Mercurialis annua (annual mercury): 126673216
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Entry
126673216 CDS
T10153
Name
(RefSeq) uncharacterized protein LOC126673216 isoform X1
KO
K01738
cysteine synthase [EC:
2.5.1.47
]
Organism
mean Mercurialis annua (annual mercury)
Pathway
mean00270
Cysteine and methionine metabolism
mean00920
Sulfur metabolism
mean01100
Metabolic pathways
mean01110
Biosynthesis of secondary metabolites
mean01200
Carbon metabolism
mean01230
Biosynthesis of amino acids
mean01320
Sulfur cycle
Module
mean_M00021
Cysteine biosynthesis, serine => cysteine
Brite
KEGG Orthology (KO) [BR:
mean00001
]
09100 Metabolism
09102 Energy metabolism
00920 Sulfur metabolism
126673216
09105 Amino acid metabolism
00270 Cysteine and methionine metabolism
126673216
Enzymes [BR:
mean01000
]
2. Transferases
2.5 Transferring alkyl or aryl groups, other than methyl groups
2.5.1 Transferring alkyl or aryl groups, other than methyl groups (only sub-subclass identified to date)
2.5.1.47 cysteine synthase
126673216
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Motif
Pfam:
PALP
PRMT5
Motif
Other DBs
NCBI-GeneID:
126673216
NCBI-ProteinID:
XP_050223205
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Position
LG3:complement(3295723..3303337)
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AA seq
646 aa
AA seq
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MEEKCGIKKDVTELIGNTPMVYLNNILEGCDVRIAAKLENMEPCYSVKDRIAYSMIKDAE
EKGLITPGKTVLVEVTSGNTGIAMASIAAAKGYKVIIVMPAIKSLERRIIMLAFGAELYL
TDPSKGYNEIIKKAEEIMRNTPNAYMLHQFENPANPKIHYETTGPEIWKDSGGKVDVLVA
GIGTGGTVTGAGKFLKEKNPGIKVYGVEPTESAVLNGGKPGYHMIQGLGAGIVPRVLDVG
MLDEVVTVSSEEAIETTRLLALKEGLLVGISSGAVTAAAIKLAKRPENSGKLIVVPSALV
PSHEAIEAGKDAYRRLAEYQEDMENNFAIKKDITELIGNTPLVYLNKIVDGCVARIAAKL
EMFEPTASVKDRIAYSMIQDAEDKGLITPGKTVLVEPTSGNTGIGLAAIAAVKGYKIILT
MPASSSIERKTVLRAFGAEVCLSDPVRAFPGALEKAEEILSKTPDGYMLQQFDNPANPKI
HYETTGPEIWRDTGGEVDILVAGVGTGGTVTGAGRYLKEKKTEIKVYGIEPAESAVLNGE
KSGPHLIQGLGAGVIPNVLDIELLDEVFKISGEEAIETAKQLALKEGLLVGISSGAAAAA
AIRLAKRPENAGKLIVVIFPSFGERYLSSKLFDSIRLEVESMTYVE
NT seq
1941 nt
NT seq
+upstream
nt +downstream
nt
atggaagagaagtgtggaatcaagaaggatgttactgagttaataggtaatactcctatg
gtatatctcaacaatatcttggaaggttgtgatgtacgaattgctgcgaagcttgagaat
atggaaccttgttatagtgttaaagacaggattgcctacagtatgatcaaagacgcagaa
gaaaagggcttaattacaccaggcaagactgttcttgtcgaggttactagtggaaatacc
ggtattgctatggcatcaatagctgcagcaaaaggttacaaggttatcatagtcatgcca
gctatcaagagtcttgagagaaggattataatgttagcttttggagctgagttgtaccta
acagatccgagcaagggctataatgagattattaagaaggccgaggagataatgagaaat
acaccaaatgcttatatgcttcatcaatttgaaaatcctgctaatccaaagattcattat
gaaaccacgggcccagagatttggaaagactcgggaggtaaagttgatgtcttggtcgct
ggaatagggacaggtggtacagtaactggtgcaggcaaattccttaaggagaaaaaccca
ggcatcaaggtttacggtgttgaaccaactgaaagtgcagtcttgaatggaggaaaacct
ggttatcatatgattcaaggactaggtgctggtattgtgccgcgtgttctggatgttggc
atgcttgatgaagttgttacagtatcaagtgaggaagctatagaaactaccaggctgctt
gctttgaaggaaggtctgctggtgggaatatcatctggtgctgtgactgctgctgctata
aagttggcaaagagaccagaaaattctgggaaactcattgttgtaccatcggctttggtg
ccaagtcatgaagctattgaagctggtaaagatgcttacagaaggcttgctgagtaccaa
gaagatatggagaacaactttgcaatcaagaaagacatcactgagctaataggaaatacc
cctttggtatatctgaataagattgtagatggttgtgtagctcgcattgctgccaaactt
gaaatgtttgaacctactgctagtgtcaaagacagaattgcatacagcatgattcaagat
gcagaagataagggcttgattactccagggaagactgtccttgttgaacctacaagtggt
aacactggcattggtttagcagcaattgctgcagtgaagggttacaaaattatactcaca
atgcctgcttcaagtagtattgaaagaaaaactgttctacgagcattcggagctgaggtt
tgcctttctgatccagtaagggcatttccaggggctcttgagaaggcagaggagattctg
agtaaaacacctgatgggtacatgcttcagcaatttgacaatcctgcaaatccaaagatt
cattatgagaccactggcccagaaatatggagagacacgggaggagaagtcgatatcttg
gttgcaggagttggaactggtggtactgtgactggagctgggagatacctcaaggagaaa
aaaaccgagattaaggtgtatggtatagaaccagctgaaagtgctgttctaaatggtgaa
aaatccggcccgcatctgatccaaggacttggtgccggtgttattcctaatgttttggat
attgagttgctggatgaagttttcaaaatatcaggggaagaagccattgaaactgctaag
cagcttgccttgaaagaaggtttgctggttgggatatcttcaggagcagctgcagctgct
gcaattagattggcaaaaaggcctgaaaatgcaggcaaactcattgttgttatattcccc
agttttggagagcgttacttgtcttccaagctttttgattcaattaggctggaagtggaa
agtatgacttatgttgaataa
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