Detailed information    

insolico Bioinformatically predicted

Overview


Name   rexA   Type   Machinery gene
Locus tag   SALIVB_RS08740 Genome accession   NC_015760
Coordinates   1905605..1909258 (-) Length   1217 a.a.
NCBI ID   WP_013991144.1    Uniprot ID   -
Organism   Streptococcus salivarius CCHSS3     
Function   homologous recombination (predicted from homology)   
Homologous recombination

Genomic Context


Location: 1900605..1914258
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  SALIVB_RS08725 (SALIVB_1821) - 1902093..1902824 (-) 732 WP_013991142.1 ABC transporter ATP-binding protein -
  SALIVB_RS08730 (SALIVB_1822) - 1903102..1903833 (+) 732 WP_013991143.1 DUF554 domain-containing protein -
  SALIVB_RS08735 (SALIVB_1823) - 1904295..1905544 (+) 1250 Protein_1697 ISL3 family transposase -
  SALIVB_RS08740 (SALIVB_1824) rexA 1905605..1909258 (-) 3654 WP_013991144.1 helicase-exonuclease AddAB subunit AddA Machinery gene
  SALIVB_RS08745 (SALIVB_1825) rexB 1909248..1912568 (-) 3321 WP_013991145.1 ATP-dependent nuclease subunit B Machinery gene
  SALIVB_RS08750 (SALIVB_1826) - 1912945..1914194 (+) 1250 Protein_1700 ISL3 family transposase -

Sequence


Protein


Download         Length: 1217 a.a.        Molecular weight: 138006.11 Da        Isoelectric Point: 4.6987

>NTDB_id=34238 SALIVB_RS08740 WP_013991144.1 1905605..1909258(-) (rexA) [Streptococcus salivarius CCHSS3]
MLTKAFLSPTEIKERIAQEAASDKERKLTPEQIEAIYSNGSNILVSASAGSGKTFVMVERILDMIGRGVGIDQLFISTFT
VKAAGELKERLEKRLTEQLGQVETDEERAFLSDQIAKIGTADIGTMDAFTQKLVNQYGYLLGVSPIFRIMTDPAEQTLMK
NEVYADLFNDYMQGKEAQLFQKLVRNFAGNGKTSKAFRDLVYDVYNFSQATAGPEKWLRQNLLKGQAEADPVKAKAELLE
GLKDGLLADFLDFLRDHLGLAQREFAKAKYLNNVSDAISLLEGALANDQTDMEDLLKQLLTLSGGTGLTNMTRPKDEELK
AYKEAYNKTKNEFVAQLREVDTQLTVLEVLTKHNDNILPLLELLQAFVLDFSDQYLQAKIQENAFEFSDIAHFAIRILED
NPEVAASYCDRYHEVMVDEYQDNSHTQERMLELLSNGHNRFMVGDIKQSIYRFRQADPQIFNGKFQLFLENPDAGKLILL
KENFRSQSEVLDATNGVFSHLMDQEIGDILYDKTHMLVAGSQKQKEPHLENETEVLIFNSDEGSMTPDEEGPDQPISSGE
ISLVIKEIIKLHEQGVHFEDITLLAPTRNTYLDLMASFEEHGIPLVPDEYKSSYLESLEVMIMLDTLRAINNPLNDYALV
ALLRSPMFNFNEDDLARIAVQADKGQFYDKLFAAHTKSGLHPEVVTQGLEAKLTLFIETLSDWRDYSKWHSLYDLIWKIY
DDRFYYDYVGSLPRAEQRQANLYALALRANAYEKTGFKGLSRFIGMIDKIISSGNDLEEVTDLVPKNAVSLMTIHKSKGL
EFKYVFVLQMNRKFIGHSKDGLSGKYIINREKGLGIKYLADLKDQVNTNLPKLNVVLETLTFQENRREERRASISEEMRL
LYVAMTRAEKKLYLVGKGSKEKLTQQFGTDVENNRLPVALRDQISTYQDWVMALDTAFMRKDLKFTVRFVEAEELTPEAI
GQVEVQAAVDADDLSNNRQTEDIKRALTVLESVEKLNQLYAPAIDLPSVRTPSQLKAFYEPVMDTEGVDIMDKKEEVQPL
ETSTSFELPDFGQKTKVTGAAVGSATHELMQRLSLSDKVTLQDLTQALSLVSADDQVKARVELEKLLGFFDTELGKLILA
NRDKLRREAPFAMLAEDPASKEDFVVRGIIDGYLLLEDRIVLFDYKTDRFTQPGELKDRYKGQMSLYAKALSQAYQIDKI
DKYLILLGGKNLEVVEV

Nucleotide


Download         Length: 3654 bp        

>NTDB_id=34238 SALIVB_RS08740 WP_013991144.1 1905605..1909258(-) (rexA) [Streptococcus salivarius CCHSS3]
ATGTTGACTAAAGCTTTTTTAAGTCCAACAGAGATTAAGGAACGCATTGCCCAAGAAGCAGCTTCTGACAAGGAACGCAA
GTTAACACCTGAGCAGATTGAGGCCATTTACAGTAATGGTAGTAATATTCTTGTGTCAGCTTCGGCTGGATCAGGAAAAA
CCTTTGTTATGGTTGAACGTATCCTTGATATGATTGGACGTGGCGTTGGTATTGATCAACTCTTTATCTCAACCTTTACG
GTAAAGGCTGCAGGTGAGTTAAAAGAGCGTCTGGAAAAACGTCTGACAGAGCAGTTGGGACAGGTTGAGACGGATGAAGA
GCGTGCCTTTCTTTCAGATCAGATTGCCAAGATTGGGACTGCTGATATTGGAACTATGGATGCCTTCACCCAGAAATTGG
TCAATCAGTATGGCTATCTCTTGGGGGTGTCACCTATTTTCCGCATTATGACAGACCCTGCCGAGCAGACACTTATGAAA
AATGAGGTTTATGCTGATCTCTTTAACGATTATATGCAAGGGAAGGAGGCCCAACTTTTCCAAAAATTGGTCCGCAACTT
CGCAGGAAATGGCAAGACTAGTAAGGCCTTTCGTGATTTAGTTTACGATGTCTATAACTTTTCTCAGGCTACTGCAGGTC
CTGAAAAATGGCTACGTCAAAATCTTTTAAAAGGGCAGGCAGAGGCAGATCCAGTCAAGGCTAAAGCTGAGCTTTTAGAG
GGTCTCAAAGATGGCTTGTTGGCTGATTTCTTAGACTTCTTAAGAGACCATCTAGGTCTAGCTCAGCGTGAATTTGCCAA
GGCCAAATATCTAAATAATGTGTCAGATGCCATTAGCCTTCTTGAAGGAGCCTTGGCCAATGACCAAACGGATATGGAGG
ACTTGCTCAAACAACTCTTGACTTTGTCAGGAGGGACTGGTTTGACCAATATGACTCGTCCCAAAGACGAGGAACTCAAG
GCCTACAAGGAGGCTTACAACAAGACCAAAAATGAGTTTGTGGCCCAGTTGCGAGAGGTTGATACCCAGCTAACGGTCCT
CGAGGTTTTGACCAAGCATAATGATAACATCTTACCTCTGTTAGAGCTGCTTCAGGCCTTTGTACTTGATTTTTCGGATC
AGTATTTACAGGCCAAGATTCAGGAAAATGCTTTTGAATTCTCAGATATTGCCCATTTTGCTATCCGTATTTTGGAGGAT
AATCCAGAGGTGGCAGCTAGCTACTGTGACCGTTACCATGAAGTAATGGTAGACGAGTATCAGGACAATAGCCATACCCA
AGAACGCATGTTGGAACTCCTATCTAACGGCCACAATCGATTCATGGTGGGAGATATCAAACAATCCATCTATCGTTTCC
GTCAGGCTGATCCTCAGATTTTTAATGGCAAGTTTCAGCTCTTCCTTGAAAATCCAGATGCAGGTAAGCTGATTCTCCTT
AAAGAGAACTTCCGTAGTCAATCTGAGGTTCTTGATGCGACCAATGGTGTTTTCAGTCACCTCATGGACCAGGAAATCGG
GGACATCCTCTATGACAAGACTCACATGCTGGTAGCGGGTAGCCAGAAGCAAAAAGAACCCCATCTTGAAAATGAGACAG
AGGTTCTGATTTTCAATAGTGATGAAGGAAGTATGACTCCTGACGAAGAAGGTCCTGATCAACCTATTAGTAGCGGAGAG
ATTTCCTTGGTTATCAAAGAAATCATCAAACTTCACGAGCAGGGTGTACATTTTGAGGACATTACCCTCCTAGCACCAAC
CCGTAATACCTATCTGGACTTGATGGCAAGCTTTGAGGAGCACGGAATTCCCTTGGTTCCTGACGAGTACAAGTCAAGCT
ACCTAGAGTCACTAGAAGTTATGATTATGTTGGACACCCTTCGTGCCATCAATAATCCTCTCAATGACTACGCCTTGGTT
GCCCTCCTTCGTTCACCGATGTTTAACTTCAACGAGGACGATTTGGCTCGGATTGCTGTTCAGGCTGACAAAGGACAATT
CTATGATAAGCTTTTTGCAGCTCATACTAAATCAGGACTTCATCCAGAAGTCGTGACGCAAGGACTGGAGGCCAAGTTGA
CTCTCTTCATTGAGACTCTGTCAGATTGGCGTGATTACAGTAAGTGGCACTCGCTCTATGACCTCATCTGGAAGATTTAC
GACGATCGTTTCTATTATGATTATGTTGGCAGTCTTCCACGAGCTGAGCAACGCCAGGCCAATCTCTACGCCCTTGCCTT
GCGTGCCAATGCCTATGAAAAGACTGGCTTTAAGGGACTTTCTCGTTTTATTGGTATGATTGATAAAATCATTTCTAGCG
GTAACGACCTAGAGGAAGTGACAGACTTGGTTCCCAAAAATGCCGTTAGCCTTATGACCATTCACAAGTCCAAGGGACTA
GAGTTCAAGTATGTCTTTGTCTTGCAGATGAATCGCAAGTTCATTGGTCACAGCAAGGACGGACTGAGTGGTAAGTACAT
CATTAACCGTGAAAAAGGACTAGGCATTAAGTATCTAGCTGACCTCAAAGACCAGGTAAACACCAATTTGCCTAAGTTAA
ATGTTGTTCTCGAGACCTTAACCTTCCAGGAAAATCGTAGGGAAGAGCGTCGAGCAAGTATCTCAGAAGAGATGCGTCTG
CTCTATGTTGCAATGACCCGTGCAGAGAAAAAACTCTACCTAGTTGGTAAGGGCAGTAAGGAAAAATTGACCCAGCAATT
TGGCACAGATGTTGAAAATAATCGCCTACCAGTAGCTCTACGTGACCAAATTTCTACTTATCAGGATTGGGTTATGGCTT
TGGATACTGCCTTTATGAGAAAGGATCTCAAGTTTACTGTTCGCTTTGTTGAGGCTGAGGAGTTGACTCCAGAGGCTATT
GGTCAGGTTGAAGTTCAAGCGGCAGTAGATGCTGATGATCTATCTAACAATCGCCAGACGGAAGACATTAAGCGTGCCCT
AACGGTCTTAGAAAGTGTTGAAAAACTCAACCAACTTTATGCACCAGCGATTGACCTGCCATCTGTGCGTACGCCCAGCC
AGCTCAAAGCCTTCTACGAACCTGTCATGGATACGGAAGGGGTGGATATTATGGACAAGAAAGAGGAGGTGCAACCTCTT
GAGACATCCACTAGCTTTGAGCTTCCAGATTTTGGGCAAAAAACGAAGGTCACTGGAGCTGCAGTTGGTTCAGCCACCCA
TGAACTCATGCAACGCTTGAGTCTTTCTGACAAGGTGACCCTTCAAGATCTGACTCAGGCGCTAAGTCTAGTATCGGCAG
ATGATCAAGTCAAGGCGCGTGTGGAGTTAGAAAAACTTTTAGGCTTCTTTGACACCGAACTTGGGAAGCTCATTCTAGCT
AACCGTGATAAGTTGCGTCGTGAAGCGCCATTTGCAATGTTGGCAGAAGATCCGGCTAGTAAAGAAGACTTTGTCGTCCG
TGGTATTATCGATGGCTACCTTCTTCTTGAAGACCGTATTGTCCTCTTTGACTATAAGACAGACCGCTTCACTCAACCTG
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

50.857

100

0.512


Multiple sequence alignment