Chitinibacter mangrovi: ABHF33_16120
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Entry
ABHF33_16120 CDS
T11125
Name
(GenBank) heavy metal translocating P-type ATPase
KO
K17686
P-type Cu+ transporter [EC:
7.2.2.8
]
Organism
cmav Chitinibacter mangrovi
Brite
Enzymes [BR:
cmav01000
]
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
ABHF33_16120
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Gene cluster
GFIT
Motif
Pfam:
E1-E2_ATPase
Hydrolase
HMA
Hydrolase_3
HAD
DUF6286
DUF6724
Psg1
Motif
Other DBs
NCBI-ProteinID:
XBM00557
UniProt:
A0AAU7F7P8
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Position
complement(3422044..3424473)
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AA seq
809 aa
AA seq
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MTSSTLALNADRELRLNIAGMSCASCVAHIEEALLATPGVTSAAVNLAMETAQVQFKAGL
DEARVLEAVVKAGYSAKLANAPKLEAEQTIKLNISGMTCASCVSRIEQALLATHGVVSAS
VNLATETAQVVLQSGSDPSVLLDAIAAAGYEASLITDETKKVSSHTKPSPFWPIALGALL
SLPLVLPMLAEPFGVHWMLPTWLQFLLATPVQFWLGARFYRSAWHAVRNLRGNMDLLVSL
GTTAAYGLSLYHWLFDASQGALYFEAGAVIVTLVLLGKWLEARAKQETTAAIKALQALRP
SFARVRKNGRDIEVPLEHVQLGDRVVILPGEQVPVDGVVLEGESQHDESMLTGESVLVSK
EAGSKVTGGAINHDGVLLVETSALSAESTLSRIIRMVEDAQAGKAAIQRLVDQVSAVFVP
VVLVIALLTLLGWWYWTGSIESGILYAVAVLVIACPCALGLATPTAIMAGTGVAAKFGIL
IKDAEALELTHKVQVVVFDKTGTLTEGKPHLAELIANHNEQAELLELAAALQRGSEHPLA
KAVLAKADNAQPFQAENLQALPGRGITGDIAGIRYLLGNQRLMQEKGIDLSSMQLAHDQA
LSQGYTVSWLAREQDFSVIGMLAFSDGIKATAKDAISHLRALGVKTVMLSGDNRAAAQRV
AEQLNLDEVIAEVLPHEKAAHITAIRSQGKVVAMVGDGVNDAPALAAADVGIAMGTGADV
AMHVAGITLMRGDPQLVSQTIEVSRRTYRKIRQNLFWAFIFNAIGIPLAAFGLLNPMIAG
GAMAFSSVSVVSNALLLRRWKPRANRQAA
NT seq
2430 nt
NT seq
+upstream
nt +downstream
nt
atgacaagctctactttagcgttaaacgcagatcgagaattaaggctcaacattgcgggc
atgagctgtgcaagttgtgtggctcatattgaagaagcgttacttgcaacccctggcgtg
accagtgcagctgttaatctggccatggaaacggcgcaggttcaatttaaagcgggtctt
gatgaggcgcgtgtacttgaggcggtggtgaaagcgggttattcggctaaattggccaat
gcgccgaagctcgaagctgaacagacgatcaagctaaatatcagtggcatgacctgtgcc
agttgcgtgagccggatagaacaagctttgttggccacgcatggcgtggtttcagcatca
gtcaatctggcgactgaaaccgcccaagtggtacttcaatcaggctctgatcccagtgtg
ttgctcgatgccatcgctgcagctgggtatgaagccagtttgatcacagatgagacgaag
aaggtatcgtcacacacaaagccttctcctttttggccgatcgccttaggggctttgctg
tctttgccattggtcttgccgatgttggctgagccctttggtgtgcactggatgttgcct
acttggttgcaattcctgctcgcaaccccagtgcagttttggctaggtgcacgcttttat
cgctcagcctggcatgcagttcgcaatctgcgcggcaatatggatttactggtatcactg
gggaccacggctgcgtacggcttgtctttgtatcactggttattcgatgctagccaaggt
gctttgtattttgaagccggtgcggtcatcgtcacgctggtattactcggcaaatggttg
gaagcgcgtgccaaacaagaaactacggcagcgattaaagcattgcaggccttacgccca
tcctttgcccgagtacgtaaaaatgggcgagatatagaagtcccgctggaacatgttcag
ttgggtgatcgggtggtgatcctgccgggtgaacaagtacctgttgatggtgtggtgctt
gaaggcgaaagccagcacgacgaatcaatgctcacaggtgaaagtgtactggtttcgaag
gaagctggtagcaaggtcactggtggagcgattaaccatgatggtgtgctattggttgaa
accagtgctttaagcgctgaaagtacgctctctcgcattattcgcatggtggaggatgca
caagcgggcaaagcagcgattcagcgtctggttgatcaagtgagcgcggtttttgtccca
gtcgttttagtgattgcactgttgaccttgctgggttggtggtactggactggtagtatt
gaaagcggcatcttgtatgcagtggcggtactggtgattgcatgtccttgtgcgctgggt
ttggctacgccgactgcgattatggcgggcaccggagtggcagccaaattcggaatcttg
atcaaagacgccgaagcgttagaactgactcataaagtacaagtggtggtttttgacaaa
acgggtactttgaccgaaggtaaaccccaccttgccgaactcattgctaatcataacgag
caagccgaactattagaactagccgccgcattgcaacgcggtagtgagcacccattagct
aaagcggtacttgccaaagcggataacgctcagccattccaagccgaaaatctgcaagca
ttacctggacgtggcattactggtgatattgcaggtattcgctacttattgggcaaccag
cgcctgatgcaggaaaaagggattgatctgagcagcatgcaattggctcatgatcaagca
cttagccaaggctatacagtgtcatggttagcgcgtgaacaagacttcagcgtaatcggt
atgttggcctttagtgatggcatcaaagccactgccaaagatgcgatttctcacctgcga
gccttaggagtaaaaacggtgatgttgtcgggtgataaccgcgccgcagcacagcgggtt
gctgaacaattgaaccttgatgaagtcatcgccgaagtcttgccacatgaaaaagcggcc
catatcacagcaattcgatcgcaaggtaaagtggtggcgatggtcggtgatggtgtgaac
gatgcgcctgcactggcagcagccgatgttggaattgcaatgggcaccggtgctgatgtg
gcgatgcatgtggcaggtatcacactaatgcgaggggacccacaactggtgagccagacg
attgaagtctcacggcgaacctaccgaaagatccgtcaaaatctgttctgggcatttatc
tttaatgcaattggtattccgctggcggcatttggattactcaatccgatgattgcaggt
ggggcgatggccttctctagtgttagcgtagtatccaatgctctactattaaggcgctgg
aagcctagagccaaccgtcaggcggcttaa
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