Pseudomonas balearica DSM6083 (=SP1402), CL52_RS18660

Cytoplasmic
Cytoplasmic Membrane
Periplasmic
Outer Membrane
Extracellular
Unknown

Sequence Data

Strain Pseudomonas balearica DSM 6083, complete genome. [Details]
DNA Sequence Upstream of Gene
GGCGAAGAGACCTATTCCATGGCCATGAGTGCAGCCGAGGTGCTGCGTGAAGCCTCGGTTAGCGGCAGTTTCGGCGTCACCGGGACGGATATCAGCCTCA GCGCGCTGGGCAAATGCCGTGAGGCGACTTACGCGGGCAGGCGCCTGGAGCAGGTCCCGATTGAGCGTAGGGAACGCTACTTTCAGAGCGTCGCCGACAG TCGCTTCCAAGTCACCGCTACGCTGGCCTCGCGCGTCTGCTTTGCGAAGCTGAACGTGCTGGACCTGGCCGACGCGCCAATGTCCGGCCTCGACGTCATC TTCTGTCAGAACCTGCTGATCTATTTCCGACGCTGGCGTCGGCGCGAGATCCTCAATCGGCTCGCTGAACGGCTTGCGCCTGGCGGCTTACTGTTGATCG GGGTGGGCGAAATGGCAACTTGGCAACATCCGGACCTGACGCCGTTGGACGACGATCGGGTTCTGGCCTTTATCCGGAAAAAACAATGAGCGGAGTCGCT
DNA Sequence for Gene
>CL52_RS18660
ATGGGTGATCGGCACGATTATGTCGCCCTGGAGTGGGTGAAAGGCGAGATCGCCGAGACGCTTAAGCAGGCACGCCAGGCGCTCGAAGCCTATGTTGAGT CGCCGGCGGACCCGACTCAGATGGGCTTCTGCCTGACCTATGTGCATCAGGTCCACGGTACGCTGCAGATGGTCGAGTTCTTCGGTGCTGCGCTGCTCGC CGAAGAGATGGAGCAGCTGGCTCGCGCATTGCTCGAGGAGCGTGTGGCCAATCGCACCGAGTCGCTCGAGGTCCTGATGCAGTCGATCCTGCAGCTGCCT GCTTACCTGGATCGGATCCAGAGCGCGCGGCGCGACCTGCCTATGGTCGTGCTGCCCTTGCTCAACGACCTGCGTGCCGCACGCGGAGAAAAGCTGCTTT CGGAAACCAGCCTGTTCGCTCCCGATCTGTCCAGCCGGCTGCCGGCGCTGCCGCGCGAGTCGGTGGAGCGATTGCGGACCGACGACCTGCCGGGGTTGCT GCGCAAGCTGCGCCAGATGCAACAGACGGCGCTGGTCGGGATCATTCGCAACCAGGACCTGGCAACCAACCTCGGCTATATGGCGAGGGTGTTCGTCCGG CTCGAACAGCTATGCAAGGACGCGCCGCTCGCGCCGCTCTGGCAGATATCCGCGGCGCTCGTCGAAGGGCTCGCCAGCGGTGGCGTTGCCAATGGTGCAT CCATCCGAACGTTGCTACGCCAAGTCGACCGTGAGCTCAAACGTCTGGTCGAGCAGGGCGTGGACGGCCTCAATCAGCCGGCTCCGGAAGAGCTGATCAA GAATCTGTTGTTCTACGTGGCCAAGGCGCCCGGGCAGTCGTCCCGGCTGCTCGCGGTCAAGGAGCAATATCGCCTAGACGAAGCGCTGCCGGACACCGCG ATCGTCGACCAGGAACGCGCGCAGCTGGCCGGCCCTGACCGGGGCGCCATGCGCTCTGTGGTTGCCGCGCTCTGCGAGGAGCTGGTCAGGGTCAAGGACA GTCTCGATCTTTTCGTTCGCAGCGAGCGCAAGATACTGACCGAGTTGCTCGGACTCCCGGCACCGCTCAAGCAGATTGCCGACACGCTGGCGGTATTGGG CTTCGCCCAACCGCGTCGGATCATTCTTGACCAGATCGTATTGGTACAGGCGCTGGTCGATGGCGACCGCGAGCCGGACGATGCAGTCCTGATGGACATC GCCGGCGCACTGCTCTATGTCGAGGCCACGCTTGCCGGCATGGTGGGCTCGAGCGAGGATCGGGGCGAAGACAGCCATTTGCCGACGACCGACGTCGCGC GCATTCATCAATTGGTGATCAAGGAAGCGCGCACGGCCCTGGAACAGGCGAAGGACGCCATCATCGAATTCATTGCCTCGCAATGGAACCACGAGCATCT GGCGCGGGTGCCTGAATTGCTTACCCAAGCGCGTGGCGGCCTGGCGATGATCCCCCTGCAGCGCGCGGCAGCTTTGTTGCAGGCCTGCAACGGCTACATC GAAGAACAGCTGCTGGCCCGCAAGGCGGTACCTGACTGGCAGAGCCTCGACGCCCTGGCCGATGCGATCACCAGCGTCGAGTACTACCTGGAGCGACTGG CCGACGATTGTGGCAGCCAGGGCGATCTGATTCTAGATGTCGCCGCGGACAGCTTGGCGGATCTGGGCTATCCGGTTGAGGGCCCCGCGCACGCCGAGAC GTGCAGCAGTGCCGACGCGGTGTCGAACGAGCCCGACGAGATCGAGGTGCTCCCTGCGGATGAGCCGGCGGCAGGGGCCGGAGAGGAATGGCTCGTTGCC GCTGACGCGTCGAACGACGAAATCGCGTTGTCGGCCGAGCTCTTGGTCGAGGAAATCGATTTCGACACCCAGCCGTCCGATCCCTGGGCAATTGAACCGG AGCTTCCGGTCATAGCCGACAGCGGCGATGCGACGCTGGGGTCGAGCGACTTGCCCGTCGACAGCCAAGGCTCTCAAGAGGCGGCGTTGGCCAATGATGA CGCGGCCCTCTCTTCCGACTTCATGCAGGCGGAGGTTGCTTCCGAAGAGGCCTGGGCGCTGTTCGACGAGACGGTTTCCGACTCCCGGCCTGCCAGCTGG GATGAAAGCGAGCTGCTCGATCTGCAACTGCCGGAGGTTGAGCTCCCGCCGCTGGCGGCGGAAACGGTGGAACACACTAGCGAGCCGGAGCAGGTCACCC TTGAAGATGTGATGGCCGCCCCGGTAGCCAGTATCAACCCGCCGGCGCAGGATGCCCCGCCGAGCCTGTTGCCGCCGCCGGCGGACGAAGAGCCGGTGGA CGACGAATTGCTCGAGGTCTTCATCGAGGAGGCTGCCGAGGTATTGGAGACGATCGGCGAGAACCTGCCGGCCTGGGCTGCAGCCGATGACAGTGATGCG CTGGTGGAGATCCGCCGCGCATTCCATACCCTCAAGGGCAGTGGACGGATGGTTCGCGCACTGGTGATCGGCGAGTTGGCCTGGTCGATCGAGAACCTAC TCAATCGGGTCCTCGACGGCAGTATCCAGACCGACGAAGCGGTACAGCATGTAGTGGCTGATGTGGTGGCGTTGATGCCCGAGCTTGTCGAAGAGTTCGC CGGCAAGGCCCAGCGCCAGCGCGACGATGTCGACCGTCTGGCTGCCGCCGCGCATGCGCTGGCCAGAGGCGAGGCGCCTGTGGCCATCATGCCGGCCCAG CCAACCACTTCGTCCGCGTCGGCTCTTGAACTGCCGGTCGCCGACGAGCTTGATCCGCAGTTGCTGGAAATATTCCGCAACGAGGCGGAGGCACATCTGG CGACCTTGGTCGGTTTTCTCGCCGATTGCGCGCAGTCCCTTCCTCAGCCGGTGACCGATGCGTTGCAACGTGCCCTGCATACGCTCAAAGGCAGTGCGCA CATGGCCGGTGTATTGCCCGTGGCGGAGATCGCGACGCCACTGGAGAGGATGGTCAAGGAGTTCAAGAACAACCTGCTGCAGATCGACCTGGCCGAGGCA GAGCTGCTGCACGATGCCGAGCAGCTGCTGCGCCAGGGGCTGGCGAATCTGGACGAGCAGCCGCTGGCGGCCATCCCGGGCACAGACGCGTTTCTCGAGC GCGTCCAGGCGTTGCACCAGCGCCGCCTAGCCGAGGCGGCTTCACGCACCGAGAATGACAAGGGCGAAGCGCGTGACCCTAGTGTGATCGCCCGCTTCTT GGCCGAAGGCATGGATATTCTGCTCGATGCCGAGGCACTGCTGCGCAGCTGGCGCGACCATCCCTCCGAGCGTCAGGAACTCACCGCTCTGCTCGATGAG CTGGCCGCACTGGGCCGCGGCGCGCAGATGGCCGATCTGCCGCAGATGGACGATCTGTGCCAGGCGCTGCTGGCGCTTTATGGTTTGGCGCAAGAGGGCC GTCTGCTGCTCGACGAGCAGTTTTTCGATACCGTCGAGGCCGCACATGAGGCTCTTGTCGGGATGATGGATCAGGTGGCGGCGGCCCTGCAGGTCACGCC GCAGCCCGAGTTGGTCGAGCGCCTTCAGGGGCTGCGTCAGGCGGCACGGCCCGAGACAACGCTGAATGTCAGCGAGCCCGTGCAGTGTGATGAGCCGGTT CTGGAGCCTGCATCATCTAGTGCCGAAGCCGAAGCCGAAGCCGAAGCCGAAGCCGAAGCCGAAGCCGAAGCCGAAGCCGAAGCCGAAGCCGAAGCCGAAG CCGAAGCCGAACCGCAAGATTTTGATCAGGATATGGTCGAGATCTTCCTCGATGAGGCGGTGGACCTGCTGGAGAGCGCCGGTGAGGCGCTGGAGCGCTG GCTGGCCGAGCCGTCTGATCAGTTGACCCTGTCCTCGTTGCTGCGCGATCTGCATACGCTCAAGGGCGGCGCACGCATGGCGGGAGTCCGTCCAGTAGGC GATTTGGCTCACGAACTCGAGTCGCTTTACGAAGGGCTGGCCGACGGGCGCTATGCCTACTCGGGTGCGCTCTCCGGGTTGTTGCATCGCAGCCACGACC AGCTGGCCCAGCAGCTCGAGCAGCTACAGGCGCACGAGCCGATGGTTTCTGCCGCACCCTTGATCGAAGCGATCAGGGCCTATCGGCAGGGCGCGATGAC CGAGCTTGATGAGCCGGTCGATCGCCTGCAAGCCGAATCGACGTTGCCGGCCGACGAACAATCCGATGTTCTCGTCGACGAGCCGCTGGACCAAGCTGTG CCCGAAGCCGAAGCCGAAGCCGAAGCCGAAGCCGAAGCCGAAGCCGAAGCCGCGGAGACCGAAACGGATGTGGGCGTCGGGGCCGACGAACCCGCGTCGC TCCCACGGGCCATGGCAGACGAGTCTTCGGTGCCTGCCGTATCACCCGAGCACGACCCCGAACTGGTGGAAATCTTCCTCGAGGAAGGGCTCGATCTGAT CGAAAGCGCTGCAGCCGGCCTGCATCGCTGGATGGCCGATGTCGACAACAGTCTTGAGCTCGAAGCCTTGCAGCGCGATCTGCATACGCTCAAGGGCGGT GCGCGCATGGCCGAGGTCCGCGAGGTAGGCGATCTCGCTCATGAACTGGAGTTTCTTTACGAAGGTCTGTGCGCTGGCCGTTACCGGGCCAGTCCGGTGC TGTTCGAGCTGCTGCTTGGTGCGCAGGATGCACTCGCTGCCATGCTCGAGGCGCTACGCAACGGCGCTCCCATCCCTGACGGGAACGCCCACATCGAGGC GATTCGGCACTTCCGTCTCAACCCTCAAGAGCAACTGAGCGAGCCAAGCACGGTCACGCTGCGTGCCGCCAGCCAGCCGAATGCAGCTGCCGAAGCGGAG ATTCTGGACATCTTCGTCGAGGAAGCCGACGAACTGCTCGAGGAGCTGGACGCTGCCTTGGGCCGCCTTGACGGCGCGGCAGCGGACGGAGGGCAGCTCG GCGAGATGCTGCGCATCCTTCACACGCTCAAGGGAGGTGCCCGTCTGGCCGGCCAGGCGGACCTGGGCAATCTGGCGCATGACCTCGAACAGCGTCTGAC CGAGGCGCAACAGCAGGGAGCGCCCTGGGCCGATAGCCTGCATCTGGATGTGCAGCGTGGTTATGAGGCGCTGCAGAACGCTGTCGATCAACTCAAGGAA GTTCTGGCCAGTGACGGCGAGACAGCGAGCGCTGCCGAGAGCACCGAGCCTGCTGTGGTCGCGCAGCTGCCACGGCCCATCGTCGCCGCGAGTGCGGCGG ACGACCTGGCCAACCATACGCCGGCCAAGGTTCTGCCTTTCATTCGACGTGCCCAGCAGGCAGCCCAGGACGCCGCGGCGCGCAGGGCACCGCAGGAGAT GATCAAGGTTCCGGCCGAGCTGCTTGAAGGGTTGGTGAACCTGGCCGGGGAGACCTCGATTTTCCGTGGTCGGGTCGAGCAGCAGGTCAGCGATGTGAGC TTCACGCTGAGCGAGATGGAAGCCACCATCGAGCGGGTCCGCGATCAGTTGCGTCGCCTCGACACCGAAACCCAGGCGCAGATTCTCAGCCGCTATCAGG CCGAGGCAGAGCGCGCCGGCTACGATGACTTCGACCCGCTCGAAATGGACCGTCATTCGCAGCTGCAACAGCTGTCGCGCTCGCTGTTCGAGTCGGCCTC CGACCTGCTCGATCTGAAAGAAACGCTGGCGGCGCGCAACCGCGATGCCGAAACGCTTTTGTTGCAACAGGCGCGAGTCAATACCGAGCTGCAGGAAGGC CTGATGCGCACCCGCATGGTGCCGTTCGAGCGGCTGATACCGCGCCTGCGGCGCATCGTCCGGCAGGTTGCCTCCGAGCTGGGCAAGCAGGTCGAATTCG TGGTCGGCAACGCCAATGGCGAGATGGACCGCAGCGTGCTCGAGCGCATCGTCGCCCCGCTGGAGCACATGCTGCGCAATGCGGTCGACCATGGGATCGA GGCTACCGCCGCCCGGCGGGCAGCCGGCAAGCCCGAGCAAGGCACGATTCGTCTGGATCTCGGCCGTGAGGGTGGCGACATCCTGCTGACGCTGAGCGAC GACGGCGGTGGCATCAATCTCGAGGCGGTCCGGCGCAAGGCGATCGAGCGGGGGCTGATGACCAACGACAGCGAGCTCACCGAGCACGAGATCCTGCAGT TCATTCTGGAAGCCGGATTTTCCACGGCTGCGCAGGTGACCCAGATCTCCGGGCGGGGCGTGGGCATGGACGTGGTCCACTCGGAGGTCAAGCAGCTCGG TGGCTCCATGAGTATCGAGTCGACGCCGGGCCAGGGTACCCGCTTCCTGATTCGCCTGCCGTTCACCGTGTCGGTGAACCGGGCTCTGATGGTGTATTCG GGCGAGGATCTCTACGCGATTCCGCTCAACACGATCGAGGGCATCGTGCGGGTCTCGCCCTATGAACTCGAGGCCTATTACCAGCCCGGTGCGCCGCGCT TCGAGTATGCCGGCCAGGCCTACGAACTGCGCTACCTGGGGGACCTGTTGAACAATGGTCAGCGACCCAAGCTGGTCGGGCAAAGCCTGCCGTTGCCGGT GATTCTGGTGCGCTCCAAGGACCACAGCGTTGCTGTGCAGGTGGACAGTCTCGCCGGTTCGCGTGAAATCGTGGTGAAGAGCCTGGGCGCGCAGTTCGCC GGAGTGGCGGGCATTTCCGGGGCCACCATTCTCGGGGATGGACGCGTGGTGGTGATTCTCGACCTGCTGGCGACCATTCGCCTGCAACACGCGCAGCAAC TGATCCAGCAGCGTCCGCAACTGCTGCCGCAGGTGCCCGAGTCGGTCGAGCCCGAACATGGGCGGCCGACGCTGGTGATGGTGGTCGACGATTCGGTGAC CGTGCGCAAGGTGACCAGCCGGTTGCTCGAGCGCAACGGCATGAACGTGATGACCGCAAAGGATGGCGTCGATGCGATCAGTCAACTGCAGGAACGCAAG CCGGACATCATGCTGCTGGACATCGAGATGCCACGCATGGACGGCTTCGAGGTCGCGGCGCTGGTGCGCCATGACGAGCGTCTGAAGGACCTGCCGATCA TCATGATCACTTCGCGTACCGGCGAGAAACACCGTGAGCGGGCGCTGGCGATTGGCGTCAACCATTACCTGGGCAAGCCCTATCAGGAGTCGCTCTTGCT GGAGAGTATCGAACAGTTGGTGCACGGTCATGCCTGA
BLASTN Search  |  DIAMOND BLASTX Search (DIAMOND is faster than BLASTX)
DNA Sequence Downstream of Gene
GTCCAGTTCCGCTCGCATCGCCGTGCTCGCCGACACCTCGCTGCAGCGGCACGTCCTGCAGCAGGCGCTTGGCGCCAATGGTTATCAGGTCGTGCTCAAT AGCGACCCGGCTCGTATGGAGCCGGCCGATCTCGCCGAGGCCGAGGCCGATCTGTGGCTGGTCGATCTCGCGCAGACCGAAGATTCGCCGCTGGTCGATG CGCTGCTCGCCCGCGACGGCACCCTGGTGCTGTTCGGCGAGGGCCATGCGCCCGAGCGTCATTCGGAACATTACCCGCGCTGGGAGCGTCGACTGTTCGG CAAGCTCAAGCGTCTGGTCGGCGACCCCAGCCGGGAGGTCGGGCCGCGTCTGGACGTGTTGCAAGGCAAGCCTGGCGACGGTGGTAGTGGCCGGCTGGCG CTGCCTCCGACATTGCAGGCTGCCTTGGCCGAGCCCGGCACGGTGGCGCCTGAGGTCTGGTTGCTGGGGGCGTCGCTGGGCGGCCCCGAAGCGGTCAAGG
Amino Acid Sequence
>chemotaxis protein CheA
MGDRHDYVALEWVKGEIAETLKQARQALEAYVESPADPTQMGFCLTYVHQVHGTLQMVEFFGAALLAEEMEQLARALLEERVANRTESLEVLMQSILQLP AYLDRIQSARRDLPMVVLPLLNDLRAARGEKLLSETSLFAPDLSSRLPALPRESVERLRTDDLPGLLRKLRQMQQTALVGIIRNQDLATNLGYMARVFVR LEQLCKDAPLAPLWQISAALVEGLASGGVANGASIRTLLRQVDRELKRLVEQGVDGLNQPAPEELIKNLLFYVAKAPGQSSRLLAVKEQYRLDEALPDTA IVDQERAQLAGPDRGAMRSVVAALCEELVRVKDSLDLFVRSERKILTELLGLPAPLKQIADTLAVLGFAQPRRIILDQIVLVQALVDGDREPDDAVLMDI AGALLYVEATLAGMVGSSEDRGEDSHLPTTDVARIHQLVIKEARTALEQAKDAIIEFIASQWNHEHLARVPELLTQARGGLAMIPLQRAAALLQACNGYI EEQLLARKAVPDWQSLDALADAITSVEYYLERLADDCGSQGDLILDVAADSLADLGYPVEGPAHAETCSSADAVSNEPDEIEVLPADEPAAGAGEEWLVA ADASNDEIALSAELLVEEIDFDTQPSDPWAIEPELPVIADSGDATLGSSDLPVDSQGSQEAALANDDAALSSDFMQAEVASEEAWALFDETVSDSRPASW DESELLDLQLPEVELPPLAAETVEHTSEPEQVTLEDVMAAPVASINPPAQDAPPSLLPPPADEEPVDDELLEVFIEEAAEVLETIGENLPAWAAADDSDA LVEIRRAFHTLKGSGRMVRALVIGELAWSIENLLNRVLDGSIQTDEAVQHVVADVVALMPELVEEFAGKAQRQRDDVDRLAAAAHALARGEAPVAIMPAQ PTTSSASALELPVADELDPQLLEIFRNEAEAHLATLVGFLADCAQSLPQPVTDALQRALHTLKGSAHMAGVLPVAEIATPLERMVKEFKNNLLQIDLAEA ELLHDAEQLLRQGLANLDEQPLAAIPGTDAFLERVQALHQRRLAEAASRTENDKGEARDPSVIARFLAEGMDILLDAEALLRSWRDHPSERQELTALLDE LAALGRGAQMADLPQMDDLCQALLALYGLAQEGRLLLDEQFFDTVEAAHEALVGMMDQVAAALQVTPQPELVERLQGLRQAARPETTLNVSEPVQCDEPV LEPASSSAEAEAEAEAEAEAEAEAEAEAEAEAEAEAEPQDFDQDMVEIFLDEAVDLLESAGEALERWLAEPSDQLTLSSLLRDLHTLKGGARMAGVRPVG DLAHELESLYEGLADGRYAYSGALSGLLHRSHDQLAQQLEQLQAHEPMVSAAPLIEAIRAYRQGAMTELDEPVDRLQAESTLPADEQSDVLVDEPLDQAV PEAEAEAEAEAEAEAEAAETETDVGVGADEPASLPRAMADESSVPAVSPEHDPELVEIFLEEGLDLIESAAAGLHRWMADVDNSLELEALQRDLHTLKGG ARMAEVREVGDLAHELEFLYEGLCAGRYRASPVLFELLLGAQDALAAMLEALRNGAPIPDGNAHIEAIRHFRLNPQEQLSEPSTVTLRAASQPNAAAEAE ILDIFVEEADELLEELDAALGRLDGAAADGGQLGEMLRILHTLKGGARLAGQADLGNLAHDLEQRLTEAQQQGAPWADSLHLDVQRGYEALQNAVDQLKE VLASDGETASAAESTEPAVVAQLPRPIVAASAADDLANHTPAKVLPFIRRAQQAAQDAAARRAPQEMIKVPAELLEGLVNLAGETSIFRGRVEQQVSDVS FTLSEMEATIERVRDQLRRLDTETQAQILSRYQAEAERAGYDDFDPLEMDRHSQLQQLSRSLFESASDLLDLKETLAARNRDAETLLLQQARVNTELQEG LMRTRMVPFERLIPRLRRIVRQVASELGKQVEFVVGNANGEMDRSVLERIVAPLEHMLRNAVDHGIEATAARRAAGKPEQGTIRLDLGREGGDILLTLSD DGGGINLEAVRRKAIERGLMTNDSELTEHEILQFILEAGFSTAAQVTQISGRGVGMDVVHSEVKQLGGSMSIESTPGQGTRFLIRLPFTVSVNRALMVYS GEDLYAIPLNTIEGIVRVSPYELEAYYQPGAPRFEYAGQAYELRYLGDLLNNGQRPKLVGQSLPLPVILVRSKDHSVAVQVDSLAGSREIVVKSLGAQFA GVAGISGATILGDGRVVVILDLLATIRLQHAQQLIQQRPQLLPQVPESVEPEHGRPTLVMVVDDSVTVRKVTSRLLERNGMNVMTAKDGVDAISQLQERK PDIMLLDIEMPRMDGFEVAALVRHDERLKDLPIIMITSRTGEKHRERALAIGVNHYLGKPYQESLLLESIEQLVHGHA
BLASTP | DIAMOND BLASTP (DIAMOND is faster than BLASTP)
Search for conserved domains in this protein at NCBI CDD site