Ramlibacter tataouinensis (strain ATCC BAA-407 / DSM 14655 / LMG 21543 / TTB310)

Taxonomy: cellular organisms; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Ramlibacter; Ramlibacter tataouinensis

Average proteome isoelectric point is 7.55

Get precalculated fractions of proteins

Acidic
pI < 6.8
6.8-7.4
pI > 7.4
Basic
    
All


Virtual 2D-PAGE plot for 3,880 proteins (isoelectric point calculated using IPC_method)

Get csv file with sequences according given criteria:
        -     Method 

     -  kDa    
                                                                                      

* You can choose from 18 different methods for calculating isoelectric point

Protein with the lowest isoelectric point:
>tr|F5Y0H6|F5Y0H6_RAMTT Uncharacterized protein
MRKSRSLPKVHRAAAQRLALEPRIVFDAAAAAMTADTLEKSTDQGAPAAQAAETEPVADVPAFHPAQGQQDAQDPDAGPSVEPAPAPSGTSREIIFVDAAVQDVQPYLHGRTAEVVVLDASRDGMEQIAEALEGRSDITAIHILSHGSEGQLRLGTAVLDTGSMDRYADELQAIQGALAEGGDLLVYGCD
VGAGQAGQAFVEALSQATGADVSASVDDTGAQALGGNWVLENSLGTVETLSVSASDWNGLLDATAANGSGALLGVSGRNIYSIDITTGKATLITTVPATVGGITVSATINSLAVDQANGLIYYMDSNAVNTNVALFAYDYATAGLTDAQRHIVIDSNLTNNGAGASIAVGATGVGSGAATFANGTLYLGI
ENNGVQAGTGVTSDDTIYRITFSGGGRTVSSVATFLSPVTGTNDWGDLGYHSATNTLVSITTAAVTRYNATTGAVLGTLAVNNTNSQAGESAGGATYRLADTIQQYNPSTGAVTGSAIQITTNGTTALATLSDAAGWVPATGTIGDKVFDDNNTNGVFDAGDTGVAGVTVQLIDDVDNDGVVDAGERVLA
TDTTNANGDYLFTNVLPGNYIVRVTDTGNVLGSAASTTGGATNGSADITRIGGSALGIDFGVNNRAPNSAFGLQLGTVEDTNLVITGSSVSDADGNLATVQLSVTNGGVSVSLGGGATISAGANGSSTLTLSGTSAQINAALGSITYTPTADFNGVAVLTLVATDKAGVSDTNTLNLGVSAVNDTNNDNG
TTAEDTPVTLDVLANDNFENPGRAVTAVNGQALVAGGPAVAVNDGTVALDTSGRLVFTPAANSTGTAAFTYTVTSGGATENGNVFVNVTAVNDAPANSVPPSVSGSEDTPLAIGSVSVGDVDSMMLTTTVSVTNGTLTVATILLGASVSGNGTSGVTLSGTAGQINAALAGLTYTGTTDYNGPATLTVVT
IDGAGGSDTDTVAITVAPVADIQDDSATTAEDTPVTIAVLANDSFESAGRAITAVNGQAITASGAAVAVANGMVSLNAGGQLVFTPAANYNGPATFTYTVTSGGVTETANVNVTVTAVNDAPVNTVPGSQTANEDTALAIAGLSVADVDGAGVNLTTTVSVSNGTVSVANANGASINGNGTGSLILSGTA
AQINAALAGLSYTNAPDYNGSATLTVVTSDGAGSDTDTVAITVAPVADIQDDSATTAEDTAVTIAVLANDSFEDAGRTITAVNGQAITAGGAAVAVVNGTVSLNTSGQLVFTPAANYNGPAAFTYTVTSGGVTETADVNVTVTAVNDVPVNTVPGAQTASEDTAKAISGVSVADVDGAGVNLTTTVSVSH
GTVSVASANGASLSGNGTASLTLSGTSAQINAALAGLSYLNTADYNGPATLTVVTSDGAGSDTDTVAITVAPVADIRDDSATTAEDTAVTIGALGNDSFENAGRTITAVNGQAITAGGAAVNVTNGSVTLNAGGQLVFTPALNYNGPASFSYTVTSGGVTETANVNITVTARNDAPVNTVPGGQTATEDT
PLAIAGISVADVDGAGVNLTTTVSVSNGAVSVANANGASLTGNGTGSLILSGTAAQINAALAGLSYTNTADYHGAATLTVVTNDGAGGSDTDTVAITVAPVADIADDSATTAEDTAVTISVLANDSFESAGRAITAVNGQAITAGGTAVNVTDGAVSLTAGGQLVFTPAANYNGTASFSYTVSSGGVIET
ASVTVTVTAVNDAPANTVPGAQSMNEDAPLAIAGISVADVDGAGVNLTTTVSVSNGTVSVANANGASLTGNGTGSLILSGTAAQINAALAGLSYTNTADYHGAATLTVVTNDGAGGSDTDTVAVTVAPVADIADDSASTAEDTAVTIGVLANDSFENAGRAITAVNGQAITAGGAAVAVTNGTVSLNAGG
QLVFTPALNYTGPATFTYTVTSGGVTETANVNVTVTAVNDAPVNTVPGAQSTNEDTPLAIAGISVADVDGAGVNLTTTVSVSNGTVSVSAGGGAVIADNGTASVTLSGTAAQINAALAGLSYANSVDYNGVATLTVVTSDGAGGSDTDTVAITVAPVADIQDDSASTTEDTAVTIGVLANDSFENTGRTI
TAVNGQAITVGGPAVNVGNGSVSLNAGGQLIFTPALNYNGPASFSYTVSSAGTIETANVNVTVTAVNDAPVNTVPGAQSTNEDTPVAIAGISVADVDGAGVNLTTTVSVSNGAVSVTNAGGASLTGNGTGSLILSGTAAQINAALAGLSYTNTADYNGAATLTVVTSDDAGGGDTDTVAITVAPVTDIAD
DSATTAEDTPVTIAVLANDSFENAGRTITAVNGQAITAGGAAVAVANGTVSLNAGGQLVFTPAANYTGPAAFTYTVTSGGVTETANVDVTVTAVNDAPTGTDSTVTISEDTSYTLTVADFGFADPADAPAADAFAGIWISDLPAASQGVYTLNGAPVRVGDFVSAAAINGGQLVYTPAVNANGNALGRLG
FQVRDDGGTAAGGQENDPTANYLTFSITPADDTLTIGGLADGPAGADAQVRESDLATGSTPGGTGERASGSFVLGPADKLGSLTLNGTTISVAQLSASAGAPITVSGSNGTLTLCGYDGATGRVSYSYTLTTAADHSGNATARDTFTIVATDVDGDVYAPATLGIDIVDDAPAPVADVDDVTNTAGNPSS
VASGNVVTGTGGTDPNTTDGNRDTLGADGAPVAVVTGVAAGTGAVSAGGVGGSVPGAYGALVLQADGSYTYTPDYNNTAVQALVGGRSLSDTFTYEVTDGDGDRATTTLTVNIVGVPAVVGLGDGAVAGSDGSVLESDLNLGGTNAAGNGEVFTGNFQILTIAGTSIDELRVGGSTVSGAQLATLNTTPV
TVVGGGVGAAGTLQLISFDASTGVVGYRYELNTAVASAADVTASFAVSVKDSLGNDTATASPRNLNIAIVDDRPEAVADTASAVEDGINPVTGNVLPNDLLGADGAAAAGAVTAVAAGSAVLAGGVGAPVAGSYGRLTLQADGNYSYELDNTLDAVNRLQAGQTLTETFTYTITDGDGDTSTVTLTITID
GSNDAPVAGADSVTTTEDTSLELDAATLLANDTDAEGGLSILSVQDAVGGSVSLVGGMAVFVPAADFSGTGSFSYTVKDGQGLTSTANVAVTVIAVNDAPVNTVPGAQSTNEDTPLAIAGISVADVDGAGVSLTTTVSVSNGTVSVGAGGGAVITDNGTASVTLSGTAAQINAALAGLSYSNNADYNGAA
TLTVVTSDGAGGSDTDTVAITVAPVADIQDDSASTAEDTAVAISVLANDSFENAGRTITAVNGQAITVGGPAVNVGNGSVSLNADGELLFTPAANYNGPASFNYTVSSGGTAETANVSVTVTAVNDAPANTVPGAQSTSEDTPLAIPGISVADADGAGVNLTTTVSVSNGVVSVSAGGGAVITNNGTASI
TLTGTAGQINAALASLSYTNTADYNGAATLTVVTSDGAGGSDTDTVAITVAPVADIADDSATMAEDTAVTISVLANDSFENAGRAITAVNGQAITAGGAAVAVTNGTVNLNAGGQLVFTPALNYTGPATFTYTVTSGGVTETANVNVTVTAVNDAPVNTVPGAQSTNEDTPLAIAGISVADVDGAGVNLT
TTVSVSNGAVSVANANGASLTGNGTGSLVLSGTAAQINAALAGLSYTNAADYNGAATLTVVTSDGVGGSDTDTVAITVAPVVDIQDDSATTAEDTAVTISVLANDSFESAGRAITAVNGQAITAGGAAVAVANGAVSLNTSGQLVFTPGANYNGPAAFTYTVTSGDVTETANVNLTVTAVNDAPVNTVPG
SQTANEDTALAIAGISVADVDGAGVNLTTTVSVSNGTVSVANAGDASLSGNGTASLILSGTAAQINAALAGLSYTNAPDYNGPATLTLVTNDGTGGGDTDTVAITVAPVADIADDSATTAEDTPVTISVLANDSFEDTGRTITAINGQAVTAGAAAVAVSNGTVSLNAQGQLVFTPAANYSGPAAFTYTV
TSGGVTETANVNVTVTAVNDAPVNTVPGAQSTNEDTPLAIPGISVADMDGAGVNLTTTVSVSNGVVSVASAGGATLSGNGTGSLILSGTAAQINAALAGLSYTNAADYNGVATLTVVTSDGTGGSDTDTVAITVAPVADIADDSATTAEDTAVTISVLANDSFEDAGRTITAVNGQALTAGGPAVNVGNG
SVSLNADGELLFTPAANYNGPATFTYTVTSGGVTETANVNVTVTAVNDAPVNTVPGAQSTSEDTPLAIAGISVADVDGAGVNLTTTVSVSNGTVSVANANGASLTGNGTGSLILSGTAAQINAALAGLSYTNAPDYNGPATLTVVTNDGAGGSDTDTVAITVAPVADIVDDSASTAEDTPVAIDVLANDS
FENAGHTITAVNGQALTAGGAAVSVTNGSVSLSAGGQLVFTPAANYNGLVAFTYTVTSGGTTETATVNVTVTAINDAPVNTVPGAQSTDEDTPLAIAGISVADVDGAGVNLTTTVSVSNGAVSVANANGASLTGNGTTSLILSGTAAQINAALAGLSYTNAPDYNGPATLTVVTSDGAGGSDTDTVAIPV
APVADIADDSATTAEDTAVTIAVLANDSFENAGRTITAVNGQAITAGGPAVGVTNGSVSLGADGRLVFTPATHYNGPAAFSYTVTSGGVTETATVSVTVTAVNDAPVNTVPGAQSTNEDTPLAIGGISVSDVDGAGVNLTTTVSVSNGTVSVSAGGGALITHNGTASVTLTGTAGQINAALAGLSYINAP
DYNGAATLTVVTSDDAGGSDTDTVAITVAPVADIADDSATTAEDTPVTIDVLADDSFEDAGRTITAVNGQALTAGGPAVAVANGAVSLNAGGQLVFTPAANYTGSAAFTYTVTAGGVNETANVNLIVTSVNDIPVAGNDSAVATTPEDQPVTIPAATLLANDSDADADMLVIASVQDAVGGTVELVGGNV
VFTPAPNYNGPASFTYTVIDGRGGSVTAAATLTVTAVNDAPQVGNDLASTPLNTPLANIQVLANDSDADRDTLTVTSAVLQDPAQGTVVVNLNGSLDFTPALNVSGPVLINYVVSDGKGGSTAGTLTVNVGANTPPSGQDRTLTLAEDATLTLTAADFGFSDADAGQEVLANVRIDSTPAAGRLTLGGVN
VVQGQLVSADDINAGRLVFVPAADGNGTPYTTFSFSVQDAAGAFDPASNQLELNVTPVNDAPVAVAGDPVGPINEDQAVTIAASVLLANDRDADGDTLSIASVQDAVGGTVNLVNGNVVFTPAADFNGPASFSYTVIDGKGGSATATVNLQVNAVNDAPRVANDLASTPVNTPLAGIDVLANDSDADGDA
LIVTAALVDPVQGTVSINADGSLNFTPAANFSGMATIRYTVSDGTASTDGTLTVSVGANNAPTGANAALSLPEDGTRALAVADFGFSDPDRGQSLANVRIDTVPAAGQLLLNGTAVMAGKVVSAADIADGRLVFVPAAEGNGAPYASFEFSVQDTAGAYASAPARISFVVAAAEDAPVATDDILAATPED
QAATVSADSLLVNDSDVDGDTLTLASVQGAVGGTVALVDGNVVFTPAANYHGDASFTYTVIDGQGGSATATVRLQVSPVNDLPEVEDDVASTPQNQPLTIDVLANDIDIDGDMLRVTTATVVDPTRASVSINADGSLRFTPASNVSGPVLIDYTVSDGQGGSATGRLTVYVGDNIAPSGTSNTLSLPEDS
ARTLTVADFGFTDPDPTQALAAVRIDVAPEAGQLLLLDGLPVVAGQVVNAADIAAGRLVFVPAPDGNGAPYASFQFTVQDSGGAFATGRSTMSLNVTAVQDAPLAVDDTVGSTREDQAVTIAASVLLANDRDADGDTLSIASVQDAVGGTVNLVNGNVVFTPAADFNGPASFSYTVIDGKGGSATATVNL
QVNAVNDAPRVANDLASTPVNTPLLNIDVLANDSDVDEDTLTVTVTPLDPVTQGTVSVNADGSLNFTPANNVSGPVVIRYTVSDGQGGSTNGTLTVSVGANTAPTGAGATLSLPEDGTRALAVADFGFSDPDSGQSLANVRIDTIPAAGQLLLDGIAITGGQVVSAADIADGRLVFVPAAEGNGAPYAGF
DFSVQDTAGAYSSAPARISFAVAAVQDGPVAADDTLPAIQEDQAATIAGAALLANDDDADGDTLTLASVQGAVGGTVALVDGNVVFTPAANYHGDASFTYTLIDGQGGSATATVRLQVSPVNDAPVAGDNVASTPINTPIDVDVLADDTDIDGDTLRVTEATLQDPAQGSVSINADGTLRFTPALDVSGP
VVIQYVADDGQGGSTGGTLTVNVGANAAPTGGANTLSLPEDGVLTLAVRDFPFIDPDLGQTLGAVRFDVVPRQGELLLLDGLPVVAGQVVSAADIAAGRLVFVPAADGNGMPYDSFEFTVQDSAGAFAATRSTMTFEVTRVQDAPVAADDTVGSTDEDTPATIAASLLVANDRDADGDVLTLTSVQDAVG
GTVVLSGGNVVFTPAAHYQGPASFTYTVSDGQGGSATATVRLQVSSVNDVPQTGADLASTPVNTPLNNIDVLANDGDADGDTLSVTAATVDPAQGTVTRNADGSLNFTPALNFSGTAIIGYTVNDGTTSATGTLTVNVGANTAPSGTGTTLNLPEDGTRALAIADFGFSDPDLGQGLANVRIDTAPAAGQ
LLLDGVAVTAGQVVSAADIAAGRLVFVPGADGNGAPYAGFDFSVQDTAGAFAGAPARISFNVSAVNDTPVAGADLLAPTQEDQAVTIPAATLLANDSDADGQALTLTSVQNAVGGTVALVGGNVVFTPTADYHGPASFTYTVSDGQGGSTTATVSLAVTAVDDAPVQAVPGAQGVTEDAPRAIAGLRVAD
ADGGNLTTTVSVDSGSVNVPLGGGAAVSGNGTALLTLSGSAAQINAALAGLVYSPVVDRAGAATLTLSTTDSTGLVDTDAVALNIAAVADIRADSVGAVEDTPVVIDVLANDSFEDGGRAITAVNGQAITAGGAPVAVANGSVSLTAGGQLVFAPAANYSGSTSFSYTVGTGSASETASVTVSVASANFV
PQVQGEVLGAIPEDGSLTVSSSDLLANDSDGDGDALSIVSVQDAMGGSVRLVGGAVVFTPAPDYNGPAGFRYTVTDGRGGSATATVSFQVSAVNDAPRVAGEVATTGVNQPLGGIAVLANDSDADGDALSVTSAVLDDPALGSVTVSPDGTLSFTPALNASGVVTIRYVVSDGQGGSSTGTLTLVVADDL
PEPGDDSPPAVLHQRPGFDRVAVPALHVLFSVGESRSEMELSAGLRAVQADSATQAELLQGLGTDLGFAQGLQFGSRGLAARELAEASSSLFVQRAVRHQSLTPEHSVFVQEVVRASRLESLARGLRADSLNSAAVGATTLFDPFALGTPAAKPAAPARGASEPRSAAAQDREAVRVAQPERGVDTAAVA
AQAVAPERQPLPVRRAAEGFASQLSRNAQDFRARLPRAAAADAPPVPAQRQ
Molecular weight: 728.19 kDa
Isoelectric point according different methods:






Protein with the highest isoelectric point:
>tr|F5Y360|F5Y360_RAMTT 50S ribosomal protein L34
MKRTFQPSKVRRARTHGFLVRMKTRGGRAVINARRAKGRKRLAV
Molecular weight: 5.12 kDa
Isoelectric point according different methods:






General Statistics

Number of major isoforms

Number of additional isoforms

Number of all proteins

Number of amino acids

Min. Seq. Length

Max. Seq. Length

Avg. Seq. Length

Avg. Mol. Weight

3,702

178

3,880

1,192,923

19

7,461

322.2

34.9 kDa

Amino acid frequency

Ala

Cys

Asp

Glu

Phe

Gly

His

Ile

Lys

Leu

Met

Asn

Gln

Pro

Arg

Ser

Thr

Val

Trp

Tyr

13.56

0.91

5.01

5.39

3.36

8.84

2.25

3.76

2.77

10.91

2.31

2.33

4.15

5.61

7.82

4.87

4.8

7.73

1.52

2.1

Note: For statistics only major isoforms were used (in this case 3,702 proteins)
For dipeptide frequency statistics click here
See this proteome in: uniprot_link
Proteome-pI is available under Creative Commons Attribution-NoDerivs license, for more details see here

Reference: Kozlowski LP. Proteome-pI: proteome isoelectric point database. Nucleic Acids Res. 2016. doi: 10.1093/nar/gkw978       Contact: Lukasz P. Kozlowski