Amycolatopsis mediterranei U32: AMED_3510
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Entry
AMED_3510 CDS
T01269
Name
(GenBank) heavy metal translocating P-type ATPase
KO
K17686
P-type Cu+ transporter [EC:
7.2.2.8
]
Organism
amd
Amycolatopsis mediterranei U32
Brite
Enzymes [BR:
amd01000
]
7. Translocases
7.2 Catalysing the translocation of inorganic cations
7.2.2 Linked to the hydrolysis of a nucleoside triphosphate
7.2.2.8 P-type Cu+ transporter
AMED_3510
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Gene cluster
GFIT
Motif
Pfam:
E1-E2_ATPase
Hydrolase
HMA
Hydrolase_3
HAD
Motif
Other DBs
NCBI-ProteinID:
ADJ45296
UniProt:
A0A0H3D3S7
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Position
3799702..3801969
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AA seq
755 aa
AA seq
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MGSTTAGSGPVTELELAIGGMTCASCANRIERKLNKLDGVTASVNYATEKARVHAPEGVD
PATLVATVEAAGYHATLPRPEKAIESEVDEGDPARPLRQRLITSAVLAVPVILPAMVPAL
QFTYWQWISLTLAAPVVTWGAWPFHRAAWTNLRHGAATMDTLVSMGVLAAAAWSVWALLF
GKAGTPGMVHPFELTIEPSDGAGNIYLEVAAGVTTFILAGRYFEARSKRRAGAALRALLE
LGAKEVAVLRAGAEVRIPTSALVAGDRFVVRPGEKIATDGVVEEGKSAVDASMLTGESVP
VEVGEGDVVTGATVNAGGRLVVRATRVGAGTQLAQMAQLVEAAQSGKAEVQRLADRVSGV
FVPIVIGLAAATLGFWLGTDVGLAAAFTAAVAVLIIACPCALGLATPTALLVGTGRGAQL
GVLIKGPEVLESTRRVDTVVLDKTGTVTAGRMTLVGVHPAEGVDETELLRLAGALENASE
HPIAAAVARGARERVDLPAVEDFTNVEGLGVQGVVEGHAVLVGRTALLDDWSQPLPDDLA
AAKAAAEERGHTAVAVAWDGAARGVLLVADTVKPTSAEAVAQLRALGLTPVLLTGDNTAV
ANAVAAEVGIDEVIAEVLPADKLDVVKRLQDEGKVVAMVGDGVNDAPALAQADLGLAMGT
GTDVAIEASDITLVRGDLRAVADAIRLSRRTLRTIKGNLFWAFAYNLAALPLAAAGLLNP
MIAGAAMAFSSVFVVGNSLRLRGFTSGSATRPNRA
NT seq
2268 nt
NT seq
+upstream
nt +downstream
nt
atgggcagcaccacggccggctccggcccggtgaccgagctcgaactcgcgatcggtggc
atgacctgcgcctcgtgcgcgaatcgcatcgagcgcaagctcaacaagctcgacggcgtc
accgcgtcggtcaactacgccaccgagaaggcacgcgtgcacgcgccggagggcgtcgac
ccggccacgctggtggccacggtcgaggccgccggttaccacgcgaccctgccgcggccg
gagaaagccatcgagtccgaagtggacgaaggggacccggcgcgcccgctgcggcagcgg
ctgatcaccagcgcggtgctcgcggtgccggtgatcctgccggccatggtgccggccctg
cagttcacgtactggcaatggatttcgctgacgctggccgcgccggtcgtcacctggggt
gcctggccgttccaccgggcggcgtggacgaacctgcgccacggcgccgcgaccatggac
accctggtgtcgatgggcgtgctcgcggcggccgcgtggtcggtgtgggcgctgctgttc
ggtaaggccgggacgccggggatggtgcacccgttcgagctgacgatcgagccgtccgac
ggcgccggcaacatctacctggaggtcgccgccggcgtcaccacgttcatcctggccggc
cgctacttcgaggcgcggtccaagcgccgcgccggggcggcgctgcgggcgctgctggag
ctgggcgcgaaagaggtcgcggtgctgcgagccggtgccgaggtccgcatcccgacctcc
gcgctggtggcgggggaccggttcgtcgtgcggcccggcgagaagatcgccaccgacggc
gtggtcgaggaaggcaagtcggccgtcgacgcttcgatgctcaccggcgagtcggtgccc
gtcgaagtcggcgaaggggacgtcgtcactggcgcgaccgtcaacgccggtggccggctg
gtcgtgcgggccacccgggtcggcgccggcacgcagctggcgcagatggcccagctcgtc
gaagccgcccagagcggcaaggccgaggtccagcgcctggccgaccgggtgtccggggtt
ttcgtgccgatcgtgatcggcttggcggccgccacgctcggcttctggctcggcaccgac
gtcggcctggcggccgcgttcaccgccgcggtcgcggtgctgatcatcgcctgcccgtgc
gcgctcggcctggccacgccgacggcgctgctcgtcggcaccggccgcggcgcccagctc
ggcgtgctgatcaaggggccggaagtgctggagtcgacccgccgggtcgacaccgtcgtg
ctcgacaagaccggcacggtcaccgcgggccggatgacgctcgtcggcgtgcacccggcc
gagggtgtcgacgagaccgagctgctgcggctggccggcgcgctcgagaacgcgtccgag
cacccgatcgcggcggccgtcgcccgtggtgcccgggagcgcgtcgacctgcccgcggtc
gaagacttcacgaacgtcgaaggcctcggggtccagggcgtggtcgaggggcacgcggtc
ctggtcggccgcacggccctgctggacgactggagccagccgctgccggacgacctcgcg
gccgcgaaggcggcggcggaggagcgcgggcacaccgcggtcgcggtggcctgggacggc
gcggcccgcggtgtcctgctggtcgccgacaccgtcaagccgacgtcggccgaggccgtc
gcccagctgcgggcgctgggcctgaccccggtgctgctgaccggggacaacacggcggtg
gccaacgctgtcgcggcggaagtgggcatcgacgaggtgatcgccgaagttctcccggcg
gacaagctggacgtcgtcaagcggctgcaggacgagggcaaggtcgtcgccatggtcggc
gacggcgtcaacgacgcgccggcgctggcccaagccgacctcgggctggccatgggcacc
ggcacggacgtcgcgatcgaggcgagcgacatcacgctggtccgcggcgacctgcgcgcg
gtggccgacgcgatccggctgtcgcggcggacgttgcggacgatcaagggcaacctgttc
tgggcgttcgcctacaacctggcggcgctgccgctggccgcggcgggcctgctgaacccg
atgatcgcgggtgcggcgatggcgttcagttcggtgttcgtcgtcggcaacagcctgcgg
ctgcgcggcttcacgtccggttcggcgacccggccgaaccgggcctga
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