Detailed information    

insolico Bioinformatically predicted

Overview


Name   amiA3   Type   Regulator
Locus tag   U0449_RS03510 Genome accession   NZ_CP139862
Coordinates   698895..700877 (-) Length   660 a.a.
NCBI ID   WP_050229191.1    Uniprot ID   -
Organism   Streptococcus pneumoniae strain 05H0020-2     
Function   binding to XIP (predicted from homology)   
Competence regulation

Genomic Context


Location: 693895..705877
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  U0449_RS03510 amiA3 698895..700877 (-) 1983 WP_050229191.1 peptide ABC transporter substrate-binding protein Regulator
  U0449_RS03515 - 701453..702691 (-) 1239 WP_050218860.1 nucleotide sugar dehydrogenase -
  U0449_RS03520 cap8K 702760..703923 (-) 1164 WP_001146576.1 polysaccharide polymerase Cap8K -
  U0449_RS03525 - 703907..704635 (-) 729 WP_000612420.1 glycosyltransferase family 32 protein -

Sequence


Protein


Download         Length: 660 a.a.        Molecular weight: 72990.58 Da        Isoelectric Point: 4.7528

>NTDB_id=911472 U0449_RS03510 WP_050229191.1 698895..700877(-) (amiA3) [Streptococcus pneumoniae strain 05H0020-2]
MKSSKLFALAGVTLLAATTLAACSGSGSSAKGEKTFSYIYETDPDNLNYLTTAKAATANITSNVVDGLLENDRYGNFVPS
MAEDWSVSKDGLTYTYTIRKDAKWYTSEGEEYAAVKAQDFVTGLKYAADKKSDALYLVQESIKGLDAYVKGEIKDFSQVG
IKALDDQTVQYTLNKPESFWNSKTTMGVLAPVNEEFLNSKGDDFAKATDPSSLLYNGPYLLKSIVTKSSVEFAKNPNYWD
KDNVHIDKVKLSFWDGQDTSKPAENFKDGSLTAARLYPTSASFAELEKSIKDNIVYTQQDSITYLVGTNIDRQSYKYTSK
TSDEQKASTKKALLNKDFRQAIAFGFDRTAYASQLNGQTGASKILRNIFVPPTFVQADGKNFGDMVKEKLVTYGDEWKDV
NLADSQDGLYNPEKAKAEFAKAKSALQAEGVTFPIHLDMPVDQTATTKVQRVQSMKQSLEATLGADNVVIDIQQLQKDEV
NNITYFAENAAGEDWDLSDNVGWGPDFADPSTYLDIIKPSVGESTKTYLGFDSGEDNVAAKKVGLYDYEKLVTEAGDETT
DVAKRYDKYAAAQAWLTDSALIIPTTSRTGRPILSKMVPFTIPFALSGNKGTSEPVLYKYLELQDKAVTVDEYQKAQEKW
MKEKEESNKKAQEDLAKHVK

Nucleotide


Download         Length: 1983 bp        

>NTDB_id=911472 U0449_RS03510 WP_050229191.1 698895..700877(-) (amiA3) [Streptococcus pneumoniae strain 05H0020-2]
ATGAAAAGTTCAAAACTATTTGCCCTTGCGGGCGTGACATTATTGGCGGCGACTACTTTAGCTGCATGCTCTGGATCAGG
TTCAAGCGCTAAAGGTGAGAAGACATTCTCATACATTTATGAGACAGACCCTGATAACCTCAACTATTTGACAACTGCTA
AGGCTGCGACAGCAAATATTACCAGTAACGTGGTTGATGGTTTGCTAGAAAATGATCGCTACGGGAACTTTGTGCCGTCT
ATGGCTGAGGATTGGTCTGTATCCAAGGATGGATTGACTTACACTTATACTATCCGTAAGGATGCAAAATGGTATACTTC
TGAAGGTGAAGAATACGCGGCAGTCAAAGCTCAAGACTTTGTAACAGGACTAAAATATGCTGCTGATAAAAAATCAGATG
CTCTTTACCTTGTTCAAGAATCAATCAAAGGGTTGGATGCCTATGTAAAAGGGGAAATCAAAGATTTCTCACAAGTAGGA
ATTAAGGCTCTGGATGATCAGACAGTTCAGTACACTTTGAACAAACCAGAAAGCTTCTGGAATTCTAAGACAACCATGGG
TGTGCTTGCGCCAGTTAATGAAGAGTTTTTGAATTCAAAAGGGGATGATTTTGCCAAAGCTACGGATCCAAGTAGTCTCT
TGTATAACGGTCCTTATTTGTTGAAATCCATTGTGACCAAATCCTCTGTTGAATTTGCGAAAAATCCGAACTACTGGGAT
AAGGACAATGTGCATATTGACAAAGTTAAATTGTCATTCTGGGATGGTCAAGATACCAGCAAACCTGCAGAAAACTTTAA
AGATGGTAGCCTTACAGCAGCTCGTCTCTATCCAACAAGTGCAAGTTTCGCAGAGCTTGAGAAGAGTATTAAGGACAATA
TTGTCTATACTCAACAAGACTCTATTACGTATCTAGTTGGTACAAATATTGACCGTCAGTCCTATAAATACACATCTAAG
ACCAGCGACGAACAAAAGGCATCGACTAAAAAGGCTCTCTTAAACAAGGATTTCCGTCAGGCTATTGCCTTTGGTTTTGA
TCGTACAGCCTATGCCTCTCAGTTGAATGGACAAACTGGAGCAAGCAAAATCTTACGTAATATCTTTGTTCCACCAACAT
TTGTTCAAGCAGACGGTAAAAACTTTGGCGATATGGTCAAAGAGAAATTGGTTACTTATGGGGATGAATGGAAGGATGTT
AATCTTGCAGATTCTCAGGATGGTCTTTACAATCCAGAAAAAGCCAAGGCTGAATTTGCTAAAGCTAAATCAGCCTTACA
AGCAGAAGGTGTGACATTCCCAATTCATTTGGATATGCCAGTTGACCAAACAGCAACTACAAAAGTTCAGCGCGTCCAAT
CTATGAAACAATCCTTGGAAGCAACTTTAGGAGCGGATAATGTAGTCATTGATATTCAACAACTACAAAAAGACGAAGTA
AACAATATTACATATTTTGCTGAAAATGCTGCTGGCGAAGACTGGGATTTATCAGATAATGTCGGTTGGGGTCCAGACTT
TGCCGATCCATCAACCTACCTTGATATCATCAAACCATCTGTAGGAGAAAGTACTAAAACATATTTAGGGTTTGACTCAG
GGGAAGATAATGTAGCTGCTAAAAAAGTAGGTCTATATGACTACGAAAAATTGGTTACTGAGGCTGGTGATGAGACTACA
GATGTTGCTAAACGCTATGATAAATACGCTGCAGCCCAAGCTTGGTTGACAGATAGTGCTTTGATTATTCCAACTACATC
TCGTACAGGGCGTCCAATCTTGTCTAAGATGGTACCATTTACAATACCATTTGCATTGTCAGGAAATAAAGGTACAAGTG
AACCAGTCTTGTATAAATATTTGGAACTTCAAGACAAGGCAGTCACTGTAGATGAATACCAAAAAGCTCAGGAAAAATGG
ATGAAAGAAAAAGAAGAGTCTAATAAAAAGGCTCAAGAAGATCTCGCAAAACATGTGAAATAA


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
  amiA3 Streptococcus thermophilus LMD-9

58.548

100

0.586

  amiA Streptococcus salivarius strain HSISS4

58.245

100

0.583

  amiA3 Streptococcus thermophilus LMG 18311

57.943

100

0.58