Identification |
Name: |
two-component sensor CbrA |
Synonyms: |
Not Available |
Gene Name: |
cbrA |
Enzyme Class: |
Not Available |
Biological Properties |
General Function: |
phosphorelay signal transduction system, positive regulation of cell motility, negative regulation of single-species biofilm formation on inanimate substrate, cellular catabolic process, transmembrane transport, transport, regulation of transcription, DNA-templated, signal transduction, phosphorylation, pathogenesis, regulation of cellular response to oxidative stress |
Specific Function: |
transferase activity, transferring phosphorus-containing groups, signal transducer activity, phosphorelay sensor kinase activity, transporter activity |
Cellular Location: |
Cytoplasmic Membrane |
KEGG Pathways: |
|
KEGG Reactions: |
Not Available |
SMPDB Reactions: |
Not Available |
PseudoCyc/BioCyc Reactions: |
|
Complex Reactions: |
Not Available |
Transports: |
Not Available |
Metabolites: |
Not Available |
GO Classification: |
Component |
---|
membrane | Function |
---|
transferase activity, transferring phosphorus-containing groups | signal transducer activity | phosphorelay sensor kinase activity | transporter activity | Process |
---|
phosphorelay signal transduction system | positive regulation of cell motility | negative regulation of single-species biofilm formation on inanimate substrate | cellular catabolic process | transmembrane transport | transport | regulation of transcription, DNA-templated | signal transduction | phosphorylation | pathogenesis | regulation of cellular response to oxidative stress |
|
Gene Properties |
Locus tag: |
PA4725 |
Strand: |
+ |
Entrez Gene ID: |
881602 |
Accession: |
NP_253413.1 |
GI: |
15599919 |
Sequence start: |
5304011 |
Sequence End: |
5306962 |
Sequence Length: |
2951 |
Gene Sequence: |
>PA4725
ATGCTGACGAGCTTTAGCCTGACCCAGCTGATCCTGATCAGCGTCACCTACCTCTCCACCCTCTTCGGCATCGCCTGGATCACCGAGCGCGGCTACGTGCCGCGCCGGCTGGTACGCCACCCGCTGGTCTACACCCTGTCGCTGGGCGTCTACGCCAGTGCCTGGGCGTTCTACGGCACGGTAGGCCTGGCCTACCAGTACGGCTACGGGTTCCTCGCCATCTACCTGGGGATTTCCGGGGCCTTCCTGCTCGCCCCGGTGCTGCTCTATCCGATCCTGCGGGTGACACGCGCCTACCAGCTGTCCTCGCTGGCCGACCTCTTCGCCTTCCGTTTCCGCAGTACCTGGGCCGGCGCCCTGACCACGCTGTTCATGCTGATCGGCGTGCTGCCGATGCTGGCCCTGCAGATCCAGGCGGTCACCGACTCGATCAGCATTCTCACCCGCGACCCGGCCCAGGAGCGGGTCGCATTCGTCTTCTGCACCCTGATCACCCTGTTCGCGATCCTCTTCGGCGCTCGCCACATCGCCACCCGCGAACGCCACGAGGGACTGGTGTTCGCCATCGCCTTCGAGTCGCTGGTCAAGCTGGTGATGCTCGGCAGTATCGGCCTCTACGCCCTGTACGGCGTCTTCGGCGGGCCGGAAGGCCTGGAAGTCTGGCTGCTGCAGAACCAGACCGCGCTGACCACCCTGCACACGCCGCTGGCCGAAGGTCCATGGCGAACGCTGCTGCTGGTGTTCTTCGCCGCGGCCATCGTGATGCCGCACATGTTCCACATGATCTTCACCGAGAACCTCAACCCGCGCGCGCTGATTTCCGCCAGTTGGGGCCTGCCGCTGTTCCTGCTGCTGATGAGCCTGGCGGTACCGCCGATCCTCTGGGCCGGGCTGCGCCTCGGCGCCTCGACCACACCGGAGTACTACACCATCGGCCTCGGCCTGGCGGTGGACAGCCCGGCCCTGGCCCTGGCCGCCTTCATCGGCGGCATCTCCGCCGCCAGCGGGCTGACCATCGTGATGACCCTGGCGCTCTCGGGAATGGTCCTCAACCACCTGGTGCTGCCGCTCTACCAGCCGCCGGCGCAGGGCAACATCTACCGCTGGCTGAAATGGACCCGGCGCCTGCTGATCGTCGCCATCATCATGGCCAGCTACGCCTTCTACCTGCTGCTGGGCGCCGAACAGGACCTCTCCAACCTGGGCATAGTGTCCTTCGTCGCCACCCTGCAATTCCTTCCCGGCGCCCTCTCGGTGCTGTACTGGCCGACCGCCAACCGCCGTGGCTTCATCTCCGGGCTGATCGCCGGCATGCTGGTCTGGGCGATCACCATGCTGCTGCCCCTGATGGGGAACGTACAGGGCCTGTACCTGCCGCTGTTCGACGTGATCTACGTGCTGGACGATTCGAACTGGCACCTGGCGGCGCTGTCCTCGCTGGCGGCCAACGTGCTGGTATTCACCCTGGTGTCGCTGTTCACCGAGGCCAGCGACGAGGAAAAAGGCGCCGCCGAGGCCTGCGCGGTGGACAACGTACGCCGTCCGCAACGCCGCGAACTGTTCGCCGGTTCGCCGCAGGAGTTCGCCAGCCAGTTGGCCAAGCCGCTGGGCGCCAAGACCGCGCAGAAGGAGGTCGAGCAGGCCCTGCGCGATCTCCACCTGCCCTTCGACGAACGTCGCCCCTATGCCCTGCGTCGCTTGCGCGACCGCATCGAGGCGAACCTTTCCGGGCTGATGGGACCCAGTGTCGCCCAGGACATCGTGGAGACCTTCCTTCCCTACAAGACCAGCGAAGAAAGCTACGTCACCGAGGACATCCACTTCATCGAGAGCCGCCTGGAGGACTATCACTCCCGGCTGACTGGCCTGGCTGCCGAACTCGACACCTTGCGCCGCTACCACCGGCAGACCCTGCAAGACCTGCCGATGGGCGTCTGCTCCCTGGCCAAGGACCAGGAAGTGCTGATGTGGAACCGCGCCATCGAGGAACTCACCGGGGTCGGCGCGCAGAAGGTCGTCGGTTCGCGCCTGTCGGCCTTGCCCGAACCCTGGAAGGGCCTGCTGGAACGTTTCATCGACGCCCCCGACGAGCACCTGCACAAGCAGCGCCTGGTCTACGACGGCCACACCCGCTGGCTGAACCTGCACAAGGCGGCCATCGAGGAACCCCTGGCGCCGGGCAACAGCGGCCTGGTGCTACTGGTGGAAGACCTCACCGAAACCCAACTGTTGGAAGACAAGCTGGTCCACTCCGAGCGCCTGGCTTCCATCGGCCGCCTAGCCGCCGGGGTGGCCCACGAGATCGGCAATCCGATCACCGGCATCGCCTGCCTGGCGCAGAACCTGCGCGAGGAACGCGAAGGCGACGGCGAGCTGACCGAAATCAGCGAGCAGATCCTCGACCAGACCAAGCGCGTATCGCGCATCGTCCAGTCGTTGATGAGCTTCGCCCACTCCGGCAGCCACCTGCAGGCCCTGGAACCGGTGTGCCTGAGCGAAGTCGCCCAGGAGGCCATCGGACTGCTGTCGCTGAACCGGCGTAGCGTCGAAGTAGAGTTCTTCAACCTCTGCGATCCGGCGCACTGGGTCGAGGGCGACTCGCAGCGCCTGGCCCAGGTGCTGATCAACCTGCTCTCCAATGCTCGCGACGCCAGCCCGCCGGGCGGCGCGATCCGGGTCCGCAGCGAAGCCTCGGAACATACCGTGGACCTGGTCGTCGAGGACGAGGGCAGCGGCATTCCGAAGGCGATCATGGACCAGTTGTTCGAACCGTTCTTCACCACCAAGGACCCCGGCAAGGGGACCGGGCTCGGCCTCGCACTGGTCTATTCGATCGTGGAAGAGCATTATGGACAGATAACCATCGAGAGCCCGACGGATCACCAGCGAGAAGGCGGCACCCGCTTCCGCGTGACCCTGCCGCGGCACCCTGGCCCGACGGCCGAGCTGTAG |
Protein Properties |
Protein Residues: |
983 |
Protein Molecular Weight: |
108.4 kDa |
Protein Theoretical pI: |
5.84 |
Hydropathicity (GRAVY score): |
0.276 |
Charge at pH 7 (predicted): |
-16.12 |
Protein Sequence: |
>PA4725
MLTSFSLTQLILISVTYLSTLFGIAWITERGYVPRRLVRHPLVYTLSLGVYASAWAFYGTVGLAYQYGYGFLAIYLGISGAFLLAPVLLYPILRVTRAYQLSSLADLFAFRFRSTWAGALTTLFMLIGVLPMLALQIQAVTDSISILTRDPAQERVAFVFCTLITLFAILFGARHIATRERHEGLVFAIAFESLVKLVMLGSIGLYALYGVFGGPEGLEVWLLQNQTALTTLHTPLAEGPWRTLLLVFFAAAIVMPHMFHMIFTENLNPRALISASWGLPLFLLLMSLAVPPILWAGLRLGASTTPEYYTIGLGLAVDSPALALAAFIGGISAASGLTIVMTLALSGMVLNHLVLPLYQPPAQGNIYRWLKWTRRLLIVAIIMASYAFYLLLGAEQDLSNLGIVSFVATLQFLPGALSVLYWPTANRRGFISGLIAGMLVWAITMLLPLMGNVQGLYLPLFDVIYVLDDSNWHLAALSSLAANVLVFTLVSLFTEASDEEKGAAEACAVDNVRRPQRRELFAGSPQEFASQLAKPLGAKTAQKEVEQALRDLHLPFDERRPYALRRLRDRIEANLSGLMGPSVAQDIVETFLPYKTSEESYVTEDIHFIESRLEDYHSRLTGLAAELDTLRRYHRQTLQDLPMGVCSLAKDQEVLMWNRAIEELTGVGAQKVVGSRLSALPEPWKGLLERFIDAPDEHLHKQRLVYDGHTRWLNLHKAAIEEPLAPGNSGLVLLVEDLTETQLLEDKLVHSERLASIGRLAAGVAHEIGNPITGIACLAQNLREEREGDGELTEISEQILDQTKRVSRIVQSLMSFAHSGSHLQALEPVCLSEVAQEAIGLLSLNRRSVEVEFFNLCDPAHWVEGDSQRLAQVLINLLSNARDASPPGGAIRVRSEASEHTVDLVVEDEGSGIPKAIMDQLFEPFFTTKDPGKGTGLGLALVYSIVEEHYGQITIESPTDHQREGGTRFRVTLPRHPGPTAEL |
References |
External Links: |
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General Reference: |
PaperBLAST - Find papers about PA4725 and its homologs
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