Gene Information Plasmid Coverage information Fosmid Coverage information Sequence |
Gene Information |
Locus tag | Maqu_2550 |
Symbol | glnD |
ID | 4654916 |
Type | CDS |
Is gene spliced | No |
Is pseudo gene | No |
Organism name | Marinobacter aquaeolei VT8 |
Kingdom | Bacteria |
Replicon accession | NC_008740 |
Strand | + |
Start bp | 2852062 |
End bp | 2854707 |
Gene Length | 2646 bp |
Protein Length | 881 aa |
Translation table | 11 |
GC content | 58% |
IMG OID | 639812531 |
Product | PII uridylyl-transferase |
Protein accession | YP_959812 |
Protein GI | 120555461 |
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 | 8 |
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 | GTGGACCGAA GCGAGCTGGA ATCCCGAATC AGTAACGACA CCTCACCGGT GTTTGCCGCA CGCGAACTCT TGCGGGAAAG TTATAACGCT GATGCCGAGG CATTTCAGCA AGGCGCCGAT GTCCGCGCCC TGGTTCTTGC CAGGGCCAAC ACCATCGACA AGGTACTCCG GCTGATCTGG AACCGATACC CGTTCTCCCG CTCCGCAGAC ATTGCACTGG TGGCCGTGGG GGGGTATGGC CGGGGCGAGC TGCACCCTCA TTCCGATATT GACCTGCTGA TCCTGACCCG CAATGGCATA GAAGAGGACT GGCAGGAAGA CCTGGGAGCG TTTGTCACCC TGCTCTGGGA CCTCAAACTG GATATTGGCC ACAGCGTTCG CAGCCTGGCG GAATCCATTC AGGCCGCCCG GGAAGACATC ACCATTCTGA CCAACCTGCT GGAAACACGT ACGATCGCAG GCCCGGATGG TTTACGGGCC GAACTCAGTG AGATGGTGTA TTCGGACGAC GTCAGCTCCG ATCGGGACTA CTTCCTCGCC AAACGTGAAG AACAGCAGCA ACGTCACAAG AAGTACGGCG ACACGGAATA CAATCTGGAG CCCAACGTCA AAGGCTCTCC TGGCGCCCTT CGGGATATCC AGACCATCGG CTGGATCACC AAGCGCCATT TCGGCCTGCA GAATATTGCC GACCTCACCC GCTTCAGCAT CCTGACCGAA GAAGAGCACC AGATTCTGTA CCAGGGGGAG ACCTTCCTCT GGAGGCTCCG ATTTGGTCTT CAGCTGCTGG CCGACCGCAA TGAAAATCGA CTTTTATTTG ACCACCAACG CGCCCTGGCA CAAATGCTCG GTTACCAGGA CGAAGGTAAA CGTCTGGGCG TAGAGCTGAT GATGCAGCAG TACTACCGCA CTGTGCTTGC ACTGGCGGAG CTGGCCGACG TGATCCTGCA GTATTATGAC GAAGCCATCA TTGGCAGCGG CGGCGAAGAT GAAATCCGCC CCCTGAACAA ACGTTTCCAG GTTCGCAACC TTTACATTGA AGCGGTGAAC AATCAGGTGT TCGCCTACGC CCCGTACGCG ATCATGGAAA TCTTCGTGCT GATGGCGCAA CACCCGGAGA TCAAAGGTAT CCGGGCCACC ACGATTCGCT CACTCCGGGC CCACAGGCAT CTGATTGATG ACGCGTTCCG GTCTGACCTG GCCGTCACTA CGCTGTTTAT GGAGCTGCTA CGCACGCCCC ACGCCCTGGA CCAGACTCTG TCGGCCATGA AGAAGTACAA CGTGCTGGGC CGCTACCTGC CGGAGTTCGG CCAGATCATC GGGCAGATGC AACACGACCT TTTCCATATC TATACGGTAG ACGCCCACAC CATGCGGGTG ATCCGCAATA TGGTGAGGCT CAACAGCACC GAGGCCCGAA CCGAATACCC CCTGGCCTCC CGTCTGATAC ACCGGCTACC CAAACTGGAA ACCCTGTTTA TTGCCGGCCT CTACCACGAC GTGGCGAAAG GCCGGGGCGG CGACCATTCC GAGCTTGGCG CCATTGATGC CGAAGCCTTT TGCGAGCGGC ACCATCTCAG TGAACGGGAC ACCCAACTGG TGTCCTGGCT GGTGGAAAAC CACCTGTTGA TGTCGATGAC CGCGCAGCGC AAGGATATTT CCGACCCGGA CATCATTCAG GCCTTTGCCC GCGCGGTACC CAGCCTCGCC CACCTGGACT ATCTCTACAT CCTCACGGTT TGCGATATCA GTGCCACCAA TCCCAAACTG TGGAACACCT GGCGCGCGTC GTTGTTGCGC CAGCTTTATA TAGAAACCAA ACGGGCGCTG CGCCGCGGCA CTGACAATCC GGTAGACCGG CAGTCCTGGA TCCGGGCCAC CCAGGAGGAA GCCAGGGAAA TCCTCCACGC CCAGAACATG ACCGATGAAC AGATCGACCA GATCTGGAAT ACCGTGGACG ACGAATACTT CCTGCAGGAT TCCACTGTCG ATATCGCCTG GCAAACAGCC GCCATCATTC GCCACGGCGA CAACCCGGAT CCTCTGGTGC TGATCCGGGA CACCCGGGGT GGCCCGACTG ACGGCTATTC CCAGATCATC ATCTACATGA AAGATCGCGT CGCCCTGTTT GCCGCCACCA CCGCTGTTCT GGAACAGCTG AACCTGAACA TTGTGGATGC CCGCATCAAT TCCACCGAAG GCCCCTATTC CATCAGCTCC TATGTGGTTC TGGATGACAA GGGCCAGCCG CTGGGTATCG ACCCGGCCCG GAAGGAGCGC GTACGCAAGC GACTGATTGA AGAACTGGAC GACCCGGAAG ACTATCCGGA CATCATCCAT CGCAGAACGC CAAGGCAGTT GAAACACTTT GCGTTCCCGA CCGAGGTGAC CTTCTCCAAC GACACCATCA ATCAGCGCAC GGTGATGGAA CTGATCACGC CGGACCGCCC CGGTCTGCTG GCGCGGATTG GCCAGGTGTT GCTGGAACAC CGGGTGCGGC TGACCAACGC CAAGATTGCC ACGCTGGGAG AACGAGTTGA AGACGTGTTC TTCATCACCG ACGAACAGGG CGAACCCCTG CGCGACCCGG GCGTGTGCCA GGCCCTGCAA CAGGACCTCT GTAAAATGCT GGACGAGATT CAATGA
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Protein sequence | MDRSELESRI SNDTSPVFAA RELLRESYNA DAEAFQQGAD VRALVLARAN TIDKVLRLIW NRYPFSRSAD IALVAVGGYG RGELHPHSDI DLLILTRNGI EEDWQEDLGA FVTLLWDLKL DIGHSVRSLA ESIQAAREDI TILTNLLETR TIAGPDGLRA ELSEMVYSDD VSSDRDYFLA KREEQQQRHK KYGDTEYNLE PNVKGSPGAL RDIQTIGWIT KRHFGLQNIA DLTRFSILTE EEHQILYQGE TFLWRLRFGL QLLADRNENR LLFDHQRALA QMLGYQDEGK RLGVELMMQQ YYRTVLALAE LADVILQYYD EAIIGSGGED EIRPLNKRFQ VRNLYIEAVN NQVFAYAPYA IMEIFVLMAQ HPEIKGIRAT TIRSLRAHRH LIDDAFRSDL AVTTLFMELL RTPHALDQTL SAMKKYNVLG RYLPEFGQII GQMQHDLFHI YTVDAHTMRV IRNMVRLNST EARTEYPLAS RLIHRLPKLE TLFIAGLYHD VAKGRGGDHS ELGAIDAEAF CERHHLSERD TQLVSWLVEN HLLMSMTAQR KDISDPDIIQ AFARAVPSLA HLDYLYILTV CDISATNPKL WNTWRASLLR QLYIETKRAL RRGTDNPVDR QSWIRATQEE AREILHAQNM TDEQIDQIWN TVDDEYFLQD STVDIAWQTA AIIRHGDNPD PLVLIRDTRG GPTDGYSQII IYMKDRVALF AATTAVLEQL NLNIVDARIN STEGPYSISS YVVLDDKGQP LGIDPARKER VRKRLIEELD DPEDYPDIIH RRTPRQLKHF AFPTEVTFSN DTINQRTVME LITPDRPGLL ARIGQVLLEH RVRLTNAKIA TLGERVEDVF FITDEQGEPL RDPGVCQALQ QDLCKMLDEI Q
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