Mucisphaera calidilacus: Pan265_10500
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Entry
Pan265_10500 CDS
T07838
Symbol
metX
Name
(GenBank) Homoserine O-acetyltransferase
KO
K00641
homoserine O-acetyltransferase/O-succinyltransferase [EC:
2.3.1.31
2.3.1.46
]
Organism
mcad
Mucisphaera calidilacus
Pathway
mcad00270
Cysteine and methionine metabolism
mcad00920
Sulfur metabolism
mcad01100
Metabolic pathways
mcad01110
Biosynthesis of secondary metabolites
mcad01230
Biosynthesis of amino acids
Brite
KEGG Orthology (KO) [BR:
mcad00001
]
09100 Metabolism
09102 Energy metabolism
00920 Sulfur metabolism
Pan265_10500 (metX)
09105 Amino acid metabolism
00270 Cysteine and methionine metabolism
Pan265_10500 (metX)
Enzymes [BR:
mcad01000
]
2. Transferases
2.3 Acyltransferases
2.3.1 Transferring groups other than aminoacyl groups
2.3.1.31 homoserine O-acetyltransferase
Pan265_10500 (metX)
2.3.1.46 homoserine O-succinyltransferase
Pan265_10500 (metX)
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
MetW
Abhydrolase_1
Methyltransf_11
Methyltransf_31
Methyltransf_23
Methyltransf_25
Methyltransf_12
Abhydrolase_6
mRNA_G-N7_MeTrfase
Ubie_methyltran
FtsJ
MTS
Methyltransf_9
Motif
Other DBs
NCBI-ProteinID:
QDU71201
UniProt:
A0A518BW68
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All DBs
Position
1313641..1315470
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AA seq
609 aa
AA seq
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MNPSLPTSTDDVRDAGALRYGQAVALDGSVDLVHGGRLDEVTVCYESWGRLNAARDNAVL
ICHAISGDSHAASHDAEDTPGWWEHLIGPGKPVDTDRFFVICMNVLGGCRGTTGPNSVNP
ATGRAYGPDFPAITLEDIVDVQARALTKLGIDRLLAVVGGSLGGQQALVWGTRHGVRVRL
VVPVATAPRLSTQALAFDVVGRNAIMSDPAFAGGRYMESGGTPATGLAIARMLGHITYLS
REAMDQKFEADRLRPHDIVTEFEKRFSVGSYLAHQGNKFVERFDANSYVTLTLAMDMFDM
GREAASLRRAFADSPCRWLLLSFSSDWLFPPRQSCEVVDALVAEGKRVTYCELPSPAGHD
AFLLPDEVERYGSLIGARLEQELLGEVRTHGPTRCALSDMPTVRSDSSPTVFAKARRDYD
RILELIPAGSRVLDLGCGEGELLSRLRSRGHEGLMGIDVAEARIIETARAGHEVIDHDMN
EGLPQFADGAFDVVLLSQTLQALPNVSLVLSEMVRVGRRAVVSFPNFAFWKIREMLYKEG
RSPKSVGEYGYEWHNTPNRRFPSIADFEDFCAKQGLVVHRAVHLDSEAGEEVAEDPNRNA
DLSIFVLSR
NT seq
1830 nt
NT seq
+upstream
nt +downstream
nt
atgaacccgagcctgcccaccagtacggatgatgttcgagacgccggggcgttgcggtat
ggccaggcggtggcgctggatggttctgtggatctggtgcacggcggtcgcctggatgag
gtgacggtctgttacgagtcgtggggacggttgaatgcggcgcgggacaacgcggtgctg
atctgccacgcgatctcgggcgactcgcacgccgcgtcgcatgatgcggaggatacgccg
ggctggtgggagcatttaatcggcccgggcaagcctgtggacacggaccggttcttcgtg
atctgcatgaatgtgctgggcggttgtcgcgggacgaccgggcccaacagcgtgaatccg
gcgacgggtcgggcgtacggtccggatttcccggcgatcacgcttgaggacatcgtggac
gttcaggcgcgtgccttaaccaagctggggatcgatcggttgctggcggtggtggggggg
tcgctgggcggtcagcaggcgttggtgtgggggacgcgacacggagtgcgtgtgcgtctg
gtggttccggtggcaacggcaccgcgtctttcgacgcaggcgttggcgtttgatgtggtg
ggccgcaacgccatcatgagtgatccggcgtttgcgggcggtcgttacatggagtcgggt
gggacgccggcgacagggctggcgatcgcgcggatgctggggcacatcacatatctgtcg
cgcgaggcgatggatcagaagtttgaggcggatcggcttcggccacacgacatcgtgacg
gagttcgagaagcgattttcggttgggtcgtatctggcgcatcagggaaacaagttcgtc
gagcgtttcgacgcgaactcgtatgtgacgctgacgctggcgatggacatgtttgacatg
gggcgggaggcggcgtcgttgcgtcgggcgtttgcggattcgccttgccggtggcttttg
ctgagcttttcgagcgactggctgttcccgccgcggcagagctgcgaggtggtggatgcg
ctggtggctgaaggcaagcgggtgacgtactgcgagctgcccagcccggcgggtcacgac
gcgttcctgctgcctgatgaggtggaacggtacggctcgctgatcggtgcgcggctggag
caggagttgctgggcgaggtgcggacgcacgggccgacgcgttgtgcgctgtcggatatg
ccaacggtgcggagtgacagcagcccgacggtgttcgcgaaggctcggcgggactacgac
cggattcttgagttgattccggcggggtcgcgggtgctggacctggggtgtggcgagggc
gagttgctgagtcgattgcggtcgcgggggcatgaggggttgatggggatcgacgttgcg
gaggcgaggatcatcgagacggcgcgagcgggtcatgaggtgatcgaccacgacatgaac
gaggggctgccgcagttcgcggatggtgcgtttgacgtggtgttgttgtcgcagacgttg
caggcgttgccgaacgtttcgctggtgctctcggagatggtgcgtgtggggcgtcgcgcg
gtggtgagtttcccgaacttcgcgttctggaagatccgggagatgctctacaaggagggg
cgttcgccgaagtccgtgggcgagtacgggtatgaatggcacaacacgccaaaccgtcga
ttcccgtcgatcgcggattttgaagacttctgcgcgaagcaggggctggtggtgcaccgg
gcggtgcatctggacagtgaggcgggcgaggaggttgcggaggatccgaaccgcaacgcg
gacctgtcgatctttgtgttgtcccggtga
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