Gene Tcr_1372 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagTcr_1372 
Symbol 
ID3760758 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameThiomicrospira crunogena XCL-2 
KingdomBacteria 
Replicon accessionNC_007520 
Strand
Start bp1486895 
End bp1488532 
Gene Length1638 bp 
Protein Length545 aa 
Translation table11 
GC content44% 
IMG OID637786106 
ProductNAD+ synthetase 
Protein accessionYP_391641 
Protein GI78485716 
COG category[H] Coenzyme transport and metabolism
[R] General function prediction only 
COG ID[COG0171] NAD synthase
[COG0388] Predicted amidohydrolase 
TIGRFAM ID[TIGR00552] NAD+ synthetase 


Plasmid Coverage information

Num covering plasmid clones31 
Plasmid unclonability p-value
Plasmid hitchhikingNo 
Plasmid clonabilitynormal 
 

Fosmid Coverage information

Num covering fosmid clonesn/a 
Fosmid unclonability p-valuen/a 
Fosmid Hitchhikern/a 
Fosmid clonabilityn/a 
 

Sequence

Gene sequence
ATGTCAGAAC AACTCACCAT CATTATGGCT CAAATCAACC CGATTGTCGG TGATGTGGAG 
GGTAATACCT CTCTCATTAT CGAGTCGGCA AAGCAAGCTA AAATGGAGCA TCAAGCTGAT
ATTGTTGTTT TTCCTGAAAT GACTTTGACT GGCTACCCCC CTGAAGACTT ATTGTTTCGT
GAAGCACTTT ATCAGCAAGT CGAGTCATCG CTGTCGACCA TCTGTGAACA GGTGACGGAT
ACGGTGTTAG TGATTGGTTA TCCGATGATG GACGAGTTGG GTGATCGTTT TAATATGGCG
GCCTGGATCG AAGACGGTCA AATTCAAGCC AGTTACATCA AACAAAACTT ACCCAATTAC
AGTGTGTTTG ATGAAAAACG TTACTTTTCA TCAGGCCAGC AGCCTTGTGT TGTTGAGTAT
AAAGGGGTTA AGTTTGGCTT GTTGATTTGT GAAGATATCT GGAAACTTTC GCCTGCTGAT
CAATCCGTCA AAGCGGGTGC GGATATTTTA TTGAATCTCA ATGCCTCTCC TTTCTCACAA
GAAAAACATC AAGACCGAAT TCGTGTTGTG AAACGCCGAG TGGAAGAGGT TAAGCGTCCA
GTAATTTATG TGAATCAAGT GGGTGGGCAA GATGAACTCA TGTTTGATGG TGGTTCTTTT
GCGACCTGTG CTGAAGGCGA GGTTCAAGTG CAGGGCGCTG AATTTAAAAC AGATTTGATT
CCGGTTAAGA TTTTAAAACA AGCCGATGCG GTGGTGATTC TACCGGGTGA AAAAGCCGAA
TTACTGCAAA ATGAAGCGCG CGTTTATGAA GCGTTGGTCA TGGGGGTGAA AGACTATGTC
CACAAAAATG GGTTTAAAGG GGTTTTATTA GGGTTGTCTG GTGGTATTGA CTCTGCCTTA
ACGTTAGCCA TTGCTGTGGA TGCTTTAGGT GACAATCAAG TTGAAGCGGT TATGATGCCG
TTTAAATATA CAGCGGATAT CAGTGTGGAA GATGCTGAGA AAGAAGCTCA GGTATTAGGT
GTGCATTATC ACTCAATTCC GATTGAACCG ATTTACGATG CTTATGAATC CGCCTTAGCC
AGTCGTTTTG AAGGGTATGA AGAAGACGTC ACGGAAGAGA ATATGCAAGC GCGTATCCGT
GGTGTTCTTT TAATGTCGAT TTCCAACAAA ACAGGTAAAT TGGTTCTTGC CACCAGTAAT
AAATCTGAGG TAGCGGTTGG ATATTCCACC TTATATGGCG ATATGGTCGG TGGGTTTTCG
CCATTGAAAG ATGTGCCAAA AACGTTGGTG TACCGTTTGG CGGAATATCG AAATACAATT
TCAAGCGTCA TTCCTGAAAG AGTGATTACG CGTCCACCGT CTGCGGAACT GCGGCCAGAC
CAAAAAGATC AGGATTCCTT ACCCGACTAT GAGGTGTTGG ATACGATTAT CAAAGCGTTT
GTTAAAGAAG ACAAGAGTCC AGCACAGATC GTGGAAGAGT TCGGGTATGA CAAGCAGGAA
GTGGTGCGAA TCACGAAAAT GATCAGTCGT AATGAATATA AGCGACGTCA AGCAGCGCCT
GGGGTCAAAA TTTCGCCAAG AGCGTTTGGT CGAGATCGAC GTTATCCCAT TACCAGTCGA
TATGCAGAAG AGAATTAA
 
Protein sequence
MSEQLTIIMA QINPIVGDVE GNTSLIIESA KQAKMEHQAD IVVFPEMTLT GYPPEDLLFR 
EALYQQVESS LSTICEQVTD TVLVIGYPMM DELGDRFNMA AWIEDGQIQA SYIKQNLPNY
SVFDEKRYFS SGQQPCVVEY KGVKFGLLIC EDIWKLSPAD QSVKAGADIL LNLNASPFSQ
EKHQDRIRVV KRRVEEVKRP VIYVNQVGGQ DELMFDGGSF ATCAEGEVQV QGAEFKTDLI
PVKILKQADA VVILPGEKAE LLQNEARVYE ALVMGVKDYV HKNGFKGVLL GLSGGIDSAL
TLAIAVDALG DNQVEAVMMP FKYTADISVE DAEKEAQVLG VHYHSIPIEP IYDAYESALA
SRFEGYEEDV TEENMQARIR GVLLMSISNK TGKLVLATSN KSEVAVGYST LYGDMVGGFS
PLKDVPKTLV YRLAEYRNTI SSVIPERVIT RPPSAELRPD QKDQDSLPDY EVLDTIIKAF
VKEDKSPAQI VEEFGYDKQE VVRITKMISR NEYKRRQAAP GVKISPRAFG RDRRYPITSR
YAEEN