KEGG   Mucisphaera calidilacus: Pan265_10500
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
mcad01120  Microbial metabolism in diverse environments
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)
SSDB
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
Other DBs
NCBI-ProteinID: QDU71201
UniProt: A0A518BW68
LinkDB
Position
1313641..1315470
AA seq 609 aa
MNPSLPTSTDDVRDAGALRYGQAVALDGSVDLVHGGRLDEVTVCYESWGRLNAARDNAVL
ICHAISGDSHAASHDAEDTPGWWEHLIGPGKPVDTDRFFVICMNVLGGCRGTTGPNSVNP
ATGRAYGPDFPAITLEDIVDVQARALTKLGIDRLLAVVGGSLGGQQALVWGTRHGVRVRL
VVPVATAPRLSTQALAFDVVGRNAIMSDPAFAGGRYMESGGTPATGLAIARMLGHITYLS
REAMDQKFEADRLRPHDIVTEFEKRFSVGSYLAHQGNKFVERFDANSYVTLTLAMDMFDM
GREAASLRRAFADSPCRWLLLSFSSDWLFPPRQSCEVVDALVAEGKRVTYCELPSPAGHD
AFLLPDEVERYGSLIGARLEQELLGEVRTHGPTRCALSDMPTVRSDSSPTVFAKARRDYD
RILELIPAGSRVLDLGCGEGELLSRLRSRGHEGLMGIDVAEARIIETARAGHEVIDHDMN
EGLPQFADGAFDVVLLSQTLQALPNVSLVLSEMVRVGRRAVVSFPNFAFWKIREMLYKEG
RSPKSVGEYGYEWHNTPNRRFPSIADFEDFCAKQGLVVHRAVHLDSEAGEEVAEDPNRNA
DLSIFVLSR
NT seq 1830 nt   +upstreamnt  +downstreamnt
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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