Transporter Protein
BB1100


    Transport Function
Transporter Name: BB1100
Transporter Type: ATP-Dependent
Transporter Family: P-ATPase (TC#: 3.A.3)
The P-type ATPase (P-ATPase) Superfamily
Transporter Subfamily: 
Substrate/Function: magnesium ion
TC#: 
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    Genome Locus
PID:   33600086     Blast
Source:   Bordetella bronchiseptica RB50 NCTC-13252
Chromosome:   -
Location:   1183238..1185994
Gene:   mgtA
Length:  918
Strand:  +
Code:   -
COG:   -
Product:  Mg(2+) transport ATPase
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    Transmembrane Segment
TMSs: 
TMHMM Server 
Total:     5
TMS 1:  730-752
TMS 2:  790-812
TMS 3:  822-841
TMS 4:  854-873
TMS 5:  888-907
Topology:   >BB1100
MKIIDTLLKRLFSRFLQGRHANRHFKRQAILETLRGAHGAAARAGAGRVARDMRRIASDDVAAAMARMGS
REGGLSAAEVHERRTRFGPNEVEHEKPLPGWLHLWHCYRNPFNLLLSVLAGISFATDDMTAAAVIGTMVA
LSTLIRFVQEGRSSRAAERLKAMVGNTATVIRRREDGEPAGPPGRAARAEVPIRDLVPGDHIVLSAGDMI
PADCRLLAAKDLFIAQAAMTGESLPVEKFAGINEPFETIFDAPNLVFMGTTVVSGAATALVIATGGRTYF
GGLSARVTAADRAPTAFESGVNSVSWLLIRFALVMAPVVLLINGFTKGDWLEASLFALSVAVGLTPEMLP
MIVTSTLAKGAVVMSRKKVIVKRLDAIQNFGAMDVLCTDKTGTLTQDRIALERHTDAFGNSSDEVLRYAY
LNSYYQTGLKNLLDHAVLEHAELQREMRVALDYRKVDEIPFDFERRRMSVVVSERDDHHELICKGAVEEM
LSVCDRIRIETAQGPRHVPLDGEQLDRVRAFTHALNEQGLRVVAVAMKALPASQSAYSVADEAGLTLVGH
IAFLDPPKESTEPALRALAGHGVRVKVLTGDSELIAAHVCGRVGLEHGRYLLGAQIENMSDEHLACAVET
HQLFARLTPQDKERIVRALRGNGHVVGFMGDGINDAAALRAADIGISVDAGVDIAKEAADIILLEKSLMV
LEEGVVEGRRTFCNMLKYIRMTASSNFGNVFSVLVGSAFLPFLPMLPLQLLVQNLLYDISQIAIPFDDVD
EELVAKPLKWNPADIGRFMVFFGPLSSVFDIATYVLMWHVFAANTVGEQGLFQSGWFVVGLLTQTLIVHM
IRSPKLPFIQSRAAWPLLLMTALIMAIGVALPMSPLAGYFNLQALPPAYFPWLLAILLGYALLTTAMKKI
YIRKFGWQ
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    Sequence
Protein Sequence: >BB1100 33600086 Mg(2+) transport ATPase [Bordetella bronchiseptica RB50 NCTC-13252]
MKIIDTLLKRLFSRFLQGRHANRHFKRQAILETLRGAHGAAARAGAGRVARDMRRIASDDVAAAMARMGS
REGGLSAAEVHERRTRFGPNEVEHEKPLPGWLHLWHCYRNPFNLLLSVLAGISFATDDMTAAAVIGTMVA
LSTLIRFVQEGRSSRAAERLKAMVGNTATVIRRREDGEPAGPPGRAARAEVPIRDLVPGDHIVLSAGDMI
PADCRLLAAKDLFIAQAAMTGESLPVEKFAGINEPFETIFDAPNLVFMGTTVVSGAATALVIATGGRTYF
GGLSARVTAADRAPTAFESGVNSVSWLLIRFALVMAPVVLLINGFTKGDWLEASLFALSVAVGLTPEMLP
MIVTSTLAKGAVVMSRKKVIVKRLDAIQNFGAMDVLCTDKTGTLTQDRIALERHTDAFGNSSDEVLRYAY
LNSYYQTGLKNLLDHAVLEHAELQREMRVALDYRKVDEIPFDFERRRMSVVVSERDDHHELICKGAVEEM
LSVCDRIRIETAQGPRHVPLDGEQLDRVRAFTHALNEQGLRVVAVAMKALPASQSAYSVADEAGLTLVGH
IAFLDPPKESTEPALRALAGHGVRVKVLTGDSELIAAHVCGRVGLEHGRYLLGAQIENMSDEHLACAVET
HQLFARLTPQDKERIVRALRGNGHVVGFMGDGINDAAALRAADIGISVDAGVDIAKEAADIILLEKSLMV
LEEGVVEGRRTFCNMLKYIRMTASSNFGNVFSVLVGSAFLPFLPMLPLQLLVQNLLYDISQIAIPFDDVD
EELVAKPLKWNPADIGRFMVFFGPLSSVFDIATYVLMWHVFAANTVGEQGLFQSGWFVVGLLTQTLIVHM
IRSPKLPFIQSRAAWPLLLMTALIMAIGVALPMSPLAGYFNLQALPPAYFPWLLAILLGYALLTTAMKKI
YIRKFGWQ
DNA Sequence: >BB1100 33600086 Mg(2+) transport ATPase [Bordetella bronchiseptica RB50 NCTC-13252]
ATGAAAATCATCGACACCCTGCTCAAGCGCCTCTTCAGCCGATTTCTCCAGGGGCGGCACGCGAATCGCC
ATTTCAAGCGCCAGGCCATTCTCGAAACCCTGCGCGGCGCCCATGGCGCGGCGGCGCGGGCCGGGGCCGG
GCGCGTCGCGCGCGACATGCGGCGGATCGCCTCCGATGACGTCGCCGCCGCCATGGCCCGCATGGGCTCG
CGCGAGGGGGGGCTGAGCGCGGCCGAGGTGCACGAGCGCCGGACCCGTTTCGGCCCCAACGAGGTCGAAC
ACGAGAAGCCCCTGCCCGGGTGGCTGCACCTGTGGCACTGCTACAGGAATCCGTTCAATCTTCTGCTGAG
CGTGCTGGCCGGCATTTCGTTCGCGACGGATGACATGACGGCGGCCGCGGTCATCGGCACGATGGTGGCC
TTGAGCACCCTGATCCGCTTCGTGCAGGAAGGCCGTTCCAGCCGGGCGGCCGAGCGGCTCAAGGCCATGG
TCGGCAACACCGCCACGGTCATCCGGCGCCGGGAGGACGGCGAGCCGGCCGGCCCGCCCGGGCGCGCCGC
GCGGGCGGAAGTGCCGATCCGCGACCTCGTGCCCGGCGACCACATCGTGCTTTCCGCCGGCGACATGATT
CCGGCGGACTGCCGCCTGCTGGCCGCCAAGGACCTGTTCATCGCCCAGGCGGCGATGACCGGCGAGTCGC
TGCCGGTGGAGAAATTCGCCGGCATCAACGAACCGTTCGAGACGATATTCGACGCGCCCAACCTGGTCTT
CATGGGCACCACCGTGGTTTCCGGCGCGGCCACCGCGCTGGTGATCGCCACGGGCGGCCGGACCTATTTC
GGCGGGCTTTCGGCGCGCGTGACCGCCGCCGATCGCGCGCCGACCGCGTTCGAGAGCGGGGTGAACAGCG
TCAGCTGGCTGCTGATCCGGTTCGCGCTGGTCATGGCGCCGGTCGTCCTGCTGATCAACGGTTTCACCAA
GGGCGACTGGCTGGAGGCTTCGCTGTTCGCGCTGTCGGTGGCGGTGGGCCTGACGCCGGAGATGCTGCCG
ATGATCGTGACGTCCACCCTGGCCAAGGGCGCGGTGGTGATGTCGCGCAAGAAAGTGATCGTCAAGCGCC
TGGACGCGATCCAGAACTTCGGCGCCATGGACGTGCTGTGCACCGACAAGACCGGCACGCTCACGCAGGA
CCGGATCGCGCTGGAGCGGCACACCGACGCGTTCGGCAACAGCTCGGACGAGGTGTTGCGGTATGCCTAT
CTCAACAGCTATTACCAGACCGGCCTGAAGAACCTGCTCGACCATGCGGTGCTCGAGCACGCCGAGCTGC
AGCGGGAAATGCGGGTGGCGCTCGACTATCGCAAGGTCGACGAGATTCCGTTCGATTTCGAGCGGCGGCG
CATGTCGGTGGTGGTGTCCGAGCGCGACGATCATCACGAACTGATCTGCAAGGGCGCGGTCGAGGAAATG
CTGTCGGTCTGCGACCGCATTCGCATCGAGACCGCGCAGGGGCCGCGCCATGTTCCGCTCGACGGCGAAC
AGCTCGACCGCGTGCGCGCGTTCACGCATGCCTTGAACGAACAGGGCTTGCGGGTGGTCGCGGTGGCCAT
GAAGGCGCTGCCGGCCTCGCAGTCGGCGTATTCGGTGGCCGACGAAGCCGGGCTGACCCTGGTGGGCCAT
ATCGCCTTTCTCGATCCGCCGAAGGAATCCACCGAGCCGGCGCTGCGCGCGCTGGCCGGGCATGGCGTGC
GGGTCAAGGTGCTGACCGGCGACAGCGAACTCATCGCGGCGCATGTGTGCGGCAGGGTGGGGCTGGAGCA
CGGCCGCTACCTGCTGGGCGCGCAGATCGAGAACATGAGCGACGAGCACCTGGCCTGCGCGGTCGAGACG
CACCAGTTGTTCGCGCGCCTGACGCCGCAGGACAAGGAGCGCATCGTGCGCGCCCTGCGCGGCAATGGCC
ACGTGGTCGGCTTCATGGGCGATGGCATCAACGATGCCGCGGCCCTGCGTGCGGCGGACATCGGCATTTC
GGTGGACGCCGGCGTGGACATCGCCAAGGAAGCCGCCGACATCATCCTGCTGGAAAAAAGCCTGATGGTG
CTGGAGGAGGGCGTGGTGGAGGGCCGCAGGACGTTCTGCAACATGCTCAAGTACATACGCATGACGGCCA
GCTCCAACTTCGGCAACGTTTTCTCGGTCCTGGTGGGCAGCGCGTTCCTGCCGTTCCTGCCCATGCTGCC
GCTGCAATTGCTGGTGCAGAACCTGCTGTACGACATCTCGCAGATCGCCATCCCGTTCGATGACGTGGAC
GAGGAGCTGGTCGCCAAGCCGCTGAAATGGAATCCGGCCGACATCGGGCGCTTCATGGTGTTCTTCGGCC
CGCTCAGCTCGGTCTTCGATATCGCTACCTACGTGCTCATGTGGCATGTCTTCGCGGCCAACACGGTGGG
CGAGCAGGGGTTGTTCCAATCGGGCTGGTTCGTGGTCGGCCTGCTGACGCAGACCTTGATCGTGCACATG
ATCCGCTCGCCCAAATTGCCGTTCATCCAGAGCCGGGCGGCCTGGCCGCTGCTGCTGATGACCGCGCTCA
TCATGGCCATAGGCGTGGCCTTGCCGATGAGCCCGCTGGCCGGCTATTTCAACCTGCAGGCGCTGCCCCC
GGCCTATTTCCCGTGGCTGCTCGCCATCCTGCTGGGCTACGCGCTGCTGACCACGGCGATGAAGAAGATC
TATATACGGAAGTTCGGCTGGCAGTGA
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    Publications
Publications on this gene:
1.  Mol Microbiol 2004 May ; 4(52):1201-14.
Regulation of type III secretion in Bordetella.

Mattoo S ,Yuk MH ,Huang LL ,Miller JF ,

Department of Microbiology, Immunology and Molecular Genetics, David Geffen School of Medicine at UCLA, 10833 Le Conte Ave., Los Angeles, CA 90095-1747, USA.

The BvgAS virulence control system regulates the expression of type III secretion genes in Bordetella subspecies that infect humans and other mammals. We have identified five open reading frames, btrS, btrU, btrX, btrW and btrV, that are activated by BvgAS and encode regulatory factors that control type III secretion at the levels of transcription, protein expression and secretion. The btrS gene product bears sequence similarity to ECF (extracytoplasmic function) sigma factors and is required for transcription of the bsc locus. btrU, btrW and btrV encode proteins predicted to contain PP2C-like Ser phosphatase, HPK (His protein kinase)-like Ser kinase and STAS anti-sigma factor antagonist domains, respectively, which are characteristic of Gram-positive partner switching proteins in Bacillus subtilis. BtrU and BtrW are required for secretion of proteins that are exported by the bsc type III secretion system, whereas BtrV is specifically required for protein synthesis and/or stability. Bordetella species have thus evolved a unique cascade to differentially regulate type III secretion that combines a canonical phosphorelay system with an ECF sigma factor and a set of proteins with domain signatures that define partner switchers, which were traditionally thought to function only in Gram-positive bacteria. The presence of multiple layers and mechanisms of regulation most likely reflects the need to integrate multiple signals in controlling type III secretion. The bsc and btr loci are nearly identical between broad-host-range and human-specific Bordetella. Comparative analysis of Bordetella subspecies revealed that, whereas bsc and btr loci were transcribed in all subspecies, only broad-host-range strains expressed a functional type III secretion system in vitro. The block in type III secretion is post-transcriptional in human-adapted strains, and signal recognition appears to be a point of divergence between subspecies.

Publication Type: Research Support, Non-U.S. Gov't; Research Support, U.S. Gov't, Non-P.H.S.; Research Support, U.S. Gov't, P.H.S.;

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    External Links

   TIGR CMRTHE SEEDThe SEED  
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    NBCI Gene Page
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