Detailed information    

insolico Bioinformatically predicted

Overview


Name   rexA   Type   Machinery gene
Locus tag   SALIVA_RS08675 Genome accession   NC_017595
Coordinates   1911517..1915170 (-) Length   1217 a.a.
NCBI ID   WP_014635012.1    Uniprot ID   -
Organism   Streptococcus salivarius JIM8777     
Function   homologous recombination (predicted from homology)   
Homologous recombination

Genomic Context


Location: 1906517..1920170
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  SALIVA_RS08655 (SALIVA_1768) proB 1906913..1907716 (-) 804 WP_014635008.1 glutamate 5-kinase -
  SALIVA_RS08660 (SALIVA_1769) - 1907836..1909425 (-) 1590 WP_014635009.1 hypothetical protein -
  SALIVA_RS08665 (SALIVA_1770) - 1909428..1910159 (-) 732 WP_014635010.1 ABC transporter ATP-binding protein -
  SALIVA_RS08670 (SALIVA_1771) - 1910433..1911164 (+) 732 WP_013991143.1 DUF554 domain-containing protein -
  SALIVA_RS08675 (SALIVA_1772) rexA 1911517..1915170 (-) 3654 WP_014635012.1 helicase-exonuclease AddAB subunit AddA Machinery gene
  SALIVA_RS08680 (SALIVA_1773) rexB 1915160..1918480 (-) 3321 WP_014635013.1 ATP-dependent nuclease subunit B Machinery gene
  SALIVA_RS08685 (SALIVA_1774) - 1918728..1920101 (-) 1374 WP_014635014.1 GHKL domain-containing protein -

Sequence


Protein


Download         Length: 1217 a.a.        Molecular weight: 138182.34 Da        Isoelectric Point: 4.7311

>NTDB_id=40324 SALIVA_RS08675 WP_014635012.1 1911517..1915170(-) (rexA) [Streptococcus salivarius JIM8777]
MLTKAFLSPTEIKERIAQEAASDKERKLTPEQIEAIYSNGTNILVSASAGSGKTFVMVERILDMIGRGVGIDQLFISTFT
VKAAGELKERLEKRLTEQLGQVETDEERAFLSDQIAKIGTADIGTMDAFTQKLVNQYGYLLGVSPIFRIMTDPAEQTLMK
NEVYADLFNDYMQGKDAQLFQKLVRNFVGNGKTSKAFRDLVYDVYNFSQATAGPEKWLRQNLLKGQAEANPDKAKAELLE
GLKDGLLADFLDFLRDHLGLAQREFAKAKYLNNVSDAISLLEGALANDQTDMEDLLKQLLTLSGGTGLTNMARPKDEELK
AYKEAYNKTKNEFVAQLREVDTQLTVLEVLTKHNDDILPLLELLQAFVLDFSDQYLQAKIQENAFEFSDIAHFAIRILEE
NPEVAASYRDRYHEVMVDEYQDNSHTQERMLELLSNGHNRFMVGDIKQSIYRFRQADPQIFNGKFQLFLENPDAGKLILL
KENFRSQSEVLDATNGVFSHLMDQEIGDILYDKTHMLVAGSEKQKEPHPENETEVLIYNSDEASVTPDEESADQPISSGE
ISLVIKEIIKLHEQGVRFEDITLLAPTRNTYLDLMASFEEHGIPLVPDEYKSSYLESLEVMIMLDTLRAINNPLNDYALV
ALLRSPMFNFNEDDLARIAVQADKGQFYDKLLAAHTKSGLHPEVVTQGLEAKLTLFIETLSDWRDYSKWHSLYDLIWKIY
DDRFYYDYVGSLPRAEQRQANLYALALRANAYEKTGFKGLSRFIGMIDKIISSGNDLEEVTDLVPKNAVSLMTIHKSKGL
EFKYVFVLQMNRKFIGHSKDVLSGKYIINREKGLGIKYLADLKDQVNTNLPKLNVVLETLTFQENRREERRASISEEMRL
LYVAMTRAEKKLYLVGKGSKEKLTQQFGTDVENNRLPVALRDQIATYQDWVMALDTAFMRKDLKFTVRFVEAEELTPEAI
GQVEVQATVDADDLSNNRQTEDIKRALTVLESVEKLNQLYAPAIDLPSVRTPSQLKAFYEPVMDTEGVDIMDKKEEVQPL
ETSTSFELPDFGQKTKVTGAAVGSATHELMQRLILSNKVTLQDLTQALSRVSADDQVKARVQLEKLLGFFDTELGKLILA
NRDKLRREAPFAMLAEDPASKEDFVVRGIIDGYLLLEDRIVLFDYKTDRFTQPGELKDRYKGQMSLYAKALSQAYQIDKI
DKYLILLGGKNLEVVEV

Nucleotide


Download         Length: 3654 bp        

>NTDB_id=40324 SALIVA_RS08675 WP_014635012.1 1911517..1915170(-) (rexA) [Streptococcus salivarius JIM8777]
ATGTTGACTAAAGCTTTTTTAAGTCCAACAGAGATTAAGGAACGTATTGCCCAAGAAGCAGCTTCTGACAAGGAACGCAA
GTTAACACCTGAGCAGATTGAGGCCATTTACAGTAATGGTACTAATATTCTTGTGTCAGCTTCGGCTGGATCAGGAAAAA
CCTTTGTTATGGTTGAGCGTATCCTTGATATGATTGGACGTGGTGTTGGCATTGACCAACTCTTTATCTCAACCTTTACG
GTAAAGGCAGCAGGTGAGTTAAAAGAGCGTCTGGAAAAGCGTCTGACAGAGCAACTTGGACAAGTTGAGACGGATGAAGA
GCGTGCCTTTCTTTCAGATCAGATTGCCAAGATTGGGACGGCTGATATTGGAACTATGGATGCCTTCACCCAGAAATTGG
TCAATCAGTATGGCTATCTCCTGGGTGTGTCACCTATTTTCCGCATTATGACAGATCCTGCCGAGCAGACACTCATGAAA
AATGAGGTTTATGCTGATCTCTTTAACGATTATATGCAAGGAAAGGATGCCCAACTTTTCCAAAAATTGGTCCGCAACTT
CGTAGGAAATGGCAAGACTAGTAAGGCTTTTCGTGATTTAGTTTACGATGTCTATAACTTTTCTCAGGCTACTGCAGGTC
CTGAAAAATGGCTACGTCAAAATCTTTTAAAAGGGCAGGCAGAGGCCAATCCAGACAAGGCTAAAGCTGAGCTTTTAGAG
GGTCTCAAAGATGGCTTGTTGGCTGATTTCTTAGACTTCTTAAGAGACCATCTAGGTCTAGCTCAGCGTGAATTTGCCAA
GGCCAAATATCTAAATAATGTGTCAGATGCCATTAGCCTTCTTGAGGGAGCCTTGGCCAATGACCAAACGGATATGGAGG
ACTTGCTCAAACAACTCTTGACTTTGTCAGGAGGGACTGGTTTGACCAATATGGCCCGTCCTAAAGACGAGGAACTCAAG
GCCTACAAGGAAGCTTACAACAAGACCAAAAATGAGTTTGTGGCCCAGTTGCGAGAGGTTGATACCCAGCTAACGGTCCT
CGAGGTTTTGACCAAGCATAATGATGACATCCTACCTCTGTTGGAGTTGCTTCAGGCCTTTGTACTTGATTTTTCGGACC
AGTATTTACAGGCTAAGATTCAGGAAAATGCCTTTGAATTCTCGGATATTGCCCATTTTGCCATCCGTATTTTGGAGGAA
AATCCAGAGGTGGCAGCTAGCTACCGTGACCGTTACCATGAAGTAATGGTAGACGAGTATCAGGACAATAGCCATACCCA
AGAACGCATGTTGGAGCTCCTCTCTAATGGCCACAACCGATTCATGGTGGGAGATATCAAACAATCCATCTATCGTTTCC
GTCAGGCAGACCCTCAGATTTTTAATGGCAAGTTCCAGCTCTTCCTTGAAAATCCAGATGCAGGTAAGCTGATTCTCCTT
AAAGAGAACTTCCGTAGTCAATCTGAGGTTCTTGATGCGACCAATGGTGTTTTCAGTCACCTCATGGATCAGGAAATCGG
GGACATCCTCTATGACAAGACTCATATGCTGGTAGCGGGTAGCGAGAAGCAAAAAGAGCCCCATCCTGAAAATGAGACAG
AGGTTCTGATTTACAATAGTGATGAAGCAAGTGTGACTCCTGACGAGGAAAGTGCTGATCAACCTATCAGTAGCGGCGAG
ATTTCCTTGGTTATCAAAGAAATCATCAAACTTCACGAGCAGGGTGTACGTTTTGAGGACATTACCCTCCTAGCACCAAC
CCGTAACACCTATCTGGACTTGATGGCAAGTTTCGAGGAGCACGGAATTCCCTTGGTTCCTGACGAGTACAAGTCAAGCT
ACCTAGAGTCACTAGAAGTTATGATTATGTTGGACACCCTTCGTGCCATCAATAATCCTCTCAATGACTACGCCTTGGTT
GCCCTCCTTCGTTCACCTATGTTTAACTTCAACGAGGACGACCTGGCTCGGATTGCTGTCCAGGCTGACAAAGGACAATT
CTATGACAAGCTTCTTGCAGCTCATACTAAATCAGGACTTCATCCAGAAGTCGTGACGCAAGGACTTGAGGCTAAGTTGA
CTCTCTTCATTGAGACTCTGTCAGATTGGCGTGATTACAGTAAGTGGCACTCGCTCTATGACCTCATCTGGAAGATTTAC
GACGATCGTTTCTATTATGATTATGTTGGTAGTCTTCCACGAGCTGAGCAACGCCAGGCCAATCTCTACGCCCTTGCCTT
GCGTGCCAATGCCTATGAAAAGACTGGCTTTAAGGGACTTTCTCGTTTTATTGGTATGATTGATAAGATCATTTCTAGCG
GTAACGACCTAGAGGAAGTAACAGACTTGGTTCCCAAAAATGCTGTAAGCCTCATGACCATTCACAAGTCCAAGGGACTA
GAGTTCAAGTATGTCTTTGTCTTGCAGATGAATCGCAAGTTTATTGGTCACAGCAAGGATGTACTAAGTGGTAAGTACAT
TATAAACCGTGAAAAAGGACTAGGCATTAAGTATCTAGCTGACCTCAAAGACCAGGTAAACACTAATTTGCCTAAGTTAA
ATGTTGTTCTCGAAACCTTAACCTTCCAGGAAAATCGTAGGGAAGAGCGTCGAGCAAGTATCTCAGAAGAGATGCGTTTG
CTCTATGTTGCAATGACCCGTGCAGAGAAAAAACTCTACCTAGTTGGTAAGGGCAGTAAGGAGAAATTGACCCAGCAATT
TGGCACAGATGTTGAAAATAATCGCCTACCAGTAGCTCTACGTGACCAAATCGCTACTTATCAGGATTGGGTTATGGCTT
TGGATACTGCCTTCATGAGAAAGGATCTCAAGTTTACTGTTCGCTTTGTTGAGGCTGAGGAGTTGACTCCAGAGGCTATT
GGTCAGGTTGAAGTTCAAGCAACAGTAGATGCTGATGATCTATCTAACAATCGCCAGACGGAAGACATTAAGCGTGCCCT
AACTGTCTTAGAAAGTGTTGAAAAACTCAATCAACTTTATGCACCAGCGATTGACCTGCCATCTGTGCGTACGCCGAGCC
AGCTCAAAGCCTTCTACGAACCTGTCATGGATACTGAAGGGGTGGATATTATGGACAAGAAAGAGGAGGTACAACCTCTG
GAGACATCCACTAGCTTTGAACTTCCAGATTTTGGGCAAAAAACGAAGGTCACTGGAGCTGCAGTTGGTTCAGCCACCCA
TGAACTCATGCAACGCTTGATTCTTTCTAACAAGGTGACCCTCCAAGATTTGACACAGGCCTTGAGTCGGGTATCCGCAG
ATGATCAAGTCAAGGCGCGTGTGCAGTTAGAAAAGCTACTAGGCTTCTTTGACACCGAACTTGGAAAGCTCATTCTAGCT
AACCGTGATAAGTTGCGTCGCGAAGCGCCATTTGCCATGTTGGCAGAAGACCCGGCTAGTAAGGAAGACTTTGTCGTCCG
TGGTATCATCGATGGCTACCTTCTTCTTGAAGACCGTATTGTCCTCTTTGACTATAAGACAGACCGCTTCACTCAACCTG
GTGAGCTTAAGGACCGCTACAAAGGGCAAATGAGCCTCTATGCTAAAGCACTCAGCCAAGCCTATCAAATAGATAAGATT
GATAAATACCTTATTCTCCTAGGTGGAAAAAACTTGGAAGTTGTAGAAGTATAA


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
  rexA Streptococcus pneumoniae R6

51.02

100

0.514


Multiple sequence alignment