Gene SNSL254_A3140 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagSNSL254_A3140 
SymbolcysN 
ID6486394 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameSalmonella enterica subsp. enterica serovar Newport str. SL254 
KingdomBacteria 
Replicon accessionNC_011080 
Strand
Start bp3051190 
End bp3052629 
Gene Length1440 bp 
Protein Length479 aa 
Translation table11 
GC content55% 
IMG OID642738451 
Productsulfate adenylyltransferase subunit 1 
Protein accessionYP_002042175 
Protein GI194442387 
COG category[P] Inorganic ion transport and metabolism 
COG ID[COG2895] GTPases - Sulfate adenylate transferase subunit 1 
TIGRFAM ID[TIGR00231] small GTP-binding protein domain
[TIGR00485] translation elongation factor TU
[TIGR02034] sulfate adenylyltransferase, large subunit 


Plasmid Coverage information

Num covering plasmid clones10 
Plasmid unclonability p-value
Plasmid hitchhikingNo 
Plasmid clonabilitynormal 
 

Fosmid Coverage information

Num covering fosmid clones56 
Fosmid unclonability p-value0.167503 
Fosmid HitchhikerNo 
Fosmid clonabilitynormal 
 

Sequence

Gene sequence
ATGAACACCA TACTTGCACA ACAAATCGCC AATGAAGGCG GCGTCGAAGC CTGGATGATG 
GCCCAACAAC ACAAAAGCCT GCTGCGTTTT TTAACCTGTG GCAGCGTTGA TGACGGTAAA
AGTACGTTGA TAGGTCGTTT GCTGCACGAT ACCCTGCAAA TTTATGAAGA TCAGCTCTCT
TCTCTGCATA ATGACAGTAA ACGTCATGGC ACGCAGGGAG AAAAACTCGA TCTGGCGCTG
CTGGTAGATG GGCTACAGGC CGAGCGTGAG CAGGGCATTA CTATTGACGT CGCGTACCGC
TATTTCTCCA CGGAAAAACG AAAATTTATT ATCGCCGACA CGCCGGGCCA TGAACAATAT
ACCCGGAATA TGGCGACCGG AGCGTCCACC TGCGATCTGG CGATCCTACT GATCGACGCG
CGTAAAGGCG TGCTGGATCA GACGCGTCGT CATAGCTTTA TCTCCACTCT GTTGGGGATC
AAACACCTGG TGGTGGCAAT CAACAAAATG GATCTCGTTG ACTACCGCGA AGAGACCTTC
GCCCGTATTC GTGAAGATTA CCTGACCTTT GCTGAACAGT TGCCGGGCGA TCTGGATATT
CGCTTTGTCC CGCTTTCGGC GCTGGAAGGG GATAATGTCG CCGCGCAGAG CGCGAATATG
CGCTGGCACA GCGGTCCGAC GCTGCTGGAA GTCCTGGAAA CGGTAGACAT ACAGCGTGCG
GTAGACCGTC AGCCGATGCG CTTTCCGGTA CAATACGTCA ATCGCCCGAA TCTTGATTTT
CGGGGGTATG CCGGCACTCT GGCGTCTGGT AGCGTCAAAG TCGGAGAGCG CATTAAAGTG
CTGCCGTCCG GCGTGGAATC CAGCGTGGCG CGTATCGTCA CTTTTGATGG CGACAAAGAA
GAAGCCTGTG CGGGCGAAGC CATTACCCTG GTACTCAACG ACGACATTGA TATTAGCCGC
GGCGATCTGC TGCTGGCGGC AAACGAGACG CTGGCACCTG CGCGGCACGC TGCGATCGAC
GTGGTATGGA TGGCGGAACA GCCGCTGGCG CCGGGCCAAA GCTACGATGT TAAACTTGCG
GGTAAGAAAA CCCGCGCGCG TATCGAGGCT ATTCGCTATC AGATTGATAT CAACAATCTG
ACCCAACGAG ACGTCGAGAG CCTGCCGTTA AACGGTATTG GTCTGGTGGA GATGACATTC
GATGAGCCGC TCGCGCTGGA TATTTATCAG CAAAATCCGG TGACGGGCGG ACTGATTTTT
ATCGACCGAC TTTCTAACGT TACCGTGGGC GCTGGCATGG TGCGGGAACT GGATGAACGC
GGAGCGACGC CGCCCGTGGA ATACAGTGCG TTTGAGCTGG AGCTGAATGC GCTGGTACGC
CGTCATTTTC CGCACTGGGA CGCCCGAGAT TTGCTGGGAG ATAAACATGG CGCTGCATGA
 
Protein sequence
MNTILAQQIA NEGGVEAWMM AQQHKSLLRF LTCGSVDDGK STLIGRLLHD TLQIYEDQLS 
SLHNDSKRHG TQGEKLDLAL LVDGLQAERE QGITIDVAYR YFSTEKRKFI IADTPGHEQY
TRNMATGAST CDLAILLIDA RKGVLDQTRR HSFISTLLGI KHLVVAINKM DLVDYREETF
ARIREDYLTF AEQLPGDLDI RFVPLSALEG DNVAAQSANM RWHSGPTLLE VLETVDIQRA
VDRQPMRFPV QYVNRPNLDF RGYAGTLASG SVKVGERIKV LPSGVESSVA RIVTFDGDKE
EACAGEAITL VLNDDIDISR GDLLLAANET LAPARHAAID VVWMAEQPLA PGQSYDVKLA
GKKTRARIEA IRYQIDINNL TQRDVESLPL NGIGLVEMTF DEPLALDIYQ QNPVTGGLIF
IDRLSNVTVG AGMVRELDER GATPPVEYSA FELELNALVR RHFPHWDARD LLGDKHGAA