Detailed information    

insolico Bioinformatically predicted

Overview


Name   mutS/mutS2   Type   Machinery gene
Locus tag   BAMTA208_RS13500 Genome accession   NC_017188
Coordinates   2675702..2678059 (-) Length   785 a.a.
NCBI ID   WP_014470802.1    Uniprot ID   -
Organism   Bacillus amyloliquefaciens TA208     
Function   homologous recombination (predicted from homology)   
Homologous recombination

Genomic Context


Location: 2670702..2683059
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  BAMTA208_RS13475 (BAMTA208_14015) - 2671198..2671977 (-) 780 WP_014470797.1 enoyl-CoA hydratase -
  BAMTA208_RS13480 (BAMTA208_14020) - 2671991..2672575 (-) 585 WP_014470798.1 TetR/AcrR family transcriptional regulator -
  BAMTA208_RS13485 (BAMTA208_14025) - 2672664..2674352 (-) 1689 WP_014470799.1 AMP-binding protein -
  BAMTA208_RS21270 (BAMTA208_14030) - 2674459..2674605 (+) 147 WP_014470800.1 hypothetical protein -
  BAMTA208_RS13490 (BAMTA208_14035) - 2674541..2675140 (+) 600 WP_237703194.1 DUF2711 family protein -
  BAMTA208_RS13495 (BAMTA208_14040) - 2675281..2675685 (-) 405 WP_003152541.1 DUF350 domain-containing protein -
  BAMTA208_RS13500 (BAMTA208_14045) mutS/mutS2 2675702..2678059 (-) 2358 WP_014470802.1 endonuclease MutS2 Machinery gene
  BAMTA208_RS13505 (BAMTA208_14050) polX 2678080..2679792 (-) 1713 WP_014470803.1 DNA polymerase/3'-5' exonuclease PolX -
  BAMTA208_RS13510 (BAMTA208_14055) - 2679898..2680431 (-) 534 WP_013353113.1 CvpA family protein -
  BAMTA208_RS13515 (BAMTA208_14060) zapA 2680439..2680696 (-) 258 WP_003152533.1 cell division protein ZapA -
  BAMTA208_RS13520 (BAMTA208_14065) rnhC 2680830..2681771 (+) 942 WP_013353114.1 ribonuclease HIII -

Sequence


Protein


Download         Length: 785 a.a.        Molecular weight: 87438.83 Da        Isoelectric Point: 6.3218

>NTDB_id=35573 BAMTA208_RS13500 WP_014470802.1 2675702..2678059(-) (mutS/mutS2) [Bacillus amyloliquefaciens TA208]
MQQKVLSLLEFHKVKEQITAHAASSLGREKLLQLKPLTDLADIQKQLDEVEEASAIMRLRGHAPFGGLTDIRSALRRAEI
GSVLTPAEFTELSGLLYAVKQMKHFISQMTEDGVSIPLIQAHAEELITLGDLEREINSCIDDHGEVLDHASPALRGIRTQ
LRTLESRVRDRLESMLRSSSASKMLSDTIVTIRNDRFVIPVKQEYRSSYGGIVHDTSSSGATLFIEPQAIVDMNNSLQQA
KVKEKQEIERILRMLTEHTAEHTQEIVQNVEVLQTLDFIFAKARYAKAMKATKPFMNGDGFIRLKKARHPLLPQDQVVAN
DIELGGDYTTIVITGPNTGGKTVTLKTLGLLTIMAQAGLHIPADEGSEAAVFDHVFADIGDEQSIEQSLSTFSSHMVNIV
SILKDVSENSLVLFDELGAGTDPQEGAALAMSILDEVHRTNARVLATTHYPELKAYGYNRQGVMNASVEFDIETLSPTYK
LLIGVPGRSNAFEISRRLGLPEHIIGQAKSEMTAEHNEVDLMIASLEQSKKRADEELSETESIRKEAEKLHKELQQQIIE
LNAQKDKLMEEAEQKAAEKLEDAAKEAEQIIRELRSIKQEHRSFKEHELIDAKKRLGDAMPAFEKSKQPERKTEKKRELK
PGDEVKVLTFGQKGALLEKTGEKEWNVQIGILKMKVKEKDLEFLKSAPEPKKEKAITAVKGKDYHVSLELDLRGERYENA
LSRVEKYLDDAVLAGYPRVSIIHGKGTGALRKGVQDLLKNHRSVKSSRFGEAGEGGSGVTIVELK

Nucleotide


Download         Length: 2358 bp        

>NTDB_id=35573 BAMTA208_RS13500 WP_014470802.1 2675702..2678059(-) (mutS/mutS2) [Bacillus amyloliquefaciens TA208]
GTGCAGCAAAAAGTGTTATCATTACTTGAATTTCATAAAGTAAAAGAACAGATTACCGCACATGCCGCCTCATCGCTCGG
CCGGGAAAAGCTTCTGCAGCTGAAGCCTTTGACTGATCTCGCCGACATCCAAAAACAGCTGGATGAAGTCGAAGAAGCAT
CCGCGATCATGCGCTTAAGAGGCCATGCTCCGTTCGGCGGTCTGACCGATATAAGATCGGCTTTGCGTCGGGCGGAAATC
GGCAGCGTGCTGACCCCGGCGGAATTCACCGAATTGTCCGGGCTGCTGTATGCCGTTAAGCAAATGAAGCACTTTATCAG
TCAAATGACAGAAGACGGCGTCAGCATTCCGCTGATCCAGGCCCATGCAGAAGAGCTGATTACATTGGGCGATTTGGAAA
GGGAGATTAATTCCTGCATTGATGATCACGGCGAAGTGCTTGATCATGCATCTCCCGCTTTAAGAGGAATCCGCACGCAG
CTCAGAACGCTTGAATCAAGAGTGAGAGACCGGCTTGAATCGATGCTGCGTTCATCTTCCGCTTCAAAAATGCTGTCTGA
CACGATCGTTACGATTCGGAATGACCGCTTTGTCATTCCGGTCAAACAGGAATACAGATCAAGCTACGGCGGGATCGTGC
ATGATACTTCTTCATCAGGTGCGACGCTGTTTATTGAACCGCAGGCGATCGTCGATATGAACAACTCGCTTCAGCAGGCG
AAGGTGAAAGAAAAACAGGAAATCGAACGGATTCTCCGGATGCTGACGGAGCATACGGCTGAACACACACAAGAGATTGT
TCAAAATGTGGAAGTGCTGCAGACGCTGGATTTCATTTTCGCAAAAGCGAGATACGCAAAAGCGATGAAGGCGACAAAAC
CGTTTATGAACGGAGACGGCTTTATCCGTCTGAAAAAAGCGCGCCATCCGCTGCTGCCTCAAGATCAAGTCGTGGCCAAC
GACATTGAACTGGGCGGAGATTATACGACGATCGTTATCACGGGTCCGAATACGGGCGGTAAAACCGTTACGTTAAAAAC
GCTCGGGCTGCTGACGATAATGGCGCAGGCAGGACTGCACATACCGGCTGATGAAGGATCGGAAGCCGCCGTATTTGATC
ATGTTTTTGCCGATATCGGTGATGAACAGTCGATCGAACAAAGCCTGAGTACGTTCTCATCTCACATGGTCAATATCGTC
AGTATTTTAAAAGACGTGTCCGAAAACAGTCTTGTGCTGTTTGATGAACTCGGTGCCGGAACCGACCCGCAGGAAGGGGC
GGCGCTTGCCATGAGCATTCTTGACGAAGTCCACCGGACAAACGCCAGAGTGCTTGCGACAACCCATTATCCGGAGCTGA
AAGCATACGGATATAACAGACAAGGCGTCATGAATGCAAGCGTTGAATTTGATATTGAAACGCTTTCGCCGACCTACAAG
CTCCTGATCGGAGTGCCGGGCCGAAGCAACGCTTTTGAAATCTCAAGACGCCTCGGCCTGCCGGAGCATATCATCGGCCA
GGCGAAGTCAGAAATGACCGCCGAACACAATGAAGTCGATCTGATGATCGCGTCACTTGAACAAAGTAAAAAAAGAGCGG
ATGAAGAGCTTTCTGAAACCGAATCAATCAGAAAAGAAGCAGAAAAACTGCATAAAGAGCTGCAGCAGCAAATCATTGAG
CTGAACGCCCAGAAAGACAAACTGATGGAAGAAGCCGAACAAAAAGCAGCGGAAAAACTGGAAGACGCCGCAAAAGAAGC
AGAACAGATCATTCGCGAGCTCCGGTCTATCAAGCAAGAACACAGATCCTTTAAGGAACACGAGCTGATTGATGCCAAAA
AACGTCTCGGAGACGCGATGCCGGCTTTTGAAAAATCAAAGCAGCCGGAAAGAAAAACAGAGAAAAAACGCGAGCTGAAG
CCGGGTGACGAAGTAAAGGTGCTCACATTCGGACAAAAAGGGGCGCTGCTTGAAAAAACCGGCGAGAAAGAATGGAATGT
CCAAATCGGCATCCTTAAAATGAAGGTGAAGGAAAAAGACCTTGAGTTTCTCAAGTCCGCTCCTGAACCGAAAAAAGAAA
AAGCCATCACCGCCGTAAAAGGGAAGGATTATCACGTGTCCCTTGAACTTGACCTGCGGGGAGAGCGTTACGAAAATGCC
CTCAGCCGCGTCGAAAAATATTTAGATGACGCGGTGCTTGCCGGCTATCCGAGAGTGTCCATCATTCACGGAAAAGGCAC
AGGCGCCCTCCGAAAAGGGGTGCAGGATCTTCTGAAAAACCACCGCAGCGTGAAAAGCTCGCGGTTCGGGGAAGCGGGAG
AAGGAGGATCAGGCGTAACGATTGTCGAACTAAAATAA


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
  mutS/mutS2 Bacillus subtilis subsp. subtilis str. 168

87.771

100

0.878


Multiple sequence alignment