSELEPISSKEVRDELVKLGLDTRITTLGHVQRGGTAVAYDRILA
TLQGVEAVKAVLECTPDTPSPLIAVVENKIVRKSLVEAVQITKSVAEAIEEKNFDKAMDL
RDSEFVEHLHNFIAMNSANHNEPSLPVEKRKKIAIVNIGAPAGGMNSAVYAMATYCMSRG
HTPYAIHNGFSGLARHESVNLIDWLLIQGYNSVGGSEIGTNRATPHETDIGMIAYYFEKY
QFDGLILVGGFEAFVSLDELEKARCTYPSFRIPMVLIPATISNNVPGTEYSLGADTCLNA
LVEYCDVVKQSASATRDRTFVIEVQGGNSGYIATFASLAVGAQISYVPEEGVALDQLEAD
IASLRKQFASEKGMSKSGKLILKSSNASKVLTTQVLADIVKQEAHGEFDTKTAIPGHVQQ
GGLPSPIDRTRAARFAIRSVQFIEDSFDTINKHHYDVDFPIENTELSNTAAVLGVKSSHL
KFTSIRKLYDFETELGRRMPKKISWKFTRDVADRLVGRERLIKELGQVPSLA
NT seq 2859 nt NT seq  +upstreamnt  +downstreamnt
atgaagtggccagttgttaatggcgtgtcgtgtgtcacgtactacgcccacgaccacgaa
ctagtagacaatgctgttcgtttctatacaaattacttggggctcacaattcactccgag
accgacaacggagtttatttggcctccgacgattctttacttgttctcaagttggtagtg
agcaaggaagcgcccgactcggcggaagtgaagaagatccacaagagatttgaagaggat
ctcaatattgtggattggaggtcaagagctcctgggttcaccttgtcgattgcagatttg
aactccactattctcaagttgcaacaagcaggattggtgcttcagataactcccaatgac
ttgtatcctaacgaagcatactttatcgatccattgggaaatcttgttggattgaccact
actgccaatccactctctttggtacctccggtgaaaaaattggaccagccaaatgaaggc
tacattatgtctgccacggtttcagaggccaccaacaacaacggagctccgctcaagggt
agcaaaaatgtggcagtgatgacttctggtggagatgctcctggaatgaatgcttgtgtt
cgtgctgttgttcgcgctgccatctaccatgaatgcaaagcattttgcgtaatggaaggt
tacgaaggtttggtgcgtggaggaaaagagtatatcaaggaaatgtcctggcaagatgtc
agaggtttgcttgctgaaggtggaaccaatattggaactgctcgttgtaaggctttcaga
gaacgtcctggccggttgcaggcatgccaaaatatgattgaggcaggaattgatgcgttg
atcgtatgtggaggagacggctctttgactggagccgatcttttcagagctgaatggcct
tcattgatcaaagaattgctcgatacaaaccgtatcaaccagtcgcaataccacacatac
aagcatttgaatatctgtggaactgtggggtcaattgacaatgatatggccaccactgac
gctaccattggtgcctacagtgcgttggctcgtgtatgtcaagccattgactacattgat
gctactgccaactcccattcaagagcctttgtggtggaagttatgggcagacactgcggt
tggttagcactcatggcaggtatagcgactagcgctgattatatcatgatcccagagaag
ccttcttcctcaaaagggtggaaagagcaaatgtgtgagattgtttcgaaacatagatcc
aagggaaaacggaaaactatcgttattgttgctgagggagccgtcacctctgagttggag
cccatctcgtccaaagaagtacgtgatgagctcgtcaagttgggtcttgataccagaatc
actacgttgggacatgttcaaagaggtggtactgcggtggcatatgatcgtattttggct
actttgcaaggtgtagaggcagtcaaagcggttttggaatgtacacccgatactccttct
ccccttattgcagttgtggagaacaagattgtacgcaagtcgttggtagaagccgtacag
atcacgaaatccgtcgccgaagccattgaagagaaaaactttgataaggcaatggacttg
cgagactcagagtttgtggaacatctccacaatttcattgccatgaactcggctaaccat
aacgagccatctttgcctgtggaaaagagaaagaagattgccattgtgaacatcggtgct
ccagctggtggtatgaatagtgccgtgtacgccatggctacctactgtatgtcaagagga
catactccgtacgccatacacaacgggttctctggtttggcaagacacgagtccgtcaat
ctgatagactggttgctgattcaaggctacaattctgttggtggatctgaaatcggtacc
aatagagcaactcctcatgaaaccgatattggtatgattgcatactactttgagaaatat
caatttgatggacttatacttgttggtggtttcgaagcattcgtatcattggatgaattg
gagaaggcacgatgtacatatccatctttcagaattccaatggtgttgatacctgccacc
atctccaacaatgtccccggcaccgaatactcgcttggtgcggatacttgcttgaatgca
ttggtcgaatattgtgatgttgtcaagcaatctgcatcggccacaagagacaggacattt
gtaatagaagttcaaggtggtaattccgggtacattgcaacttttgcatcgttggctgtt
ggtgctcagatttcgtatgttcctgaagaaggtgtagccttagaccaactagaggctgat
attgcatctttacgcaaacaatttgctagtgaaaaaggcatgtcgaaatcaggaaagctt
attttgaagagctcaaatgcatcaaaagtgttgactacgcaagttctcgctgatatcgtc
aagcaagaggctcatggagagttcgatacaaagactgctatcccaggacatgtgcaacaa
ggtggtttaccttctcctatagacagaaccagagcagccagatttgcaattcgcagtgtc
cagttcattgaagattcttttgatacgattaacaagcaccactatgatgtcgatttcccc
attgagaataccgaactttctaatactgctgctgttttgggagtcaagtcatctcatttg
aagtttacttcaatccgcaaattgtacgatttcgaaacagagttgggaagaagaatgccc
aagaagatctcgtggaaattcaccagagacgttgctgaccgtttagtcggcagagaaaga
ctcatcaaggaactgggccaggttccttcattagcttag

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