KEGG   Arabidopsis thaliana (thale cress): AT3G60750Help
Entry
AT3G60750         CDS       T00041                                 

Definition
(RefSeq) transketolase
  KO
K00615  
transketolase [EC:2.2.1.1]
Organism
ath  Arabidopsis thaliana (thale cress)
Pathway
Pentose phosphate pathway
Carbon fixation in photosynthetic organisms
Metabolic pathways
Biosynthesis of secondary metabolites
Carbon metabolism
Biosynthesis of amino acids
Module
Pentose phosphate pathway (Pentose phosphate cycle)
Pentose phosphate pathway, non-oxidative phase, fructose 6P => ribose 5P
Reductive pentose phosphate cycle (Calvin cycle)
Reductive pentose phosphate cycle, glyceraldehyde-3P => ribulose-5P
Oxygenic photosynthesis in plants and cyanobacteria
Brite
KEGG Orthology (KO) [BR:ath00001]
 Metabolism
  Overview
   01200 Carbon metabolism
    AT3G60750
   01230 Biosynthesis of amino acids
    AT3G60750
  Carbohydrate metabolism
   00030 Pentose phosphate pathway
    AT3G60750
  Energy metabolism
   00710 Carbon fixation in photosynthetic organisms
    AT3G60750
  Metabolism of terpenoids and polyketides
   01051 Biosynthesis of ansamycins
    AT3G60750
Enzymes [BR:ath01000]
 2. Transferases
  2.2  Transferring aldehyde or ketonic groups
   2.2.1  Transketolases and transaldolases
    2.2.1.1  transketolase
     AT3G60750
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif Motif
Other DBs
NCBI-ProteinID: 
NCBI-GeneID: 
MIPS: 
TAIR: 
UniProt: 
Position
3
AA seq 741 aa AA seqDB search
MASTSSLALSQALLARAISHHGSDQRGSLPAFSGLKSTGSRASASSRRRIAQSMTKNRSL
RPLVRAAAVETVEPTTDSSIVDKSVNSIRFLAIDAVEKAKSGHPGLPMGCAPMAHILYDE
VMRYNPKNPYWFNRDRFVLSAGHGCMLLYALLHLAGYDSVQEEDLKQFRQWGSKTPGHPE
NFETPGIEVTTGPLGQGIANAVGLALAEKHLAARFNKPDAEVVDHYTYAILGDGCQMEGI
SNEACSLAGHWGLGKLIAFYDDNHISIDGDTEIAFTENVDQRFEALGWHVIWVKNGNTGY
DEIRAAIKEAKTVTDKPTLIKVTTTIGYGSPNKANSYSVHGAALGEKEVEATRNNLGWPY
EPFQVPDDVKSHWSRHTPEGATLESDWSAKFAAYEKKYPEEASELKSIITGELPAGWEKA
LPTYTPESPGDATRNLSQQCLNALAKVVPGFLGGSADLASSNMTLLKAFGDFQKATPEER
NLRFGVREHGMGAICNGIALHSPGLIPYCATFFVFTDYMRGAMRISALSEAGVIYVMTHD
SIGLGEDGPTHQPIEHIASFRAMPNTLMFRPADGNETAGAYKIAVTKRKTPSILALSRQK
LPHLPGTSIEGVEKGGYTISDDSSGNKPDVILIGTGSELEIAAQAAEVLRKDGKTVRVVS
FVCWELFDEQSDEYKESVLPSDVSARVSIEAASTFGWGKIVGGKGKSIGINSFGASAPAP
LLYKEFGITVEAVVDAAKSFF
NT seq 2226 nt NT seq  +upstreamnt  +downstreamnt
atggcttctacttcttccctcgctctctctcaagctctcctagctcgtgcaatctctcac
catggttctgaccaacgtggatctttaccagctttctctggactcaaatccaccggttca
cgcgcctcagcttcgtctcgtcgacgtatcgctcaatccatgaccaaaaaccgatctctc
cgtcctcttgttcgcgctgcagctgttgagactgttgagccaaccactgattcgtcgatt
gtggacaaatcggtcaactcgattaggtttttggctatcgatgcggtggagaaggccaaa
tcaggtcatcctggtcttcctatgggttgtgctccgatggctcacattttgtatgatgag
gtcatgaggtataaccccaagaacccttattggttcaaccgtgaccgattcgttctatct
gctggacatggatgtatgttgctctacgcgttgcttcatcttgccggctacgacagcgtc
caggaggaagatttgaagcagttccgtcaatggggaagcaagacaccaggacatcctgag
aatttcgagactcctggaattgaagtcactactggtcctcttggacaaggaatcgctaat
gctgttggtttagctcttgctgagaagcatttggctgctagattcaacaaacctgatgct
gaagtagtcgaccactacacatatgcgatccttggagatggttgtcagatggagggtatt
tctaatgaagcttgctctctagctggccattggggacttggaaagctcattgctttctac
gatgacaatcacatttctatagatggagacacagaaattgccttcactgagaacgtggac
cagcgatttgaagcccttggatggcatgttatctgggtgaagaatggaaacactgggtat
gacgagatccgtgctgccattaaggaagctaaaactgttactgacaagcctactttgatc
aaggtcactactaccattggttatgggtctcccaacaaggcgaactcatacagtgtccat
ggagctgcacttggcgagaaggaagttgaggctaccagaaataaccttggatggccgtat
gagccgttccaggtacctgacgatgtaaaaagccactggagtcgtcatacacctgaagga
gctactcttgaatctgactggagtgcaaagtttgcagcatatgaaaagaagtacccagag
gaagcttctgagttgaaatctattatcactggtgaattacctgctggctgggagaaggct
ctacctacatacacaccagagtctccaggtgatgccaccagaaacctgtcacagcaatgt
cttaacgcccttgctaaagttgttcccggtttccttggtggaagtgctgaccttgcatca
tccaacatgacattgctgaaagcctttggcgacttccaaaaggccacacctgaagaaaga
aatcttaggtttggtgttagggagcacggaatgggagccatctgcaatggcattgccctt
cacagccccggtcttatcccttactgtgcgacgttctttgtcttcaccgactacatgaga
ggtgccatgagaatctcagctttgtctgaagctggtgttatctatgttatgacccatgat
tccattggtcttggagaagatggaccaacccatcagcccattgagcacattgcaagtttc
cgtgctatgcccaacactcttatgttccgtcctgctgatggaaatgaaacagccggtgca
tacaagatcgctgtcaccaagcgcaagacaccatctatcttagctctgtctaggcaaaag
ctgcctcatcttccaggtacatccatcgaaggagtggaaaagggtggatatacaatttct
gacgactcttcaggcaacaaacccgatgtgatcttgattggaactggttctgagctagag
attgctgcacaggctgcggaggtgctcaggaaagacggcaaaaccgttagagttgtttct
ttcgtgtgctgggaactatttgacgagcaatcagatgaatacaaggagagtgtgttgcca
tcggatgtatcagctagagttagcattgaagcagcttcgactttcggatggggaaagatt
gttggaggcaaaggaaagtccattggtattaattcattcggagccagcgcaccagcaccc
ttactctacaaggagtttggtatcaccgttgaagctgttgttgatgcggccaagtcattc
ttctaa

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