Detailed information    

insolico Bioinformatically predicted

Overview


Name   htrA   Type   Regulator
Locus tag   BAALB65_RS16085 Genome accession   NZ_CP029069
Coordinates   3215481..3216842 (-) Length   453 a.a.
NCBI ID   WP_100261999.1    Uniprot ID   -
Organism   Bacillus amyloliquefaciens strain ALB65     
Function   require for competence development (predicted from homology)   
Competence regulation

Genomic Context


Location: 3210481..3221842
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  BAALB65_RS16060 (BAALB65_16060) - 3210587..3211411 (-) 825 WP_109567187.1 ABC transporter ATP-binding protein -
  BAALB65_RS16065 (BAALB65_16065) - 3211567..3212004 (-) 438 WP_077722810.1 YusW family protein -
  BAALB65_RS16070 (BAALB65_16070) - 3212124..3213905 (-) 1782 WP_017418951.1 M3 family oligoendopeptidase -
  BAALB65_RS16075 (BAALB65_16075) - 3214038..3214880 (+) 843 WP_017418950.1 oxidoreductase -
  BAALB65_RS16080 (BAALB65_16080) - 3214970..3215434 (+) 465 WP_007410071.1 Dps family protein -
  BAALB65_RS16085 (BAALB65_16085) htrA 3215481..3216842 (-) 1362 WP_100261999.1 S1C family serine protease Regulator
  BAALB65_RS16090 (BAALB65_16090) - 3217120..3217797 (+) 678 WP_014418841.1 response regulator transcription factor -
  BAALB65_RS16095 (BAALB65_16095) - 3217794..3219149 (+) 1356 WP_014418842.1 HAMP domain-containing sensor histidine kinase -
  BAALB65_RS16100 (BAALB65_16100) spxO 3219177..3219341 (-) 165 WP_007410067.1 anti-adapter protein SpxO -
  BAALB65_RS16105 (BAALB65_16105) - 3219520..3220395 (+) 876 WP_014305782.1 TetR/AcrR family transcriptional regulator -
  BAALB65_RS16110 (BAALB65_16110) fumC 3220432..3221820 (-) 1389 WP_007410064.1 class II fumarate hydratase -

Sequence


Protein


Download         Length: 453 a.a.        Molecular weight: 47872.43 Da        Isoelectric Point: 5.1049

>NTDB_id=250141 BAALB65_RS16085 WP_100261999.1 3215481..3216842(-) (htrA) [Bacillus amyloliquefaciens strain ALB65]
MNDHRDDGRSRDQSDLSHTEQNRNEQQRISHQEPELLEGPVSKEAEKETAAGAEFEKTAAVKKEKKRRAAWLSPILGGII
GGGLVLGIVPNLPSEQHKTEAVSDTKQVQSSNFTSTPLKNTSSVADMVEDLEPAIVGVSNYQASQSSQFGLDGGSSSETE
SGTGSGVIFKKDGEKAYIITNNHVIEGANKLSVTLYNGKTETAKLVGKDAISDLAVLEISSSNVKKAASFGDSSKLRIAD
KVIAIGNPLGQQFSGTVTQGVISGLNRTVDADTSQGTVEMNVIQTDAAINPGNSGGPLINSSGQVIGINSMKVSESGVES
LGFAIPSNDVEPIVDQLLAKGKVERPFLGVQMIDMSQVPETYQENTLGLFGDQLSKGVYVKEVQSGSPAAKAGIKSNDVI
VQLNGKDVGSSADIRQILYNQLKIGDKTTVQVLRSGSKKTLNVTLTKQTESAS

Nucleotide


Download         Length: 1362 bp        

>NTDB_id=250141 BAALB65_RS16085 WP_100261999.1 3215481..3216842(-) (htrA) [Bacillus amyloliquefaciens strain ALB65]
ATGAATGATCATCGAGATGACGGCAGAAGCCGCGATCAGTCAGATCTTTCACATACGGAACAAAACAGAAATGAACAGCA
GCGGATCAGCCATCAGGAGCCGGAGCTGCTCGAAGGGCCCGTCTCGAAAGAAGCGGAAAAAGAGACGGCCGCCGGCGCGG
AATTTGAAAAAACGGCTGCCGTGAAAAAAGAAAAAAAACGGAGAGCCGCTTGGCTGAGCCCGATTTTAGGCGGTATTATC
GGCGGAGGCCTCGTGCTTGGCATTGTGCCGAACCTGCCGAGTGAGCAGCATAAGACAGAAGCCGTTTCTGATACGAAACA
AGTTCAGTCTTCGAATTTTACGTCAACGCCTTTGAAAAATACCTCAAGCGTAGCGGATATGGTAGAAGATTTGGAGCCTG
CGATTGTGGGAGTGTCCAACTACCAAGCTTCGCAAAGCAGCCAGTTCGGACTTGACGGCGGTTCAAGCTCTGAAACGGAA
AGCGGCACGGGGTCAGGCGTCATCTTCAAAAAAGACGGCGAAAAAGCGTACATCATCACAAACAATCATGTCATAGAAGG
GGCGAACAAACTGTCGGTCACTCTTTACAATGGGAAAACCGAAACGGCAAAGCTTGTCGGAAAGGATGCCATCAGTGACT
TGGCTGTATTGGAAATCAGCTCGTCCAATGTCAAAAAAGCGGCCAGCTTCGGGGATTCCTCCAAGCTCCGCATTGCCGAT
AAAGTGATTGCCATCGGCAACCCGCTCGGCCAGCAGTTTTCCGGCACCGTCACACAAGGTGTCATCAGCGGGCTGAACAG
AACGGTAGACGCCGATACATCTCAAGGCACGGTGGAAATGAACGTGATTCAGACGGATGCGGCGATTAACCCCGGAAACA
GCGGCGGCCCGTTAATCAACTCAAGCGGCCAGGTTATCGGGATCAACAGCATGAAAGTCAGTGAAAGCGGCGTGGAGTCA
CTCGGCTTTGCCATTCCGAGCAATGATGTAGAACCGATAGTCGACCAGCTGCTTGCAAAAGGAAAAGTCGAGCGCCCGTT
TTTAGGTGTGCAGATGATTGATATGTCGCAAGTGCCGGAAACCTATCAGGAAAACACGCTCGGACTGTTCGGCGACCAGC
TGTCTAAGGGTGTTTACGTAAAAGAGGTGCAATCCGGCTCACCGGCTGCGAAAGCGGGCATCAAATCAAATGACGTCATT
GTACAATTGAACGGCAAAGATGTCGGCAGCAGCGCCGATATCAGACAGATCTTATATAACCAGCTGAAAATCGGCGATAA
GACGACTGTTCAAGTTCTCAGAAGCGGAAGCAAAAAGACGCTGAACGTCACATTAACGAAACAAACCGAAAGCGCAAGCT
GA


Secondary structure


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



3D structure


Source ID Structure

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
  htrA Streptococcus mutans UA159

41.414

87.417

0.362