KEGG   Malassezia globosa: MGL_2613Help
Entry
MGL_2613          CDS       T01043                                 

Definition
hypothetical protein
Orthology
K14152  
phosphoribosyl-ATP pyrophosphohydrolase / phosphoribosyl-AMP cyclohydrolase / histidinol dehydrogenase [EC:3.6.1.31 3.5.4.19 1.1.1.23]
Organism
mgl  Malassezia globosa
Pathway
Histidine metabolism
Metabolic pathways
Biosynthesis of secondary metabolites
Biosynthesis of amino acids
Module
Histidine biosynthesis, PRPP => histidine
Brite
KEGG Orthology (KO) [BR:mgl00001]
 Metabolism
  Overview
   01230 Biosynthesis of amino acids
    MGL_2613
  Amino acid metabolism
   00340 Histidine metabolism
    MGL_2613
Enzymes [BR:mgl01000]
 1. Oxidoreductases
  1.1  Acting on the CH-OH group of donors
   1.1.1  With NAD+ or NADP+ as acceptor
    1.1.1.23  histidinol dehydrogenase
     MGL_2613
 3. Hydrolases
  3.5  Acting on carbon-nitrogen bonds, other than peptide bonds
   3.5.4  In cyclic amidines
    3.5.4.19  phosphoribosyl-AMP cyclohydrolase
     MGL_2613
  3.6  Acting on acid anhydrides
   3.6.1  In phosphorus-containing anhydrides
    3.6.1.31  phosphoribosyl-ATP diphosphatase
     MGL_2613
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
UniProt: 
AA seq 884 aa AA seqDB search
MLQQSTPLVPCLSAAQAADLVSWTSTDVARAIKYTAPLIVPMDVASKVTCTHATIVECTD
ATTYDQAIDALNGGAEGVVIRTDQAPLLAELGADMVASRAIVAVADGQDVPAHLQPAGVL
VECEHIPSEKSLQKYLKSMETSVSGRNVYVRAPFETLEHIRGVAQQGATAVVGTSQLCMD
QSRDLDYVDALLCMIQSDRADGLYPTLVVSDTCSASLGLVYSSVESVRASLTTGSAHYQS
RKRGLWHKGATSGATQRVVQIRLDCDQDALEYRVEQHAGERSVGFCHLVDRDSCFGGLGG
LAKLEKTLRARKQSAPPGSYTARLFGDPKLLSAKIREEAQELIDAQEHEHIAFEAADLLY
FVLARCIGAGVGLADIERSLDAKSKKVTRRKGDAKPAYSQAMPAKAPPAPATQLDASAPI
CLPVHKLSETSADKQSELLRRPAIRTNEVMDRVRPILAAVKERGDDAVLSYTAQFDRVQL
SSAVRLPPFQSSSDRQAMDPRVREAIDVAYANIRRFHEAQKAPVKTTSRSSHAAWAPGED
VMEITSMPGVVCTRFPRAIERVGIYVPGGSAVLPSTALMLGVPAQVAGCSTIVLATPPRS
DGSIAPEVLYVADKVQASCIVCAGGAQAVGAMAYGTESVPKVDKIAGPGNQYVTAAKMLV
QNEVDAQVSIDMPAGPSEVLVVADESAEPVFVASDLLSQAEHGPDSQVVLVGIDLSDAKL
QAIETEVDRQARALPRVDVVRQAIDKSVTMLVNTREEAITWSNRYAPEHLILHTTEPEQL
VPLVQHAGSVFVGAWSPESCGDYASGTNHTLPTYGFARQYGGVSTSTFQKYITAQTLDAD
GLRKLGPHVIALAECEGLEAHANAVRVRLQQLSPSSLPSTSSSS
NT seq 2655 nt NT seq  +upstreamnt  +downstreamnt
atgctgcagcagtcgacgcctctggtgccgtgcttgagtgcagcgcaagcggcggaccta
gtttcctggacgtccacagatgttgcaagggctattaagtacacagcgcccctcattgtg
ccgatggatgtggcatcaaaagtgacatgtactcacgcgacaattgttgagtgcacggac
gctacaacctatgatcaagccatcgacgcattgaatggcggtgcggaaggtgtggtgatt
cggaccgaccaagcgcctcttctcgccgaactaggcgcagatatggttgcatcccgcgcg
attgtcgccgtcgccgatggccaggatgtgccagcacatcttcaaccggccggtgttctt
gtcgaatgtgagcatattccctcagaaaagtcactccaaaagtatcttaagtcgatggaa
acgagtgtaagcgggcgaaacgtgtacgtgcgtgcacctttcgagacgctcgaacacatt
cgtggagtggcccaacagggtgcgacagctgttgttggtacgagccagctatgtatggac
cagagccgtgacttggactatgttgatgcccttttgtgcatgatccagagcgaccgtgct
gatggcctgtatccgacgctcgttgtgtctgacacttgctcagcgtcgctgggcctggtg
tactcctcggttgagtctgtgcgtgcatcgcttaccaccggctccgcccattaccagtct
cgtaaacgcggactctggcataagggggcaacaagtggcgcaacacaacgcgttgtgcag
atccgtttggactgtgatcaggacgctctggaataccgcgtggaacagcatgcgggcgag
cggtcagttgggttttgccacttggtcgaccgcgactcatgctttggcggtcttggtggt
cttgcaaagctggaaaaaaccctgcgtgcgcgcaagcagtcggcgccccctggctcgtac
acggcgcgtctcttcggtgatccgaagctgcttagcgccaagatccgtgaggaagcccag
gaactgattgatgcccaggaacatgagcatatcgcgtttgaggcagcggacctcttgtac
tttgtgctcgcacgatgcattggcgcaggtgtaggcctcgcagacattgagcggtcgttg
gatgctaagagcaaaaaagtgacacgacgcaagggtgacgcaaagccagcgtactcgcaa
gcaatgccagccaaggccccacctgcgcctgcaacacagcttgacgcatctgcccccatt
tgcttgccagtgcacaagcttagcgaaacatccgctgacaaacagagcgagctcctgcgt
cgtccggccatacgtacgaatgaggtgatggatcgtgtgcgtccgatccttgctgctgtg
aaagagcgtggcgacgacgccgtcctgtcgtacactgcgcagttcgaccgtgtacagctg
tcaagcgcagtacgtcttccgccgttccaaagcagcagtgatcggcaggcaatggatcca
cgtgtgcgagaggctatcgatgtcgcttacgcaaacatccggcgcttccatgaggcacaa
aaggctcctgtcaagactacgtcgcgttcatcgcacgcggcgtgggcacctggtgaagac
gtgatggaaattacatccatgccaggcgtcgtctgcacacgctttccacgtgccattgag
cgtgtaggcatatacgtgccaggtggcagcgcggtgctaccctcgacggcattgatgctg
ggagtgcctgcgcaggtcgctggttgctcaacgattgtgctggcaacgccgcctcggtct
gacggctccattgcgccggaggtattgtacgtcgctgacaaggtgcaagcatcgtgtatt
gtgtgtgctggtggcgcacaggccgtgggtgccatggcgtatggcacagagagcgtgcct
aaagtggacaaaattgcaggacctggcaaccagtatgtgacggcagcaaagatgcttgtg
caaaacgaagttgatgcgcaagtttctattgacatgccggcagggccatcagaagtgcta
gtcgtcgcggatgagagcgcagaacccgtgttcgttgcgtcagatttgctatcgcaggca
gagcatggacccgactcgcaggtggtcctggtgggcattgatctgagcgacgccaagctc
caggccattgagaccgaggtcgaccgacaagcgcgtgcattaccacgagtcgatgtcgtg
cgccaagccattgacaagagtgtcacgatgttggtcaacacgcgtgaagaggccatcacg
tggagcaatcggtacgcacctgagcacctgatcttgcacacgacagagcccgagcaactc
gtgccgctagtccagcatgcaggcagcgttttcgtgggggcatggagtcccgagagctgc
ggtgactatgcatcaggcaccaatcacacactaccgacgtatggctttgctcggcagtac
ggcggcgtgtcgacgtcgaccttccaaaaatacatcaccgctcagactctcgacgccgat
ggcttgcggaaacttggaccccatgttattgcactggctgagtgtgagggtcttgaggcg
catgcgaatgccgtgcgcgtgcgtttgcagcagctttcgccgtcgtcgttgccgtccaca
tcttcctcatcatga

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