Transporter Protein
AZC_2673


    Transport Function
Transporter Name: AZC_2673
Transporter Type: Secondary Transporter
Transporter Family: DAACS (TC#: 2.A.23)
The Dicarboxylate/Amino Acid:Cation (Na+ or H+) Symporter (DAACS) Family
Transporter Subfamily: 
Substrate/Function: proton/sodium ion:glutamate/aspartate symporter
TC#: 
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    Genome Locus
PID:   158424297     Blast
Source:   Azorhizobium caulinodans ORS 571
Chromosome:   CHR
Location:   3031943..3033301
Gene:   -
Length:  452
Strand:  +
Code:   -
COG:   -
Product:  C4-dicarboxylate transport protein
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    Transmembrane Segment
TMSs: 
TMHMM Server 
Total:     9
TMS 1:  21-40
TMS 2:  60-79
TMS 3:  92-114
TMS 4:  198-220
TMS 5:  233-255
TMS 6:  308-330
TMS 7:  337-359
TMS 8:  364-386
TMS 9:  398-415
Topology:   >AZC_2673
MPAHAEPQPLAGRKPKRFYEQLYVQVLIGVAAGIALGHFYPQIAPMAKPLGDGFIKLVKMMIVPIVFCTI
VVGVAGVHADRKIGASLLKTMLLFYGLTIIGLMTGLIAVETIQPGAGMHMDVHAIDAKEAARYAAGAKKL
DTVDVLLHIIPPSFFTPFAEGEVLPVLFIALITGFGLRKAGVSGEPFLRGVEAFSRALFAAFGYMMRLAP
IGAFGAIAFIVAKSGLKTIGNLGLLIFTLYVACGFFVFVVLWGLARFHGFSLFRLLRYFREELLIVLGTS
STEPVLPAVLYKLERLGCSKGSVGLTLPLGYSFNLDGTAIYLTLASLFLAQAMDIHLSAWQVGSMIFVML
LTSKGAAGVTGSGFAALVATLAAMPDTVPVAGVVMIAGIDRFMSEARALTSLVSNMVACIVIAIWDGECD
RSVLLAELAQGKPTERPAVESTGAVAELPQTV
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    Sequence
Protein Sequence: >AZC_2673 158424297 C4-dicarboxylate transport protein [Azorhizobium caulinodans ORS 571]
MPAHAEPQPLAGRKPKRFYEQLYVQVLIGVAAGIALGHFYPQIAPMAKPLGDGFIKLVKMMIVPIVFCTI
VVGVAGVHADRKIGASLLKTMLLFYGLTIIGLMTGLIAVETIQPGAGMHMDVHAIDAKEAARYAAGAKKL
DTVDVLLHIIPPSFFTPFAEGEVLPVLFIALITGFGLRKAGVSGEPFLRGVEAFSRALFAAFGYMMRLAP
IGAFGAIAFIVAKSGLKTIGNLGLLIFTLYVACGFFVFVVLWGLARFHGFSLFRLLRYFREELLIVLGTS
STEPVLPAVLYKLERLGCSKGSVGLTLPLGYSFNLDGTAIYLTLASLFLAQAMDIHLSAWQVGSMIFVML
LTSKGAAGVTGSGFAALVATLAAMPDTVPVAGVVMIAGIDRFMSEARALTSLVSNMVACIVIAIWDGECD
RSVLLAELAQGKPTERPAVESTGAVAELPQTV
DNA Sequence: >AZC_2673 158424297 C4-dicarboxylate transport protein [Azorhizobium caulinodans ORS 571]
atgccggcccatgcagagccacagcccctcgccgggcgaaagccgaaacgcttctacgagcagctttatg
tccaggtgctgatcggcgtcgccgccggcatcgcgctcgggcacttctacccgcagatcgcgcccatggc
gaagcccctgggcgatggcttcatcaagctcgtgaagatgatgatcgtgccgatcgtcttctgcaccatc
gtggtgggcgtggccggcgtgcatgcggaccgcaagatcggcgcctcgctgctcaagaccatgctcttgt
tctacggcctcaccatcatcggcctgatgaccggcctgatcgcggtcgagaccatccagcccggcgccgg
catgcacatggacgtgcatgccatcgacgccaaggaagccgcccgctacgctgcgggcgccaagaagctc
gataccgtggacgtgctgctgcacatcatcccgcccagcttcttcacgcccttcgcggagggtgaggtgc
tgccggtgctgttcatcgccctcatcaccgggttcggcctgcgcaaggcgggcgtgtccggcgagccgtt
cctgcgcggcgtcgaagccttctcccgcgccctgttcgccgctttcggctacatgatgcggcttgccccc
atcggcgccttcggagccatcgccttcatcgtcgccaagagcggcctgaagaccatcggcaacctcggcc
tgctgatcttcacgctttatgtggcctgcggtttcttcgtcttcgtcgtcctctggggactggcgcggtt
ccacggattcagcctcttccggctgctgcggtacttccgcgaggaactgctgatcgtgctcggcacctcg
tccaccgagcccgtgcttcccgctgtgctctacaagctggaacgcctcggctgctccaagggctcggtcg
gcctcaccctgccgctcggctattccttcaatctcgacggcacggccatctatctgaccctcgcctcgct
gttcctggcgcaggccatggatatccatctgagcgcctggcaggtcggctccatgatcttcgtgatgctg
ctgacgtcgaagggcgccgccggtgtgactggcagcgggttcgccgccctcgtcgcgacgctggcggcga
tgccggacacggtgcccgtggcgggcgtggtgatgatcgccggcatcgaccgcttcatgtcggaagcccg
ggccctgaccagccttgtgagcaacatggtcgcctgtatcgtcatcgccatctgggacggcgaatgcgac
cgctccgtcctcctcgccgaactggcgcagggcaagcccacggagcgtccggcggtcgaaagcaccggcg
ccgttgcggaactgccccagaccgtctga
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    Publications
Publications on this gene:
1.  Appl Environ Microbiol 2007 Oct ; 20(73):6650-9.
Rhizobial factors required for stem nodule maturation and maintenance in Sesbania rostrata-Azorhizobium caulinodans ORS571 symbiosis.

Suzuki S ,Aono T ,Lee KB ,Suzuki T ,Liu CT ,Miwa H ,Wakao S ,Iki T ,Oyaizu H ,

Biotechnology Research Center, The University of Tokyo, Yayoi 1-1-1, Bunkyo-ku, Tokyo 113-8657, Japan.

The molecular and physiological mechanisms behind the maturation and maintenance of N(2)-fixing nodules during development of symbiosis between rhizobia and legumes still remain unclear, although the early events of symbiosis are relatively well understood. Azorhizobium caulinodans ORS571 is a microsymbiont of the tropical legume Sesbania rostrata, forming N(2)-fixing nodules not only on the roots but also on the stems. In this study, 10,080 transposon-inserted mutants of A. caulinodans ORS571 were individually inoculated onto the stems of S. rostrata, and those mutants that induced ineffective stem nodules, as displayed by halted development at various stages, were selected. From repeated observations on stem nodulation, 108 Tn5 mutants were selected and categorized into seven nodulation types based on size and N(2) fixation activity. Tn5 insertions of some mutants were found in the well-known nodulation, nitrogen fixation, and symbiosis-related genes, such as nod, nif, and fix, respectively, lipopolysaccharide synthesis-related genes, C(4) metabolism-related genes, and so on. However, other genes have not been reported to have roles in legume-rhizobium symbiosis. The list of newly identified symbiosis-related genes will present clues to aid in understanding the maturation and maintenance mechanisms of nodules.

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

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    External Links

   TIGR CMRTHE SEEDThe SEED  
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    NBCI Gene Page
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