Alteromonas sp. (strain SN2)
Average proteome isoelectric point is 6.14
Get precalculated fractions of proteins
Acidic |
|
pI < 6.8 |
|
6.8-7.4 |
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pI > 7.4 |
|
Basic |
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All |
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Virtual 2D-PAGE plot for 4,342 proteins (isoelectric point calculated using IPC_method)
Get csv file with sequences according given criteria:
* You can choose from 18 different methods for calculating isoelectric point
Protein with the lowest isoelectric point:>tr|F5Z4H5|F5Z4H5_ALTSS Uncharacterized protein
MANVIVVEVNGEVLVERSKTNEQFAASENTVLSEGDSLIIPDGSTVRVSVDGIIKELPAGQTVTFPLQLDFSDFDSDDEFAVFDESVEDLNALLDQTGDSQDLDQDFLDVLAGDDDILESLEATAAGLDGGGGAGGSNFVRVDRINETVDPVAFEFEQGANGNEELTSEQFGDGGDEATDITITLNATPL
DNDSTPTISGTTDATPGSTVTLTVTDSAGNVQTLTTTVQADGTFSVDVPVELAEGEYSVEATVTDAAGNTATDANTGEIDTTAPVISLDAQGTDNDTTPTLSGTTDAAPGSTVTLTVTDSAGNVQTLTTTVQADGTFSVDVPVELAEGEYSVEASVTDAAGNTATDANTGEIDTTAPAISLDAQGTDNDT
TPTLSGTTDAAPGSTVTLTVTDSAGNVQTLTTTVQADGTFSVDVPVELAEGEYSVEASVTDAAGNTATDANTGEIDTTAPVISLDAQGTDNDTTPTLSGTTDAAPGSTVTLTVTDSAGNVQTLTTTVQADGTFSVDVPVELAEGEYSVEATVTDAAGNTATDANTGEIDTTAPDITLDAQGTGTGTGNDT
TPTLSGTTDATPGSTVTLTITDSAGNTQTVTAIVQPDGTYSADVPAELAEGEFTVNASVTDEAGNTASVEAQGAIDVTAPTISLNDPGINGDATPTLSGLTDAVPGSTITLSVTDSAGVTQTFSTTVLADGTFTVEVPNAVAEGTYSVTVEVTDGAGNTAQATASGDYDSTSPSTTVNQPAPTNDTTPNV
SGETDAPPGSEVVIVVTDSEGNEQTIVTTVGADGTFNEDVPAELSEGEYTVDVTVTTPAGNSSTTTVTGEIDTTAPVISLEPIGSTNDDTPVINGDTDAEPGAVVTLDIVHSDGTTQTITAIVQEDGSFSAEVPQALANGDFTVTATVSDVAANTCSTSIDAVINTQGPNIVIETGSPTNGSEGIGGSSD
APNSEVVVVITDSDGNSQTITGTTDENGNFNVAFPPGAEEDEYDIEVTVADESGNSSTATATTVLDTTPPVVNIDPQTDANDTTPTISGNTDLPAGSEVVITVTDSQGNAQTVTAVVDENESFSADVDEALAEGNYEVSVEATDAAGNTTSAVDNSGNIDTTAPPLSLDPQTDGSDTTPTISGTTDLPPG
STVTIVVTDSADNTQTIDAIVNDGGNFSVDVQTPLTEGEYTVEASATDDAGNTTIVTEDGGNIDTQAPTIALEPLGTSNDTTPSISGSTNLEAGSTVTLTVTDSAGNSQTFPATVDTNGEFSADVPAELADGDYTVEATATDAAGNSASTAQTGSVDTNSPNLTLDPLGDDNDTTPTISGTTDLPTGSTV
TMSVTDALGNTQTFTATVDGSGNFSVDVPNPLAEGEYSVTATATDANGNSATATETGGNIDITSPLVNLDAQGSTNDATPTISGNTDQAPGNNVSITVTDSAGNTQTFVAVVGNDGTFSVDVPAELADGNFTITATVNDDAGNQDSASTQGNIDTAAPTLSLDPQDIGNDTTPLISGTTDLPQGSTVTLA
VTDSAGNTQTINTLVDANGNFSVDVPQELADGDFTVTATAEDEAGNEASDNATGNINTNSPTLVLDGQGETNDSSPTISGSSSLPEGSTITLTVTDSAGNSQTITATVDTGGTFNADVNVPLADGAYTVTASATDSDGNTTTVTDNGGTIDTTAPALTLENPGSTGDTTPTLSGTTDLPGGSTVTLVVTD
SAGNTQTVNALVDANGSFSVDVPNAVADGDFTVTASATDSAGNTANANTTGNVDSQAPLLALDTQVSTSDVTPTISGTTDVAPGTLVTITVVDATGDSQSFQAAVQADGTFSADVPAALAEGDFTVTATVSDAQGNTATANEANGNIDTQVPVVNVNPLNSGNDTTPVISGNTDLPEGAVVVINITDSNG
DTQTINALVDADGNFATEALSPLPEGDYSVEVTATDDAGNSTTTSEDGGNIDTTAPVLTLNPQGTGNDETPNISGNTDLAPGSTVTLTVTDSAGNTQTFDAIVDANGDFSADVPNAIPDGSYTVTASASDDAGNTTTTSDTGTLDSSAPALTLEAQVTVSDTIPTLSGTTDLPAGSTVTLSVIDSAGNTQ
TFTALVDASGNFSADVPAPLAEGDYSVTATATDSSGNSASVTDNNGVVDTVAPVISLDTLGSNNDTSPTISGTTDLAAGESVTLSITDNAGNTQTVTATVDANGNFSVDVPVALTEGDYTVTATAKDEAGNSSTASAAGTIDTTAPTLTLDPQGLGNDTTPTMSGSTDLAEGSVVSLVITDSTGNIQTVT
ATVDAAGNFTVDLPAALAEGSYSVEATATDEAGNSTSILDNSGNIDTTPPELNLDELAPENNLTPTISGLTNLPAGAIVTLTVVDSAGNTQTFAATVQTDGSFAANVPSPLAEGDYTVTATAQDPAGNQGSASETGGSVDTTAPVITLDPFGTGNDTTPTISGSTDLDAGSTVTITVTDNTGTEQSFTAT
VDDNGDFSADVPNPMADGNFDVTATATDAAGNTATDTVSGDINSAAPTLSLEPLGADNDTTPTILGNTDIAPGSTVTLIVTDSAGNTQTFTATVQGDGGFTADVPAGLSEGDYSVTATATDGAGNSASVTENGGNIDTTAPSITIDAQGLGNDATPSISGTTDLNAGDTVSISVTDNAGNTQTFTATVLN
DGTYSADVPADLAEGSFSATVTATDDAGNSATAIDNSGVIDTAAPTITLDALDLTNDATPTISGTTDLSAGNTVNISVTDSLGNTQTFTATVQANGSFSADVPVDLAQGDYTVEVTATDDAGNQNTAIDNNGVIDTTPPVINLDPVASGNDATPILGGTTDLPEGATITLVVTDAGGNVQNLTATVNADG
AFSVEVPGALADGDYNVSASASDTAGNSTTVTGSGNINASAPDITLDALGQTNDATPLISGTTNAPVGATITLTVTDNAGAVQTFTTAVQGDGTFSASVPTDLAEGSYTVVAEVDDSAGNTGSDSETGGVIDTTSPTIDVTELGIGNDATPTISGTADQPVGSTVSITVTDDAGNVQTLSATVQSDGSFS
VDVPVTLAEGNYTVQATVVDEAGNTASDAETGVIDTLSPVITLDEPGTVGDSTPTISGTVDLPQGSTVQITVVDNAGNTQVFNALVTTGGVFSTDVPAAMAEGSFTVSVTATDTAGNSTTDNEAGVVDTLVPTLTIDVADTTNDATPLITGSTDEPAGSVITILVTDSAGATQTLSAVVQADGSFSISPG
TNLAEGDFTVSAAIDDDAGNTATASDTGNIDTTPPLLTLTPLEEGNDTTPTLSGSTNLAQGSEVTLVVTDNAGNVQTITATVDVNGDFTVDVPVPLAEGAYSVEATASDDAGNSTNVVDNTGVIDTTAPTLSLDALDSENDTTPTISGNSDLPAGATVTITVTDNAGVSQTFDATVQVDGSYSADVPAPM
AEGGYTVTAVAQDSAGNESTATETNGSVDTTAPTITLDAQGTGNDTTPTITGSTDLSAGSLVTITVSDSAGAEQTFTAIVDSNGNFSADVPNAMTDGNFDVTATATDAAGNSASDTTSGNINLAVPNLTLDPLGTGNDTTPTISGTTDIPPGSTVSISVTDNAGNTQTFDATVQANGTFSVDMPAALSEG
NYSVTATATDGAGNTATANENGGIIDTTAPAAPTVDAGNGTEITGTAEAGAVVNVDVDGDGTPDFTVTADGDGNWSVTPTTPLTDGVVVTATAIDEAGNTSGPASDTVDAVAPVVAFNDLTTNDTTPALTGSVDDPTATVVVTINGIDYPATNNGNGTWTLADDAVAALAEGSYTATVTATDPDGNVSTN
TGTVVIDTTVPAAPTVDVGNGNEISGTAEAGATVSVDVDGDGTTDFTVIADGDGNWSVTPATSLADGVVVTATATDEAGNVSAPASDTVDAVAPVVAISDLTTNDTTPELIGTVDDPSAIVVVTIDGVDYTASNNGDGSWTLADDAVAALAEGSYTATVTATDADGNVGANSGTVVIDTTPPAIPTVDAG
NGTEITGTAEAGSEVNVDVDGDGIPDFTVTADGDGNWSITPDTPLADGVVVTATATDVAGNISNPASDTVDAAAPVVAFNDLTTNDTTPALTGSIDDPTATVVVTINDVDYTATNNGDGTWTLTNDAVAALAEGSYTATVTATDPEGNVGTNTGTVVIDTTVPIAPTVDAGNGTEITGTAEAGALVSVDV
DGDGTPDFTVVADGDGNWSITPDTPLADGVVVSATATDDAGNTSAPASDTVDAVAPVVTINDVTTNDTTPALTGSVDDASATVVVTIDGNDYTATNNGNGTWTLADDAVATLAEGSYTATVAATDPDGNVSTNTGTVVIDTTVPTAPTVDAGNGTEITGTAEAGATVNIDVDGDGTPDYTVTADGDGNWS
VTPDTPLADGVVVSATATDDAGNTSAPASDTVDAIAPVVAINDLTTNDTTPALTGTVDDDTATVVVTINGIDYPATNNGNGTWTLADDAVATLAEGSYTATVTATDPEGNVSTNTGTVVIDTTAPAAPTVEAGNGTEITGTAEAGATVNVDVDGDGTPDFTVVADGDGNWSITPDTPLADGVVVSATATD
DAGNTSAPASDTVDAVAPVVTINDVSTNDTTPALTGTVDDASATVVVTIDGNDYTATNNGNGTWTLADDAVATLAEGSYTATVAATDPDGNVSTNTGTVVIDTTVPTAPTVDAGNGTEITGTAEAGALVSVDVDGDGTPDFTVVADGDGNWSITPDTPLADGVVVSATATDDAGNTSAPASDTVDAVAPV
VTINDVTTNDTTPVLTGTVDDATATVVITIDGVDYIATNNGNGTWTLADDVVATLAEGSYPTSVTATDDAGNTDTDTGTVVIDTTAPTVAINDLTTNDTTPELTGTVNDPNAIVVVTIDGNDYTATNNGNGTWTLADDAVASLAEGSYPTSVTATDAAGNTVTNTGTVVIDTTAPTVAINDLTTNDTTPE
LTGTVNDPNAIVVVTIDGNDYTATNNGNGTWTLADDAVASLAEGSYPTSVTATDAAGNTVTNTGTVVIDTTAPTVAINDLTTDDPTPALTGTVNDPNAVVVVTIDGNDYTATNNGNGTWTLADNIVALLAEGNYTATVTATDAVGNSDSATGSIVIDTSIDENNNGQTVTFDSISNDSGVAGDFITSDST
LIFNGTVDLGDNTTLTVTVDGTSYTFGTDPELTIDGSGNWSLDLTGTTLPAGTYAVVATVTDEAGNTASTASQNVVVQALDAINDGNAVDMGEPVVTVNPPETTSNVDVIGLAESTGGVDASASFTVSPNHVGEVLVEVDQIALVAVADAYIVEVYDESGQLVYKGVSADSQLADVGGLDIFDVTGDETI
SFTLAGLDAGNYSVVVRNDENLLEDLLDNDNSNDVDLDELGTAGVVLGPDNQAVVLDTIETTLNTDVLGIPLDTVGTQVRGVLETLLDTTTVIGAGQLVNLLTAPLDAIGLTGFFDDILSVVADALLSNTLTLLQDTDITTTLTEYTYSGDLVAQGNLINGDLSGVGADTILDGAQVTLVTNASGDSVAV
PATGTVTIQGNYGVLEIAADGTYTYTTDGDRSAIGKDEVFNYTLSDGETSDIAALTISISGSDFPPVVAQTDNNDMELGAQTAIVNAPVTDSDFQVIGLAEGSPAAGSPEASTTLTVDAGFFGEVVVEVSQTALVAVADAYRVDIIDADGNVVATAMTPDNPLIGDAVGINLIGLTGDDTLVAKFSGLPA
GDYTVVVRNDESALETLFDQDSDGSITLTELGDGGVVLGEENQEVVLTALEAALNGTNASVLNGLGLGTVVRNFILEPALGAADTIGAGDLVSTITTGLNLLGLGTLADTVLDAVAAALLSNTLTLLQSTDITSTLTEYAFEGSTTTSGNVIDAANTGDVADSIAEGGVVTQVTPTNGETVTVLGTGLSG
ITIEGDYGDLTIFEDGSYTYVANGVRDGLGSTDSFSYTISDGTNTSTANLNFNLSGQGVSADSARAELIYDFATAAGVSEPDALTYEWTLGVELFGVTIVIPSNVDTVSNSIIVAENTVQDITLTVDGGDLLSLGSGLDLFIERNNNGTWEVVETFSSDQLIGLLGLDGNGVFTSYGLTEGEYRVTMDVD
TGAASALGGVSVDLSSTVHFLDQFVVEEIQTAIGNLFENDVLFGSTYDVTLSTDGTTFQDPTGGITLVGDYGTLQIDETGAYTYTPDNTQAVFSGTLTDTFTYRIEYPDGTVEQAEFNVFVTASGEGVPVAETSNSAETMANSSSESVSASQSSETEATDEPKAPNVIEFSGQSEQTVELNTDSQVVTSE
STLPEDIITLPEENDIVTIGLETEVTIDTVDLELPPEDLILPSIESIPSDSESDSTSVAESGQVSGDTSKESDGSIGIATPTESDVLKTAIDKFPTTDI
Molecular weight: 633.31 kDa
Isoelectric point according different methods:
Protein with the highest isoelectric point:>tr|F5Z9Q7|F5Z9Q7_ALTSS Uncharacterized protein
MLRWALIFLVVALIAAVLGFGGIAGSAAGIAKIIFGIFVILLIISIVMNMVRGKR
Molecular weight: 5.8 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 |
4,324 |
18 |
4,342 |
1,415,153 |
31 |
6,369 |
327.3 |
36.3 kDa |
Amino acid frequency
Ala |
Cys |
Asp |
Glu |
Phe |
Gly |
His |
Ile |
Lys |
Leu |
Met |
Asn |
Gln |
Pro |
Arg |
Ser |
Thr |
Val |
Trp |
Tyr |
8.89 |
0.94 |
5.8 |
6.22 |
4.23 |
6.66 |
2.19 |
6.2 |
5.23 |
10.04 |
2.46 |
4.52 |
4.09 |
3.88 |
4.4 |
7.07 |
5.76 |
7.11 |
1.2 |
3.1 |
Note: For statistics only major isoforms were used (in this case 4,324 proteins)
For dipeptide frequency statistics click
here