Gene Information Plasmid Coverage information Fosmid Coverage information Sequence |
Gene Information |
Locus tag | VEA_002744 |
Symbol | |
ID | 8556472 |
Type | CDS |
Is gene spliced | No |
Is pseudo gene | No |
Organism name | Vibrio sp. Ex25 |
Kingdom | Bacteria |
Replicon accession | NC_013456 |
Strand | - |
Start bp | 1269961 |
End bp | 1272585 |
Gene Length | 2625 bp |
Protein Length | 874 aa |
Translation table | 11 |
GC content | 47% |
IMG OID | 646405835 |
Product | [Protein-PII] uridylyltransferase |
Protein accession | YP_003285371 |
Protein GI | 262393517 |
COG category | [O] Posttranslational modification, protein turnover, chaperones |
COG ID | [COG2844] UTP:GlnB (protein PII) uridylyltransferase |
TIGRFAM ID | [TIGR01693] [Protein-PII] uridylyltransferase |
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Plasmid Coverage information |
Num covering plasmid clones | 18 |
Plasmid unclonability p-value | 1 |
Plasmid hitchhiking | No |
Plasmid clonability | normal |
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Fosmid Coverage information |
Num covering fosmid clones | n/a |
Fosmid unclonability p-value | n/a |
Fosmid Hitchhiker | n/a |
Fosmid clonability | n/a |
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Sequence |
Gene sequence | ATGACACTTC AGTCCCCTCT TACCTTTTCC GATGAACAAA TCAATATCGG AGAGCTCAAA CAAGAGTTAG AGAAATTTAG CTCCGATCAA AACCAAGAGT TTCTCAATCA TCATCCGGTA ACAAGCTTGG TTTTAGCCAG GGCAGAATAC ATGGATCTGC TTCTGAATCG TTTGTGGCAA CATTTTGGCT TCAAAGATAT TTACAACATT TCCCTAGTTG CCGTGGGTGG CTATGGGCGT GGCGAGCTGC ATCCGCTCTC CGATATCGAT ATTTTGATTC TGTCGAACAA TAAGCTGCCG ACCGCGCTAG AAGCAAAAAT CAGCGAATTC ATTACGCTGT TGTGGGATTT AAAACTCGAG GTCGGACACG CTGTTCGCAC CGTTAACGAA TGTGCGGAAA TTGGTAAAGC CGATCTGACC GTCGCGACAA ACCTTCAAGA AGCGCGTCTA CTGTGTGGCA GCGAGGATAC CTTTCAGGCA CTGAAGAAAG TCGTATTATC AGACTCCTTT TGGCCAAGTG AAACGTTTTA TCGCGCTAAA ATTCAAGAGC AGAGAGAACG CCATGCCCGT TACCATGATA CAACCTACAA CTTAGAACCA GACATTAAGT CGACCCCTGG CGGGCTGCGC GATATTCATA CATTAAGCTG GGTCGCCCGA CGTCACTTTG GTGCCACGTC ATTGCTGGAA ATGAGCCGAT ACGGATTTTT AACTGACGCA GAATACCGAG AATTGGTTGA ATGTCAGGAC TTCCTTTGGC GAGTGCGTTT TGCTCTGCAC ATGGAGCTTC GCCGCTATGA CAACCGCTTG ACCTTTGCCC ATCAAGCACA AGTTGCGGAA AATCTAGGCT ACGTCGGTGA AGGCAACCGA GGCGTAGAAA TGATGATGAA AGAGTTCTAT CGCACACTTC GTCGTGTGGC AGAGCTCAAT AAAATGTTAC TCAAACTTTT TGATCAAGCG ATCATTAATG GTGGGGCGAC AGAAAGTGCC GAGATTCTCG ATGCCGACTT CCAACGTCGT GGCTCTTTGA TTGAAGCGCG GAAACCCGCA TTGTTTCAAG CTCGCCCAGA AACTATTCTG GATATGTTCT TACATATCGC GAACGACTCA ACCATTGAAG GGGTGAGCCC ACCAACACTA CGTCAGCTGC GCACCGCGCG CCGTCGACTC AACAAATTTT TGCACACCAT TCCTGCTGCG CGTGAAAAGT TCATGGCGTT ATGTCGTCAC CCTAATGCTC TGCATAAAGC ATTCAGCCTA ATGCACCGAT TAGGGGTTAT GGCGGCCTAT TTACCACAAT GGAGTCAAAT TGTTGGTCAA ATGCAGTTTG ACTTATTCCA CGCCTACACC GTTGATGAAC ACAGTATTCG CTTACTGAAA CACATCAACA CCTTTAGTGA CCCAGAAAAT CATGCGAAGC ACCCTATTTG CTGTGACGTC TACCCTCGGA TGCAAAAGAA AGAACTGCTG ATTATTGCCG CTATTTTCCA CGATATCGGT AAAGGACGTG GCGGCGATCA CTCTGTTATA GGCGAAGGTG AGGCTTACGA CTTCTGTATT GAGCATGGCT TATCAAAGCC CGAGGCCAAA CTTGTCGCTT GGTTGGTAAG GCATCATCTA TTAATGTCCG TCACCGCACA GCGCCGAGAC ATTTATGATC CCGATGTGAT TACCGAATTT GCCAAAAAAG TCAGAGACGA AGAATCTCTC GATTATCTTG TGTGCCTGAC AGTTGCAGAT ATTTGTGCAA CCAACCCAGA ACTTTGGAAT GCTTGGAAAC GAACCTTACT GGCAGAGCTG TATTACTCCA CACAACGTGC TTTACGTAGA GGGTTAGAGA ATCCTGTCGA TGTGCGTGAG CGAATTCGCC ACAACCAACA AATGGCCTCT GCAATGCTGC GCAAAGAGGG GTTTGCCGCG CGCGAAATTG AAGTATTGTG GCAACGCTTC AAAGCTGACT ATTTCCTTCG TCATACCCAT ACGCAAATCG CGTGGCACTG CGAACACTTA CTTCGCATGG AAGATCCGAC TAAGCCTTTG GTCTTGATCA GTAAAAAAGC CACTCGTGGC GGCACTGAGG TGTTTGTATA TACGAAAGAC CAGCCTGCTT TATTTGCGAC GGTCGTGGCG GAGTTAGATA GGCGTAATTT TAATGTACAC GACGCACAAA TAATGACCAG CAAAGATGGG CACGTGATTG ATACCTTTAT GGTACTCGAT CAACATGGCG AAGCGATCGA TGAGTCTCGT CACGCCGCGG TGATTAAGCA CCTCACCCAT GTACTAGAGG CGGGCCGACC AACCAAGATT AAAACACGCC GTACTCCGAA CAAACTTCAG CACTTTAATG TGAAAACCAA AGTCGACTTC TTACCAACCA AAGGTAAAAA GCATACTTTA ATGGAGTTTG TCGCGCTAGA CACACCAGGG CTGTTGGCCA AAGTAGGCCG TACGTTTGCT GATTTAAATA TCAACCTTCA TGGTGCCAAA ATCACCACCA TTGGTGAACG AGCAGAAGAC TTGTTTATTT TAACCAGTGA TGCAGGGGGA AGATTAAGTG AAGAACAACA GGATGAGCTA AGAGAGAGAT TGATCGAAAA GTTATCTGAT GAGGTCGCTG CTTAG
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Protein sequence | MTLQSPLTFS DEQINIGELK QELEKFSSDQ NQEFLNHHPV TSLVLARAEY MDLLLNRLWQ HFGFKDIYNI SLVAVGGYGR GELHPLSDID ILILSNNKLP TALEAKISEF ITLLWDLKLE VGHAVRTVNE CAEIGKADLT VATNLQEARL LCGSEDTFQA LKKVVLSDSF WPSETFYRAK IQEQRERHAR YHDTTYNLEP DIKSTPGGLR DIHTLSWVAR RHFGATSLLE MSRYGFLTDA EYRELVECQD FLWRVRFALH MELRRYDNRL TFAHQAQVAE NLGYVGEGNR GVEMMMKEFY RTLRRVAELN KMLLKLFDQA IINGGATESA EILDADFQRR GSLIEARKPA LFQARPETIL DMFLHIANDS TIEGVSPPTL RQLRTARRRL NKFLHTIPAA REKFMALCRH PNALHKAFSL MHRLGVMAAY LPQWSQIVGQ MQFDLFHAYT VDEHSIRLLK HINTFSDPEN HAKHPICCDV YPRMQKKELL IIAAIFHDIG KGRGGDHSVI GEGEAYDFCI EHGLSKPEAK LVAWLVRHHL LMSVTAQRRD IYDPDVITEF AKKVRDEESL DYLVCLTVAD ICATNPELWN AWKRTLLAEL YYSTQRALRR GLENPVDVRE RIRHNQQMAS AMLRKEGFAA REIEVLWQRF KADYFLRHTH TQIAWHCEHL LRMEDPTKPL VLISKKATRG GTEVFVYTKD QPALFATVVA ELDRRNFNVH DAQIMTSKDG HVIDTFMVLD QHGEAIDESR HAAVIKHLTH VLEAGRPTKI KTRRTPNKLQ HFNVKTKVDF LPTKGKKHTL MEFVALDTPG LLAKVGRTFA DLNINLHGAK ITTIGERAED LFILTSDAGG RLSEEQQDEL RERLIEKLSD EVAA
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