Gene Information Plasmid Coverage information Fosmid Coverage information Sequence |
Gene Information |
Locus tag | YpAngola_A1034 |
Symbol | aceE |
ID | 5799497 |
Type | CDS |
Is gene spliced | No |
Is pseudo gene | No |
Organism name | Yersinia pestis Angola |
Kingdom | Bacteria |
Replicon accession | NC_010159 |
Strand | - |
Start bp | 1057145 |
End bp | 1059808 |
Gene Length | 2664 bp |
Protein Length | 887 aa |
Translation table | 11 |
GC content | 50% |
IMG OID | 641339022 |
Product | pyruvate dehydrogenase subunit E1 |
Protein accession | YP_001605594 |
Protein GI | 162418763 |
COG category | [C] Energy production and conversion |
COG ID | [COG2609] Pyruvate dehydrogenase complex, dehydrogenase (E1) component |
TIGRFAM ID | [TIGR00759] pyruvate dehydrogenase E1 component, homodimeric type |
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Plasmid Coverage information |
Num covering plasmid clones | 22 |
Plasmid unclonability p-value | 1 |
Plasmid hitchhiking | No |
Plasmid clonability | normal |
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Fosmid Coverage information |
Num covering fosmid clones | 44 |
Fosmid unclonability p-value | 1 |
Fosmid Hitchhiker | No |
Fosmid clonability | normal |
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Sequence |
Gene sequence | ATGTCAGAAC GTTTAAATAA TGACGTGGAT CCGATCGAAA CCCGCGACTG GCTACAGGCG ATCGAATCGG TCATCCGTGA AGAGGGCGTT GAGCGTGCTC AGTATCTGAT TGATCAGGTC TTGGGCGAAG CCCGTAAAGG TGGCGTGAGT GTTGCTGCAG GTTCGGCAAA TCGTGATTAC ATCAACACCA TTCCAGTAGA AGATGAACCC GCTTACCCCG GCAATCTGGA CCTGGAGCGT CGTATTCGTT CTGCTATCCG TTGGAATGCG GTGATGACGG TGTTGCGTGC ATCTAAGAAA GATCTGGATT TGGGGGGCCA CATGGCGTCC TTCCAGTCTT CCGCTACGTT CTACGAGGTT TGCTTCAACC ACTTCTTCCG TGCCCGTAAC CAAAAAGACG GCGGCGATCT GGTTTACTTC CAGGGCCACA TTTCTCCAGG TGTTTACGCG CGCGCCTTCC TGGAAGGCCG TCTGACTGAA GATCAAATGA ATAACTTCCG TCAGGAAGTT CACGGTAAAG GTCTGTCTTC ATACCCGCAT CCAAAACTGA TGCCTGAATT CTGGCAGTTC CCGACGGTAT CCATGGGGCT GGGGCCAATT AGTGCTATTT ATCAGGCCAA GTTCCTGAAA TACCTCTCGC ACCGTGGTCT GAAAGACACC TCAGCACAGA CTGTTTACGC CTTCTTGGGT GATGGTGAGA TGGATGAGCC GGAATCCAAA GGTGCGATCA CCATCGCAAC CCGTGAAAAA TTGGATAACC TGGTCTTCGT TATTAACTGT AACTTGCAGC GCCTTGATGG CCCGGTTACG GGTAACGGCA AAATCATTAA TGAGCTGGAA GGTATCTTCA GTGGTGCTGG CTGGCAGGTT CTGAAAGTCA TTTGGGGTGG TCGTTGGGAT GAACTGCTGC GTAAAGATAC CAGCGGCAAA CTGATCCAAT TGATGAACGA AACGCTGGAT GGCGACTACC AGACGTTTAA ATCTAAAGAT GGCGCCTATG TGCGTGAACA CTTCTTTGGC CGCTTCCCAG AAACGGCTGC ATTAGTGAAA GATATGACTG ACGATGAGAT CTGGTCTCTG AACCGGGGTG GTCATGATCC GAAGAAAATC TTTGCTGCAC TGAAAAAAGC ACAAGAAACT CAAGGTAAAC CAACGGTTAT CCTGGCCCAT ACCATTAAAG GTTACGGCAT GGGTGAAACG GCTGAAGGTA AAAATATTGC TCACCAGGTG AAGAAAATGA ATATGGATGG GGTTCGCCAC TTCCGTGATC GTTTCAATGT GCCAGTTGCC GATGCTGAAA TCGAAAAACT GCCATACATC ACCTTCGAGA AAGATTCCGA AGAGTATAAA TATCTGCACG AACGCCGTCA GGCGCTGGAA GGCTATTTGC CAACCCGTAT GCCTAAATTC ACCGAGAAGC TGGAAATCCC TGCCTTGTCA GATTTCAGCT CCTTGTTGGA AGAGCAGAAT AAAGAGATCT CTACCACTAT CGCCTTCGTG CGCGCGCTGA ACGTGATGTT GAAGAACAAA TCGATCAAAG ATCGTATTGT TCCCATCATC GCTGATGAAG CCCGTACTTT TGGTATGGAA GGTCTGTTCC GTCAAATTGG TATTTACAGC CCGAATGGTC AGCAGTACAC CCCACAAGAC CGTGAACAGG TTGCTTACTA CAAAGAAGAT GAGAAAGGCC AGATCCTGCA AGAAGGGATT AACGAACTGG GTGCTGCCTC TTCATGGCTG GCTGCTGCGA CTTCATACAG CACCAACGAT CTGCCAATGA TCCCGTTCTA TATTTACTAC TCCATGTTCG GTTTCCAACG CATCGGCGAT CTGTGCTGGG CTGCGGGTGA TCAACAAGCA CGTGGCTTCT TGATCGGGGG TACTTCAGGT CGTACAACCC TGAACGGCGA AGGTCTACAA CATGAAGATG GTCATAGCCA TATTCAGTCA CTGACTATCC CGAACTGTAT CTCTTACGAT CCGGCCTATG CTTACGAAGT CGCCGTCATT ATGCATGACG GTCTGGAGCG TATGTACGGC GAAGCGCAGG AAAACGTTTA TTACTACCTG ACTACGCTTA ACGAAAACTA TCACATGCCA GCGATGCCAC AGGGCGCAGA AGAAGGTATC CGTAAAGGTA TCTATAAACT GGAAACTGTT GAAGGTAGCA AAGGCAAAGT GCAGCTGATG AGCTCTGGTG CAATCTTGCG TCACGTTCGC GAAGCGGCTC AGATTCTGGC TAAAGATTAC GGCGTAGGTT CTGATGTGTA CAGTGTGACC TCCTTCACTG AACTGGCCCG TGACGGTCAG GATTGTGAGC GTTGGAACAT GCTGCACCCG ACAGAAACAC CACGTGTTCC TTATGTGGCT CAGGTGATGA ATGATGCCCC TGCGGTTGCG TCTACTGACT ACATGAAGTT GTTTGCTGAA CAAATTCGTA ACTTTATTCC TGCCAGCGAG TTCCGTGTAC TGGGCACTGA CGGTTTCGGC CGTTCTGACA GCCGTGAGAA CCTGCGTCAC CACTTCGAAG TTGATTCTTC TTATGTTGTG GTTGCGGCTC TGGGTGAATT GGCGAAACGC GGTGACATCG ACACCAGTGT AGTTGCTGAA GCAATTACTA AGTTTGGTAT CGACGCTGAT AAAGTTAACC CGCGTCTGGC ATAA
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Protein sequence | MSERLNNDVD PIETRDWLQA IESVIREEGV ERAQYLIDQV LGEARKGGVS VAAGSANRDY INTIPVEDEP AYPGNLDLER RIRSAIRWNA VMTVLRASKK DLDLGGHMAS FQSSATFYEV CFNHFFRARN QKDGGDLVYF QGHISPGVYA RAFLEGRLTE DQMNNFRQEV HGKGLSSYPH PKLMPEFWQF PTVSMGLGPI SAIYQAKFLK YLSHRGLKDT SAQTVYAFLG DGEMDEPESK GAITIATREK LDNLVFVINC NLQRLDGPVT GNGKIINELE GIFSGAGWQV LKVIWGGRWD ELLRKDTSGK LIQLMNETLD GDYQTFKSKD GAYVREHFFG RFPETAALVK DMTDDEIWSL NRGGHDPKKI FAALKKAQET QGKPTVILAH TIKGYGMGET AEGKNIAHQV KKMNMDGVRH FRDRFNVPVA DAEIEKLPYI TFEKDSEEYK YLHERRQALE GYLPTRMPKF TEKLEIPALS DFSSLLEEQN KEISTTIAFV RALNVMLKNK SIKDRIVPII ADEARTFGME GLFRQIGIYS PNGQQYTPQD REQVAYYKED EKGQILQEGI NELGAASSWL AAATSYSTND LPMIPFYIYY SMFGFQRIGD LCWAAGDQQA RGFLIGGTSG RTTLNGEGLQ HEDGHSHIQS LTIPNCISYD PAYAYEVAVI MHDGLERMYG EAQENVYYYL TTLNENYHMP AMPQGAEEGI RKGIYKLETV EGSKGKVQLM SSGAILRHVR EAAQILAKDY GVGSDVYSVT SFTELARDGQ DCERWNMLHP TETPRVPYVA QVMNDAPAVA STDYMKLFAE QIRNFIPASE FRVLGTDGFG RSDSRENLRH HFEVDSSYVV VAALGELAKR GDIDTSVVAE AITKFGIDAD KVNPRLA
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