Detailed information    

insolico Bioinformatically predicted

Overview


Name   comA   Type   Machinery gene
Locus tag   WHO21_RS09825 Genome accession   NZ_CP148131
Coordinates   2133308..2135521 (+) Length   737 a.a.
NCBI ID   WP_010952924.1    Uniprot ID   Q88LN2
Organism   Pseudomonas putida isolate FELIX_MS641     
Function   ssDNA transport through the inner membrane (predicted from homology)   
DNA binding and uptake

Genomic Context


Location: 2128308..2140521
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  WHO21_RS09805 - 2130184..2130807 (+) 624 WP_010952921.1 glutathione S-transferase -
  WHO21_RS09810 - 2130941..2131873 (+) 933 WP_010952922.1 ABC transporter ATP-binding protein -
  WHO21_RS09815 - 2131870..2132649 (+) 780 WP_010952923.1 ABC transporter permease -
  WHO21_RS09820 - 2132533..2133165 (-) 633 WP_061405595.1 DUF2062 domain-containing protein -
  WHO21_RS09825 comA 2133308..2135521 (+) 2214 WP_010952924.1 DNA internalization-related competence protein ComEC/Rec2 Machinery gene
  WHO21_RS09830 exbB 2135632..2136267 (+) 636 WP_026031862.1 MotA/TolQ/ExbB proton channel family protein Machinery gene
  WHO21_RS09835 - 2136264..2136698 (+) 435 WP_010952926.1 biopolymer transporter ExbD -
  WHO21_RS09840 lpxK 2136698..2137699 (+) 1002 WP_049586866.1 tetraacyldisaccharide 4'-kinase -
  WHO21_RS09845 - 2137744..2137929 (+) 186 WP_003247142.1 Trm112 family protein -
  WHO21_RS09850 kdsB 2137926..2138690 (+) 765 WP_010952928.1 3-deoxy-manno-octulosonate cytidylyltransferase -
  WHO21_RS09855 - 2138690..2139154 (+) 465 WP_004575950.1 low molecular weight protein-tyrosine-phosphatase -
  WHO21_RS09860 murB 2139151..2140170 (+) 1020 WP_049586861.1 UDP-N-acetylmuramate dehydrogenase -

Sequence


Protein


Download         Length: 737 a.a.        Molecular weight: 79459.38 Da        Isoelectric Point: 10.4818

>NTDB_id=951495 WHO21_RS09825 WP_010952924.1 2133308..2135521(+) (comA) [Pseudomonas putida isolate FELIX_MS641]
MRTGMFALALGLLCLGFLPALPSVGWLITLAACAVGSLFTRVWPLGWFLLGLCWACGSAQQALDDRLATGLEGRTLWLEG
RVAGLPARTAHGVRFELEAPRSRRAELPQRLQLSWFDGAPLRAGEQWRLAVTLQRPNGLLNPHGPDREAQLLARRVGATG
TVKAGQLLAPVAGGWRDALRQRLLMVEANGRQAALVALVLGDGAGLAREDWQTLQATGTVHLLVISGQHIGLVAGLLYGL
VAGLARWGLWPARLPWLPWACGLAMAAALAYGWLAGGGVPVQRACLMLAVVLLWRLRFRHLGAFFPLLVALVAVLVFEPL
AALLPGFWLSFAAVATLIYCFSARLGGWRPWQAWTRAQWVIAVGLLPVLLATGLPVSLSAPLANLVAVPWVSLAVLPLAL
LGTLMLPLAGVGEALLWLAGGLLDVLFRGLALVAQQRPAWVPPALPLWAWLLVCLGVLLVLLPRGVPLRGLGGVMLLALW
VPREPVPFGQVEVWQLDVGQGLAVLLRTRHHSLLYDAGPARGESDLGERVVLPTLRKLGVGGLDVMVISHAHADHAGGAV
AIARGLPIKRIIGGEALVDVPLQPCASGEQWDWDGVRFSLWRWVDGQSSNDRSCVLLVEAQGERLLLAGDMEAAAERAWL
ADTEVPRIDWLQAPHHGSRSSSTEAFVRATAPRGVLISRGRNNSFGHPHVQVVERYGRHGVVMHDTAEEGALRLVLGRHG
VVEGVRGQRRFWRVRGE

Nucleotide


Download         Length: 2214 bp        

>NTDB_id=951495 WHO21_RS09825 WP_010952924.1 2133308..2135521(+) (comA) [Pseudomonas putida isolate FELIX_MS641]
ATGCGCACAGGGATGTTTGCGCTCGCGCTCGGGCTGTTGTGCCTGGGCTTTCTGCCCGCATTGCCATCGGTCGGATGGTT
GATAACCCTGGCAGCCTGCGCTGTCGGCAGCCTGTTTACCCGGGTCTGGCCGCTGGGTTGGTTTCTGCTGGGCTTGTGTT
GGGCGTGCGGGTCTGCTCAGCAGGCCCTTGATGATCGTCTGGCTACCGGCCTGGAGGGGCGCACCTTGTGGCTGGAGGGG
CGGGTGGCGGGTTTGCCGGCCCGCACTGCACACGGTGTGCGTTTCGAGCTGGAAGCGCCACGCTCGCGGCGGGCCGAACT
GCCTCAGCGCCTGCAGCTGAGCTGGTTCGACGGCGCGCCGCTGCGGGCGGGCGAGCAGTGGCGGCTGGCCGTGACCTTGC
AGCGCCCGAACGGGCTGCTGAACCCGCATGGGCCCGACCGTGAAGCGCAGTTGCTGGCGCGACGGGTGGGGGCTACGGGT
ACGGTCAAGGCGGGGCAGTTGCTGGCGCCAGTCGCCGGTGGTTGGCGCGATGCGCTGCGTCAGCGCTTGCTGATGGTCGA
AGCCAATGGCCGGCAGGCAGCGCTGGTGGCACTGGTGCTTGGCGACGGTGCGGGCCTGGCCCGTGAGGACTGGCAGACGT
TGCAGGCCACCGGCACGGTGCACCTGTTGGTGATTTCCGGCCAGCACATCGGCCTGGTCGCCGGTTTGCTCTATGGCCTG
GTCGCCGGGCTGGCGCGTTGGGGGCTATGGCCGGCAAGGCTACCGTGGTTACCCTGGGCCTGCGGCCTGGCCATGGCCGC
AGCGCTGGCCTACGGGTGGCTGGCTGGCGGTGGGGTGCCAGTGCAGCGGGCCTGCCTGATGCTGGCCGTGGTGTTGCTCT
GGCGTCTGCGCTTTCGCCACCTTGGCGCTTTTTTTCCGTTGCTGGTTGCACTGGTCGCTGTACTTGTCTTCGAGCCACTA
GCGGCGTTGCTGCCTGGGTTCTGGCTGTCGTTCGCCGCCGTGGCCACGCTCATCTACTGCTTCAGTGCCCGGTTGGGTGG
TTGGCGGCCCTGGCAGGCCTGGACACGAGCGCAATGGGTGATCGCCGTCGGCTTGCTACCGGTGTTGCTGGCCACCGGCT
TGCCGGTGAGCCTCAGTGCGCCGCTGGCCAACCTTGTGGCGGTGCCGTGGGTCAGCCTGGCGGTCTTGCCGTTGGCGTTG
CTGGGCACGCTGATGTTGCCGCTGGCGGGTGTTGGCGAGGCGTTGCTCTGGCTGGCAGGTGGCCTGCTGGATGTGCTGTT
CCGTGGGCTGGCGCTGGTGGCGCAGCAGCGCCCGGCATGGGTCCCGCCGGCCCTGCCGTTGTGGGCCTGGCTGCTGGTAT
GTCTGGGTGTGCTGTTGGTTTTGCTGCCCCGTGGTGTGCCGCTGCGCGGGTTGGGAGGGGTAATGCTGCTGGCGCTGTGG
GTGCCCCGGGAGCCGGTGCCGTTCGGCCAGGTCGAGGTCTGGCAGCTGGATGTTGGCCAGGGGCTGGCGGTGCTCTTGCG
TACGCGGCATCACAGCCTGCTCTACGATGCCGGGCCGGCCAGGGGGGAAAGCGACTTGGGGGAGCGAGTGGTGCTGCCAA
CCTTGCGCAAGCTGGGGGTGGGCGGCCTTGACGTGATGGTGATCAGCCATGCACATGCCGATCATGCGGGCGGGGCCGTG
GCCATTGCGCGTGGTTTGCCGATCAAGCGGATAATCGGTGGGGAAGCGCTGGTTGATGTTCCGTTGCAGCCTTGTGCCAG
TGGCGAGCAATGGGATTGGGATGGCGTGCGCTTTTCGCTGTGGCGCTGGGTGGACGGGCAGAGCAGTAATGACCGTTCCT
GTGTCTTGTTGGTCGAAGCGCAGGGCGAGCGCTTGCTGCTGGCGGGGGATATGGAAGCTGCTGCCGAAAGGGCCTGGCTG
GCGGACACTGAAGTGCCGCGTATCGACTGGCTGCAGGCGCCGCATCATGGCAGCCGCAGTTCGTCCACCGAGGCGTTCGT
CCGGGCTACCGCACCGCGCGGGGTATTGATTTCGCGGGGGCGCAACAACAGCTTCGGGCACCCGCACGTGCAGGTGGTCG
AGCGGTATGGGCGGCATGGGGTGGTGATGCATGATACGGCGGAGGAGGGGGCATTGCGGTTGGTGCTGGGGCGGCATGGG
GTAGTCGAGGGGGTTAGGGGGCAGCGGCGGTTCTGGCGGGTTCGAGGGGAGTGA


Secondary structure


Protein secondary structures were predicted by S4PRED and visualized by seqviz.



3D structure


Source ID Structure
  AlphaFold DB Q88LN2

Transmembrane helices


Transmembrane helices of protein were predicted by TMHMM 2.0 and visualized by seqviz and ECharts.



Visualization of predicted probability:


Similar proteins


Only experimentally validated proteins are listed.

Protein Organism Identities (%) Coverage (%) Ha-value
  comA Pseudomonas stutzeri DSM 10701

58.587

97.965

0.574

  comA Ralstonia pseudosolanacearum GMI1000

34.821

100

0.37