Entry |
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Name |
(RefSeq) hypothetical protein
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KO |
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Organism |
ssl Sclerotinia sclerotiorum
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Pathway |
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Brite |
KEGG Orthology (KO) [BR:ssl00001]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00730 Thiamine metabolism
SS1G_00938
09120 Genetic Information Processing
09123 Folding, sorting and degradation
04122 Sulfur relay system
SS1G_00938
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03016 Transfer RNA biogenesis [BR:ssl03016]
SS1G_00938
03029 Mitochondrial biogenesis [BR:ssl03029]
SS1G_00938
09183 Protein families: signaling and cellular processes
02048 Prokaryotic defense system [BR:ssl02048]
SS1G_00938
Enzymes [BR:ssl01000]
2. Transferases
2.8 Transferring sulfur-containing groups
2.8.1 Sulfurtransferases
2.8.1.7 cysteine desulfurase
SS1G_00938
Transfer RNA biogenesis [BR:ssl03016]
Eukaryotic type
tRNA modification factors
Thiolation factors
SS1G_00938
Prokaryotic type
SS1G_00938
Mitochondrial biogenesis [BR:ssl03029]
Mitochondrial quality control factors
Regulator of mitochondrial biogenesis
Proteins involved in Fe-S cluster biogenesis
SS1G_00938
Prokaryotic defense system [BR:ssl02048]
DNA phosphothiolation system
Sulfur modification proteins
SS1G_00938
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SSDB |
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Motif |
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Other DBs |
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LinkDB |
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Position |
Unknown
|
AA seq |
515 aa
MSSLASTSLRQASRLCLKQSTPPVGLVRGSAFARVASISNQKISRRGYVSETKRDSAQVN
IDTAIRSEQKAFFKETGKHAEDQSISGTSANADAMMSPIAGVLKQATVMDEGQRPIYLDM
QATTPLDPRVLDKMLPFYTGLYGNPHSRTHPYGWEADRAVEEAREHIAAVIGADPKEIIF
TSGATESNNMSVKGVARFFGRAGKKKHIITTQTEHKCVLDSCRHLQDEGFDITYLPVQQN
GLVDMAQLEAAIRPETALVSIMAVNNEIGVIQPLEEIGKLCRSKKVFFHTDGAQAVGKIP
LDVNAMNIDLMSISSHKIYGPKGIGACYVRRRPRVRLEPIISGGGQERGLRSGTLAPALV
VGFGEACRIANEEMDYDHTRVKKLSDRLLKGLLAMEHTTQNGDPDHFYPGCVNVSFAYVE
GESLLMALKDIALSSGSACTSASLEPSYVLRALGSSDESAHSSIRFGIGRFTTEAEIDYV
LQAVENRVTFLRELSPLWELVQEGIALDSIEWSQH |
NT seq |
1548 nt +upstreamnt +downstreamnt
atgtcgagtttagcttcaacgtcgttgaggcaggcctcgcgcctttgcttaaagcagtcg
accccacctgttggattggtgaggggttctgcgtttgctcgggtggcgtctatatcaaat
caaaaaatatcaaggaggggttatgtttccgagacgaaaagagacagcgctcaagttaat
attgatactgcgattcgatcagaacaaaaggctttcttcaaagagactggcaagcatgct
gaggatcaatctatatcaggaacatctgcaaatgctgatgcgatgatgagtcctatcgct
ggtgtgcttaagcaagctactgtcatggacgaaggccagagaccaatttacttagatatg
caagctactacaccattggacccacgagtattggataaaatgttacccttctataccggt
ctatatggcaatcctcattcgagaacccatccttatggttgggaagctgacagggcggtt
gaagaagcaagagaacacattgctgcagtgattggcgctgatcctaaagagattattttc
accagtggagctacggagagtaacaatatgagtgtcaaaggtgtggcgaggttctttggt
agagcggggaagaagaagcacattattacaacacaaacagagcacaaatgtgtactggat
agttgtaggcatttgcaggatgaaggtttcgatattacatatctgccagtgcagcaaaac
ggcttagttgatatggctcaacttgaagctgccattcgacccgagacagcccttgttagt
attatggcagttaacaacgaaattggtgtcattcaaccactagaagaaataggcaagctt
tgccgctcgaagaaggttttcttccataccgatggtgcgcaagctgttggaaagattccc
ttggacgtcaatgcgatgaacattgatttaatgtcaatttcgtctcataagatttatgga
ccaaagggtatcggtgcatgctatgtgcgcagacgacccagggttaggctcgagccaatt
atcagtggaggtggacaggagagaggtctaagaagtggtactctcgcgcctgcattagtg
gtcggcttcggtgaagcttgccggattgcaaatgaggaaatggattatgaccatacccgt
gttaagaagctgtccgacagactactcaaaggtcttctcgccatggagcacaccactcaa
aatggcgacccagatcatttctacccgggatgtgtaaacgtctcttttgcctacgtcgaa
ggagaatcgctcttgatggcattaaaggacattgcactatcatccggaagtgcttgtacc
tctgcttcactcgaacccagttatgttcttcgggcacttggtagcagtgatgagagtgca
cacagcagtatcagatttggtattggccgtttcacaactgaggctgagattgattacgtt
ttgcaagctgtcgaaaaccgagtcacattcttacgagagttgagtcctctttgggagctc
gtgcaggaaggtatcgcattggacagtattgagtggagtcagcattag |