Detailed information    

insolico Bioinformatically predicted

Overview


Name   amiA   Type   Regulator
Locus tag   ST4067_RS06635 Genome accession   NZ_CP065496
Coordinates   1270991..1272958 (-) Length   655 a.a.
NCBI ID   WP_116920313.1    Uniprot ID   -
Organism   Streptococcus thermophilus strain 4067     
Function   internalize XIP (predicted from homology)   
Competence regulation

Related MGE


Note: This gene co-localizes with putative mobile genetic elements (MGEs) in the genome predicted by VRprofile2, as detailed below.

Gene-MGE association summary

MGE type MGE coordinates Gene coordinates Relative position Distance (bp)
IS/Tn 1273314..1274213 1270991..1272958 flank 356


Gene organization within MGE regions


Location: 1270991..1274213
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  ST4067_RS06635 (ST4067_06660) amiA 1270991..1272958 (-) 1968 WP_116920313.1 peptide ABC transporter substrate-binding protein Regulator

Sequence


Protein


Download         Length: 655 a.a.        Molecular weight: 71701.84 Da        Isoelectric Point: 5.1059

>NTDB_id=511090 ST4067_RS06635 WP_116920313.1 1270991..1272958(-) (amiA) [Streptococcus thermophilus strain 4067]
MKLKKILGITGVALLSVGMLAACSSKSSTSGTTYSNIYGSDPETLDYITSIMGGTKAVLTNGVDGLMEADKYGNLVPSVA
EDWSVSKDGLTYTYKIRKGIKWYTSEGEEYANVTAKDFVTGLKHAADAKSGALYLVQDSIAGLSDYLSGANKDFSNVGVK
AIDDYTLQYTLKKQEPYWNSKTTYGVLFPVNEDFLKNKGKDFGKSTDPTSILYNGPFLLKSLTAKSSIELTKNENYWDKK
NVHFDSIKFSYSDGSDLESIERSFSDGALSIARVFPTSSNYASVEKKYKDNIFYTEPGASTSVIGVNIDRQSYKFSAKKT
DAEKTSTKKALLNKDFRQSINFAIDRTAYQSQVNGKDGAALALRNLFVPYDFVSAGDKTFGDLVTEKMSSYGDEWSGVNF
ADGQEGLYNAEKAKTEFAKAKEALQGEGVQFPVHLDLPVDQSSKLSVAQAQSLKQTIEKSLGSENVVIDINQMSSDDMNN
VTSNAANAAAEDWDISNGVGWGPDYQDPSTYLDILKTTSSENTKIFNGYDDPNNAAAAQVGLKNYDALLDSAASETTDIN
ARYDRYAQAQAWLEDSSLIIPLTVSNGAAPVISRLTPFTGASIQVGDKGSSYVKYVKSQEKVVTKKEYEQSREKWLKEKK
ASNEKAQKDLEKHVK

Nucleotide


Download         Length: 1968 bp        

>NTDB_id=511090 ST4067_RS06635 WP_116920313.1 1270991..1272958(-) (amiA) [Streptococcus thermophilus strain 4067]
ATGAAACTTAAAAAAATTCTTGGAATTACGGGTGTAGCCCTTCTAAGTGTTGGTATGTTAGCGGCTTGTTCTTCTAAGTC
AAGTACTAGTGGAACGACTTATAGTAATATTTATGGCTCAGATCCAGAAACCTTGGATTATATTACATCAATTATGGGAG
GGACAAAAGCTGTTTTGACTAATGGTGTAGATGGTCTTATGGAAGCGGACAAATATGGTAATCTTGTTCCATCAGTAGCT
GAAGACTGGTCTGTGTCTAAAGATGGTCTGACTTATACCTATAAAATTCGTAAAGGGATCAAATGGTATACTTCTGAAGG
TGAAGAGTACGCTAATGTTACTGCTAAGGACTTTGTAACGGGTCTTAAGCATGCAGCTGATGCCAAATCTGGAGCCCTTT
ATTTGGTACAAGATTCTATTGCTGGATTGTCTGACTACCTTTCTGGTGCCAATAAAGATTTCTCAAATGTTGGCGTTAAA
GCAATAGACGATTACACTCTGCAATACACACTAAAAAAACAGGAACCATACTGGAACTCTAAGACAACCTATGGTGTGCT
CTTCCCAGTTAACGAAGACTTTCTTAAGAACAAAGGGAAAGATTTTGGTAAGTCAACAGACCCAACCTCTATCCTATATA
ACGGTCCTTTCCTTCTTAAATCTTTGACAGCTAAATCATCTATCGAGTTGACTAAGAATGAGAATTATTGGGATAAGAAA
AACGTGCATTTTGACTCTATCAAATTCTCATATTCTGATGGATCGGATCTAGAATCAATAGAACGTAGTTTCTCTGACGG
CGCTCTCAGCATTGCACGTGTCTTCCCTACGAGTTCAAACTATGCATCGGTAGAAAAAAAATATAAAGATAATATTTTTT
ACACAGAACCAGGTGCATCTACATCGGTTATTGGTGTAAACATTGACCGCCAAAGCTATAAATTCTCAGCTAAGAAGACA
GATGCTGAAAAGACATCAACTAAGAAGGCTCTTCTAAACAAAGACTTTCGTCAATCAATCAACTTCGCTATTGATCGTAC
AGCCTATCAATCACAAGTAAACGGTAAAGATGGCGCAGCTCTTGCTCTACGTAACCTTTTTGTTCCTTATGATTTTGTCA
GTGCAGGCGATAAGACCTTTGGTGATCTTGTGACAGAAAAAATGAGCTCTTATGGTGATGAGTGGTCTGGTGTTAACTTT
GCAGATGGTCAAGAGGGTCTCTACAATGCTGAAAAAGCTAAGACTGAGTTTGCCAAAGCCAAAGAGGCTCTTCAAGGAGA
AGGGGTACAATTCCCAGTTCACTTAGACCTTCCAGTTGATCAAAGTTCTAAACTTAGTGTTGCTCAAGCTCAATCTTTGA
AACAAACCATTGAAAAATCATTGGGTAGCGAAAATGTTGTTATAGATATTAACCAAATGTCATCTGATGACATGAATAAT
GTGACTAGTAATGCGGCAAATGCTGCAGCAGAAGACTGGGATATTTCTAACGGTGTGGGTTGGGGTCCAGACTATCAAGA
TCCATCAACTTATCTTGATATCTTAAAAACAACATCAAGTGAAAATACCAAGATTTTCAATGGTTATGATGATCCAAACA
ATGCAGCAGCAGCCCAAGTAGGTCTTAAGAATTATGATGCCTTGCTTGATTCAGCAGCTTCAGAAACAACAGACATCAAC
GCTCGTTACGACCGTTATGCTCAAGCCCAAGCTTGGTTGGAAGATAGCTCTCTTATCATTCCATTGACTGTTAGTAACGG
TGCAGCACCAGTTATCTCACGTTTGACACCATTTACGGGTGCTAGCATACAGGTGGGTGATAAGGGCTCATCCTACGTCA
AATATGTGAAATCACAAGAAAAAGTAGTTACTAAGAAAGAATATGAACAAAGTCGTGAAAAATGGCTTAAAGAAAAGAAA
GCATCTAACGAAAAAGCTCAAAAAGATCTTGAGAAACACGTTAAATAA


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
  amiA Streptococcus salivarius strain HSISS4

88.872

100

0.89

  amiA3 Streptococcus thermophilus LMG 18311

86.454

100

0.867

  amiA3 Streptococcus thermophilus LMD-9

86.454

100

0.867