Bradyrhizobium xenonodulans: I3J27_00710
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Entry
I3J27_00710 CDS
T09324
Name
(GenBank) heavy metal translocating P-type ATPase
KO
K17686
P-type Cu+ transporter [EC:
7.2.2.8
]
Organism
bxn
Bradyrhizobium xenonodulans
Brite
Enzymes [BR:
bxn01000
]
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
I3J27_00710
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Gene cluster
GFIT
Motif
Pfam:
E1-E2_ATPase
Hydrolase
YHS
HMBD
Hydrolase_3
HAD
Hydrolase_6
TRASH_HVO_1752_C
Motif
Other DBs
NCBI-ProteinID:
WBL78983
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Position
153945..156401
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AA seq
818 aa
AA seq
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MNDADHEHHHDGEAHSGCGCSTKAAAAKPAASSCCGGHGDQAPHAHHHGHDHGAAATKVL
DPVCGMTVDPATSKHSLTHHGETFHFCSAGCRGKFAADPAKYLAKDKASAPEMPEGTIYT
CPMHPEIRQVGPGTCPICGMALEPEVASLETGPNPELADMTRRFWIGGALALPAVVLEMG
GHLAGPHNWIDQTLSNWIQLVFATPVVVWAGWPFFVRGWQSLLTRNLNMFTLIAMGTGVA
YVYSLIGTIAPQIFPATFRGHEGAVAVYFEAAAVITVLVLLGQVLELRARDATSGAIKAL
LQLAPKTARRVDADGSEHEVEIDALHAGDRLRVRPGEKVPVDGTILKGRSSLDESLVTGE
SMPVTKETGAKVIAGTLNQSGGFVMRADKVGRETLLSQIVQMVADAQRSRAPIQRLADQV
AGWFVPTVIVVAIAAFAAWAWFGPEPRLAFGLVAAVSVLIIACPCALGLATPMSIMVGVG
RGAQGGVLIKNAEALERMEKIDTLVVDKTGTLTEGKPKVVAIVPAAGFAEDELLRIAASV
ERASEHPLADAIVRAAKEKQLSLSQVEQFDSPTGKGATGKVDGKTIVLGNARYLTSIGVD
TKPLDAEAEHLRGDGATVINMAVDGTLAGLLAIADPVKASTPEALKALAAEGIKVIMLTG
DNRTTAEAVARRLGIAEVEAEVLPDQKSAVVTKLQKAGRSVAMAGDGVNDAPALAAAEVG
IAMGTGTDVAMESAGVTLLKGDLTGIVRARRLSQATMSNIRQNLFFAFIYNAAGIPIAAG
ILYPAFGVLLSPIIAAAAMALSSVSVVGNALRLRATRL
NT seq
2457 nt
NT seq
+upstream
nt +downstream
nt
atgaacgacgcggaccacgagcatcatcacgacggggaagcgcattcgggatgcggctgt
tccacgaaggctgcggcggcgaagccggcggcctcctcctgttgcggcggacacggcgat
caagccccccatgcgcatcatcacggccatgaccatggcgccgccgcgacaaaggtcctc
gatcccgtctgcggcatgacggtcgatcccgcgacctcgaagcacagcctcacgcatcac
ggcgagaccttccatttctgttcggccggctgccgcggcaaattcgccgccgatccggca
aagtatctcgccaaggacaaggcctccgcgccggagatgcctgagggcacgatctacacc
tgcccgatgcatccggagatccgccaggtcggacccggcacctgcccgatctgcggcatg
gcgctggagccggaggtcgcgagcctggagaccggtcccaaccctgagctcgccgacatg
acgcgacggttctggatcggcggcgcgctggcgctgccggccgtggtgctggagatgggt
ggccatctcgccggtccgcacaactggatcgaccagacgctctcgaactggatccagctc
gtcttcgcgacgcccgtggtggtgtgggccggctggccgttcttcgtccgcggctggcag
tcgctgctgacgcgcaacctcaacatgttcacactgatcgcgatgggcacgggcgttgcc
tatgtctacagcctgattggcaccatcgcgccgcagattttccccgcgacgttccgcggc
catgaaggcgcggttgccgtctatttcgaggcggctgcggtcatcaccgtgctggtgctg
ctcggccaggtgctggagctgcgggcgcgcgatgcgacctccggcgcgatcaaggcgctg
ctccagctggccccgaagaccgcgcgccgggtcgatgccgatggcagcgagcatgaggtc
gagatcgacgcgcttcatgccggcgatcgcctgcgggtgcgccccggcgagaaggtgccg
gtcgacggaaccattctcaagggccgctcgtcgctcgacgaatcgctcgtgacgggcgaa
tccatgccggtcaccaaggagaccggcgccaaggtcattgccggcacgctcaaccagtcc
ggcggcttcgtcatgcgcgccgacaaggtcgggcgcgagacgctgctgtcgcagatcgtg
cagatggtcgccgacgcgcaacgctcgcgcgcgccgatccagcggctggccgatcaggtc
gcaggctggttcgtgcccacggtaatagtcgtcgccatcgccgccttcgccgcctgggcc
tggttcgggccggagccgcggcttgcctttggtctcgtcgccgccgtcagcgtgctcatc
atcgcctgcccctgtgcgctcggtcttgcgaccccgatgtcgatcatggtcggcgtcggc
cgcggcgcgcaaggcggcgtgctgatcaagaacgccgaggcgctggagcggatggagaag
atcgacacgctggtggtcgacaagacgggcacgctgaccgagggcaagccgaaggtggtc
gcgatcgttcccgccgccggctttgcggaagacgagctgctccgtatcgcagccagcgtc
gagcgcgccagcgagcatccgctcgcggatgccatcgtgcgcgcggcgaaggagaagcag
ctcagtctcagccaggtcgagcaattcgattcgccgaccggcaagggggcgaccggcaag
gtcgatggcaagaccatcgtgctcggcaatgcccgatatctgacgtcgatcggcgtcgac
accaaaccgctcgacgccgaggccgagcacctgcgtggcgacggcgccaccgtgatcaac
atggccgtcgacggcacgctcgccggcctgcttgcgattgccgatccggtcaaggcctcg
accccggaggcgctgaaagcgcttgccgccgaaggcatcaaggtgatcatgctgacaggc
gacaaccgcaccacggcggaggcggtggcgcgacggctcggcattgccgaggtcgaggcc
gaggtgctgccggaccagaagagcgcggtggtgacaaagctgcaaaaggccggccgcagc
gtcgcgatggccggcgacggcgtcaacgacgcaccggcgctggcggccgccgaagtcggc
atcgccatgggcaccggcaccgatgtggcgatggagagcgccggcgtcaccctgctgaag
ggcgatctcaccggcatcgtgcgggcgcgaaggctgtcgcaagcgacgatgagcaacatc
cggcaaaacctgttctttgcgttcatctacaacgccgccggcattcccatcgcggccggc
atcctctatccggcgttcggcgtgctgctctcgccgatcatcgcagcggcagcgatggcg
ctatcctcggtcagcgtggtcggaaatgcgctgcggctacgcgcgacgcgtttatga
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