Identification |
Name: |
Sensor protein kdpD |
Synonyms: |
Not Available |
Gene Name: |
kdpD |
Enzyme Class: |
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Biological Properties |
General Function: |
Signal transduction mechanisms |
Specific Function: |
Member of the two-component regulatory system kdpD/kdpE involved in the regulation of the kdp operon. KdpD may function as a membrane-associated protein kinase that phosphorylates kdpE in response to environmental signals |
Cellular Location: |
Cell inner membrane; Multi-pass membrane protein |
KEGG Pathways: |
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KEGG Reactions: |
Not Available |
SMPDB Reactions: |
Not Available |
PseudoCyc/BioCyc Reactions: |
|
| + | protein L-histidine | → | | + | protein N-phospho-L-histidine |
| |
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Complex Reactions: |
|
| + | protein L-histidine | → | | + | protein N-phospho-L-histidine |
| |
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Transports: |
Not Available |
Metabolites: |
|
GO Classification: |
Component |
---|
cell part | membrane | Function |
---|
adenyl nucleotide binding | adenyl ribonucleotide binding | ATP binding | binding | catalytic activity | kinase activity | molecular transducer activity | nucleoside binding | protein histidine kinase activity | protein kinase activity | purine nucleoside binding | signal transducer activity | transferase activity | transferase activity, transferring phosphorus-containing groups | two-component sensor activity | Process |
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biological regulation | cellular metabolic process | metabolic process | peptidyl-histidine phosphorylation | phosphate metabolic process | phosphorus metabolic process | phosphorylation | protein amino acid phosphorylation | regulation of biological process | regulation of cellular process | response to stimulus | response to stress | signal transduction | signal transmission | signaling process | two-component signal transduction system (phosphorelay) |
|
Gene Properties |
Locus tag: |
PA1636 |
Strand: |
+ |
Entrez Gene ID: |
883029 |
Accession: |
NP_250327.1 |
GI: |
15596833 |
Sequence start: |
1780536 |
Sequence End: |
1783193 |
Sequence Length: |
2657 |
Gene Sequence: |
>PA1636
ATGACCGACACCGCACGCGCCGACGCGCTGCTGGCCGACCTGCCCGCTGACGGGCGCGGCCGCCTGAAAGTCTTTCTCGGCGCGGCGCCGGGGGTGGGCAAGACCTTCGCCATGCTGCAGGCCGCCCAGGCCCAGTTGCGCCAGGGCGTGAAACTGCGCGCCGGGGTGGTCGAGACCCACTCGCGGGCGGAAACCGAGTCCCTCCTCGCAGGCGTGCCGCAGCAGCCGCTGCGCAGCCTCGAGTATCGAGGGATGAAACTGCAGGAAATGGACCTCGACGGTCTCCTCGCCGACCCGCCGGCGCTGGCCCTGGTCGACGAACTGGCCCACAGCAACGTTCCCGGCAGCCGCCACGCCAAGCGCTGGCAGGACATCCAGGAGTTGCTGGCGGCGGGAATCGACGTCTACACAACGGTCAACGTCCAGCACCTGGAGAGCCTCAACGACCAGGTCCGCGACATCACCGGCGTGCAGGTCCGCGAGACGGTGCCGGACTGGGTGTTGCAGGAGGCCTACGAGATCGTCCTCATCGACCTGCCGCCGCGCGAGCTGCTGGAGCGCCTGCGCGAGGGCAAGGTCTACGTGCCGGAACAGGCGCGGGCGGCGATCGATGCGTTCTTCTCGCAGACCAACCTCACCGCGCTGCGTGAACTGGCGATGCAGACCGCCGCCGCGCGGGTCGACGCCGACCTCAACCACCGCTACCGCCAGCGCGGCGAGGAAGCGCCGGCGTTGCGCGGGCGGCTGCTGGTGGGCATCGACGGTGACGAACAGGCCGAACGCCTGGTGCGCCACGCCTGCCGGGTCGCCGAACGTCGGCACCTGCCCTGGAGCGTGGTACACGTCGATACCGGCGGCTTGCGCGGCGAGCAGGCGCGGATGCGCCTGCAGGGTGCGCAGCAACTGGCCGAGCGGCTCGGCGGCGAGATCGTCGTGCTGCGCGCCGGCGAGGTGGCGCGGACCCTCCTGCAACATGCCCGCGAGCGCCGCGCCAGCCTGGTCCTGGTTGGCCAGTCGCGGCGCCGCTGGTATCGCCGGGCCTTCGGCGGTGGTCTCGCCGGGCGTCTGCTGCGCGACGGCCAGGGCCTGGAGATCAGTGCCCTGGACAGCGAGGCCGACCTGCGCCCGGCGGAACCGCGGCCACGCTATCCGGTGGTGTGGAACGACTATCTGCTGGCGCTGCTGGCGACCGCCCTGGCCAGCGGCCTGGCCTGGATCGTGGCGCACCTGCTGGAGCTGCCGAACATCTCCCTGGTGTTCCTGATGGCGGTGCTGCTGGTGGCAGTGCGCAGCAGCCTGATGCCGGCACTGCTGTGCGCGGTGGCGTCGTTCCTGGCCTATGACTTCCTGTTCATCCCGCCGCATTTTTCCTTCGCCATCCATCGCCACGAAGACCTGCTGAGCCTGGCGTTCTTCCTGTTCATGGCCGGCCTCACCGGCAACCTGGCGGCACGCCAGCGGCGCCAGCTGGAGGCGCTGCGCGATACCCAGGAGGAAACCAGCCTGCTGCTGGAGCTGTCGCGCAAGCTCACCGCCGCCACCGACCGCCAGGCGGTGCTGGCCGCCGCCGCCCAGCAGTTCGACGACTGGAAGGACGTCGAGGTCTGCCTGCTCGGTCAGGTCAATGGCGAGTGGAAGACCGAGGCCGGCGTGCAGCGGCAACTCGCCGACCAGGAACGGGTCGCCGCGGACTGGGCCTGGGCCCACGACCAGCCGGCCGGCCTCGGTACTGGCACGCTGCCCGGAGGACGCTGGTGGTGGTGGCCGCTGTCGGCGGAAGAGGGACCGCTGGCACTGCTCGGTGTCGCGCCGCTGGACGGCCAGCCGCTGAGCCCGCAGCGCCGGCGCCTGCTCGCCGCCCTCGGCCAGCCTCTGGCCCAGGCCCTGGCGCGGGCTCGCCTGGCCGAGGACCTGGAGGCCGCGCGCCTGCACGGCGAGACCGAGCAACTGCGCAGCGCCTTGCTCGCCTCGGTGTCCCACGACCTGCGCACGCCGCTGACGGCCATGCGCGGCTCCATCGACAGCCTGCTGGCGCTGGGTGAGGCGATCCCGCCGGCGGATCGTCGCGAACTGCTGGAAAGCACCCGCGACGAGGCCGAGCGACTGGACCGCTATATCCAGAACCTGCTCGACATGACCCGTCTCGGCCACGGTGGCCTGAAGCTGGCGCGCGACTGGGTGGCGCCGGGCGACATCGTTGGCAGCGCGCTGAACCGCCTGCGCGCGGTGCTGGCGCCGTACCGGGTGCAGGCGATCGTGGCCAACGACCTGCCGTTGCTCTACGTGCATGCGGCGCTGATCGAGCAGGCGCTGATCAACGTGCTGGAAAATGCCGCGCGCTTCTCGCCGAACCACGGCCGGTTGCGCATCGAGGTCAGCCAGGATGCCGCCGAGCTGCGTTTCGCGGTGAGCGACGAGGGGCCGGGGATTCCCGAGGCCGAGCGGGAGAAGATCTTCGACATGTTCTACACCGCTGCCCGTGGCGACCGCGGTGGCCAGGGCACCGGCCTGGGCCTGGCGATCTGCCAGGGCATGATCGGCGCCCACGGCGGGCGCATCAGCGTCGGCGAAGGCCTCGACGGTCGCGGCACCACGCTGGTCCTGCACCTGCCGCTGCATCCGCAGCCGGACCTCGGGCAACTGGAGGGCGACGAATGA |
Protein Properties |
Protein Residues: |
885 |
Protein Molecular Weight: |
97 kDa |
Protein Theoretical pI: |
6.15 |
Hydropathicity (GRAVY score): |
-0.111 |
Charge at pH 7 (predicted): |
-10.76 |
Protein Sequence: |
>PA1636
MTDTARADALLADLPADGRGRLKVFLGAAPGVGKTFAMLQAAQAQLRQGVKLRAGVVETHSRAETESLLAGVPQQPLRSLEYRGMKLQEMDLDGLLADPPALALVDELAHSNVPGSRHAKRWQDIQELLAAGIDVYTTVNVQHLESLNDQVRDITGVQVRETVPDWVLQEAYEIVLIDLPPRELLERLREGKVYVPEQARAAIDAFFSQTNLTALRELAMQTAAARVDADLNHRYRQRGEEAPALRGRLLVGIDGDEQAERLVRHACRVAERRHLPWSVVHVDTGGLRGEQARMRLQGAQQLAERLGGEIVVLRAGEVARTLLQHARERRASLVLVGQSRRRWYRRAFGGGLAGRLLRDGQGLEISALDSEADLRPAEPRPRYPVVWNDYLLALLATALASGLAWIVAHLLELPNISLVFLMAVLLVAVRSSLMPALLCAVASFLAYDFLFIPPHFSFAIHRHEDLLSLAFFLFMAGLTGNLAARQRRQLEALRDTQEETSLLLELSRKLTAATDRQAVLAAAAQQFDDWKDVEVCLLGQVNGEWKTEAGVQRQLADQERVAADWAWAHDQPAGLGTGTLPGGRWWWWPLSAEEGPLALLGVAPLDGQPLSPQRRRLLAALGQPLAQALARARLAEDLEAARLHGETEQLRSALLASVSHDLRTPLTAMRGSIDSLLALGEAIPPADRRELLESTRDEAERLDRYIQNLLDMTRLGHGGLKLARDWVAPGDIVGSALNRLRAVLAPYRVQAIVANDLPLLYVHAALIEQALINVLENAARFSPNHGRLRIEVSQDAAELRFAVSDEGPGIPEAEREKIFDMFYTAARGDRGGQGTGLGLAICQGMIGAHGGRISVGEGLDGRGTTLVLHLPLHPQPDLGQLEGDE |
References |
External Links: |
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General Reference: |
PaperBLAST - Find papers about PA1636 and its homologs
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