Turneriella parva: Turpa_1689
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Entry
Turpa_1689 CDS
T02157
Name
(GenBank) multi-sensor hybrid histidine kinase
Organism
tpx
Turneriella parva
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Response_reg
HATPase_c
HisKA
GAF
PAS_4
PAS
GAF_2
PAS_9
PAS_8
Diguanyl_cycl_sensor
HATPase_c_3
MLTR_LBD
DUF3575
Motif
Other DBs
NCBI-ProteinID:
AFM12337
UniProt:
I4B4Y0
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Position
1692388..1694832
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AA seq
814 aa
AA seq
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MPVAPLPANEAERLEKVKSYHLLDTLAEEAFDELARFASRLCGTPVSLITLIDGKRQWFK
SAVGMARPETPREQTICQHTILQNDLLEIEDSRLDSRTEDNPNVTAEPGVRHYAGIPLTT
ADGYNIGTFCVVDFKPGRLTELQREGFKTLARQAMRLMEFRKLSYEYKALSDRYSALYQY
SPIAELVVDNEGRVVDANDAAAKLLGRQHAEIQGQRAFYEALDETSRHVAADVQTALEAK
GHIEGTELKLHSAAAGLKNVMANTVVLRDESGKRVGAHITLQDITALKAIEAQLVEARAL
AESANRAKSDFLAVMSHEIRTPLNGMIGMVSILKESNLNDEQQRYLGIIERSGAMLMNVI
GNVLDFSKLQADAMERSDTTFDLYQTLSEVYDLFSARAKEKDVELILSIDPKIPRLMISD
QTKLRQIVMNLVSNALKFTDKGGVTMRVSLVEPQAAAEMLRIAVEDSGIGMSAQQLERLF
KPFSQADGSISRRFGGTGLGLSIAKKLTELLGGTIDVQSTIGKGSVFSFAIPAKFDLVSE
QRTEGEFVGTGFFAGRKFLLVDNLPVNLEIVQRMLESLQITVVPCENPKAAPELAQKNQF
DAAILDLNMPGMNGLEVAEALKTISPKTIRILLSSIAVTRSAETENVFHHTLTKPVRREQ
LVYVLSRLLPPQNGTETEEIASRDVLAHQHVLIVEDDSVNQTISRITLEKFGATTDTAAD
GQAALDCASRRDYAFVLLDMHLPDIDGFALAEKLLKVRPSLRLVCFTADVTLVPDARLRQ
VGIIDKLSKPATVQDFAAFLARADWLITPVSSAQ
NT seq
2445 nt
NT seq
+upstream
nt +downstream
nt
atgcctgttgctccgctgccagcgaacgaagcggagcgattagaaaaagttaaatcatac
cacctgctcgacaccctcgctgaagaggcctttgatgaattggcgcgctttgcctcaaga
ctttgcggcaccccggtttctcttatcactctgatcgatggaaaaaggcagtggttcaag
tctgctgtcggcatggcaaggcctgagacgccacgcgagcagacgatctgccagcataca
attttgcagaacgacctgctcgaaatagaagattcgcgccttgattcgcgcaccgaagat
aatcccaatgtaactgctgagcctggcgtgcgccactatgcgggaattcccctcacgacg
gccgacgggtacaacatcggcacattttgtgtggtggactttaagccgggtcggctgaca
gagctgcagcgcgaaggtttcaagacgctcgcgcgccaggcgatgcgcctgatggaattt
cgcaaactttcttacgaatacaaggcgctgagtgaccgctacagtgccctctaccaatac
tcacccatcgccgagctggtcgtggataacgagggcagggtcgtcgacgcgaatgatgcg
gcggcaaaactgctggggcggcagcatgctgaaattcagggccagcgcgctttttatgag
gctctcgatgagacgagcagacatgtcgccgccgatgtgcaaacagcacttgaggcaaag
ggccatatcgaaggcaccgaactaaagttgcacagcgcggcggcggggctaaagaatgtt
atggccaataccgtggttctcagagacgaatcgggtaagcgcgtgggtgcacacataacc
ctgcaggatatcacggcgctcaaagcgatcgaggcgcagctcgtcgaagcgagggctctc
gcagaatcggcgaatcgtgctaaatcggatttcttggccgtgatgagccatgaaattcgc
actccgctcaacggcatgatcggtatggtgagcatacttaaagaatcgaacctcaacgat
gagcagcaacggtatctcggtataatcgagcgcagcggcgccatgctcatgaacgtgatc
ggcaacgtgctggacttttcgaaattgcaagccgacgctatggagcgcagcgacacaacg
tttgacctttaccagaccctgagcgaagtttacgatctgttctcagcacgcgcaaaagaa
aaagatgtcgaactgattctttcgattgacccgaagattccgaggcttatgatcagcgac
cagaccaagctgcgccagatcgtcatgaatttggtttcgaatgcgcttaagttcaccgat
aagggtggtgtcacaatgcgcgtatcgcttgttgaaccccaggcagcagcagagatgctg
cgtatcgcagttgaagacagcggtatcggcatgagcgcgcagcagctcgaaaggttgttt
aaacctttttcgcaggcagatggttccatttcacgccgcttcggtggtaccgggctcggc
ctatcgattgcaaaaaaactgacggaacttctcgggggtactatcgacgtgcagagcacg
atcggtaaaggcagcgtgttttcattcgcgataccggcaaaattcgacctcgtgtctgag
cagcgcacggagggcgaattcgtgggcactggcttttttgccggccgcaaatttctgctc
gtcgacaacctgccggtgaaccttgaaatcgtgcagcgtatgctcgaatcgctgcaaatt
accgttgtaccttgcgaaaaccctaaggcggcaccagagctggctcagaaaaaccaattc
gatgcagccattctcgatctcaacatgccgggtatgaatgggttagaggtggccgaagcg
ctcaagactatctcgccgaaaacaatccgcatattgctgtcttctattgccgtgacccgc
agcgccgaaacggagaatgtatttcaccatacgctgacgaaaccggtgcgccgggaacag
cttgtttatgtgctatcgcgcctcttgccgccgcaaaatggtactgaaacagaagagatc
gcgagcagagatgttcttgcccaccagcatgtgttaatcgtcgaagacgactccgtgaac
caaacaatttcgcgcattacgctcgaaaaattcggagcgaccaccgacaccgctgcagac
ggccaggcggcactcgactgtgcctcgcgccgcgactacgcgttcgtcttgctagacatg
cacctacccgatatcgatggttttgcgctggcagaaaaacttctgaaagttcggccttcg
ctcagactcgtttgttttaccgccgacgtgacgcttgtgcctgacgcacggctgcggcaa
gtgggtattatcgacaagctgtcaaagcctgccacggtgcaagattttgctgcgtttctc
gcccgggccgattggttgattacgccagtttcttcagcacagtga
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