| Entry |
|
| Definition |
hypothetical protein
|
| Orthology |
|
| Organism |
smo Selaginella moellendorffii
|
| Pathway |
| Glycolysis / Gluconeogenesis | | Purine metabolism | | Pyruvate metabolism | | Carbon fixation in photosynthetic organisms | | Metabolic pathways | | Biosynthesis of secondary metabolites | | Biosynthesis of amino acids |
|
| Module |
| Glycolysis (Embden-Meyerhof pathway), glucose => pyruvate | | Glycolysis, core module involving three-carbon compounds | | Adenine ribonucleotide biosynthesis, IMP => ADP,ATP | | Guanine ribonucleotide biosynthesis IMP => GDP,GTP |
|
| Class |
Metabolism; Carbohydrate metabolism; Glycolysis / Gluconeogenesis [PATH: smo00010]
Metabolism; Carbohydrate metabolism; Pyruvate metabolism [PATH: smo00620]
Metabolism; Energy metabolism; Carbon fixation in photosynthetic organisms [PATH: smo00710]
Metabolism; Nucleotide metabolism; Purine metabolism [PATH: smo00230]
 |
| SSDB |
   |
| Motif |
 |
| Other DBs |
NCBI-GI: NCBI-GeneID: JGI: UniProt: |
| Position |
Unknown
|
| AA seq |
509 aa  
MEGIFRSSSSDRASLAKTKIVCTLGPKSREIPILENLLRAGMNVARFNFSHGSHDYHRET
VSNLRAAMASTKILCAVMLDTKGPEIRTGMLKDGAPIQLKEGNVITITTDYSIQGNETTI
AMSYKRLAEDLAPGNVILCADGTITFTVVSCDPSAGTIVCRCENTAVLGERKNVNLPGVV
VDLPTVTEKDVKDILEWGIPNSIDFIALSFVRKAQDLINVRKLLSDHHPTAARTIQIISK
IENQEGLVNFDEILRESDAIMVARGDLGMEIPTEKIFLAQKMMIYKCNAAGKPVITATQM
LESMIKCPRPTRAEATDVANAVLDGTDAVMLSGETAAGLYPELAVATMAKICVEAENSLD
YPAIFKAIMDQSLLPLSPLESLASTAVQTAKEVKASLIVVLTRGGTTAKLVAKYRPMVPV
LSIAVPVVRTDSLTWWWSSESPARHSLVVRGLVPLLAQGDWKATEAESCEEIFGAAVKYA
VERKMCRAGESIIALQRIGDAAVIKIIAV |
| NT seq |
1530 nt  +upstreamnt +downstreamnt
atggaaggaatctttcgctctagcagcagcgatcgcgcgtcactggccaagacgaagatc
gtgtgcacgctaggccccaagtctcgcgagatccccattctcgagaatctcctgcgcgcc
ggcatgaatgtggcgcgcttcaatttctcgcacggatctcacgactaccaccgcgaaacg
gtcagcaatctccgcgcggcgatggccagcacgaagatcctgtgcgccgtgatgctcgac
acgaaggggccagagattcgcactggaatgctcaaggatggagctccaatccagctgaaa
gaggggaatgtcatcacgatcaccacggactacagcatccagggcaacgagacgacgatc
gcgatgagctacaagcggctcgcggaggatctagctccagggaacgtgatcctctgcgcc
gacggcacgatcacgttcacggtggtctcctgcgatccaagcgccgggacgatcgtgtgc
cgctgcgagaacacggctgttcttggcgagaggaagaacgtcaatctcccaggcgtcgtc
gtggatcttccaaccgtgaccgagaaggacgtgaaggacatcctggagtggggcattccc
aatagcatcgatttcatcgctctctccttcgtccgcaaggcccaggatctgatcaacgtg
aggaagctcttgagcgatcatcaccccaccgcggcaagaacaatccagatcatctccaag
atcgagaaccaggaaggactggtgaacttcgacgagatcctccgtgagtcggacgcgatc
atggtggccaggggcgatctcggcatggagatcccaacggagaagatcttcctggcgcag
aagatgatgatctacaagtgcaacgccgctggaaagcccgtgatcaccgcgacgcagatg
ctagaatccatgatcaagtgcccgagacccacgagagccgaggccacggacgtcgccaac
gcagtcctcgacggcaccgacgcggtgatgctcagcggtgagaccgccgcggggctctat
ccggagctcgcggtagcaaccatggccaagatctgcgtcgaggccgagaactcgctcgac
tacccggccatcttcaaggcgatcatggatcaatcgctactgccgctcagcccgctcgag
agcctggcttccacggcggtccagacggccaaggaggtgaaagcttcgctcatcgtggtg
ctgacgcggggtggtaccacggcgaagctggtagcgaagtatcgaccaatggtaccggtt
ctatcgatcgcggtgccggtggtgaggacggatagcttgacgtggtggtggagtagcgag
tctccggcgcggcatagcttggtggtgaggggattggtgccattgctagcgcaaggagac
tggaaggcaacggaggcggagtcttgcgaggagatttttggggcggcggtgaagtatgct
gtggagaggaagatgtgccgagctggggaatcgattatagcgctccagaggattggggat
gctgcggtgatcaagatcattgcagtgtga |