Micropruina glycogenica: MPLG2_0185
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Entry
MPLG2_0185 CDS
T05338
Name
(GenBank) Amino acid adenylation protein
Organism
mgg
Micropruina glycogenica
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
AMP-binding
PP-binding
Hexapep
AMP-binding_C
Hexapep_2
Hexapep_GlmU
Motif
Other DBs
NCBI-ProteinID:
SPD85221
UniProt:
A0A2N9JAM9
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Position
1:complement(186787..190641)
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AA seq
1284 aa
AA seq
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MTLLRGPFAPPPRTLVDVFRETVAECGDDEALDNGVIVLTYDEFADAADDVADDLAELGI
GPGDKVGVRIASGTTELYVAIMGILLAGAAYVPVDADDPDERARTVFTEADVRAVIGNDL
EITRRGPVRPPAERVDPTPDDDAWVIFTSGSTGKPKGVAVTHRNAAAFVDAEARIFLTDA
PLGVGDRVMAGLSVAFDASCEEMWLAWRYGACLVPAPRSLVRSGMDLGPWLQANRITVVS
TVPTLVSLWPMEALARVRLLILGGEACPPELGARLVTPQREVWNTYGPTEATVVACGAKL
TGEPPIRIGLPLDGWDLAVVDPAGHPVPPDGTGELIIGGVGLARYLDPVKDAEKYAPLPS
LGWERAYRSGDLVVNDEAGLLFVGRADDQVKVGGRRIELGEIDNALLDLPGVSGAAAAVR
RTTSGSQLLVGYVAVEPGFDAHESLALLRERLPAPLVPRLAVVPELPTRTSGKIDRDALP
WPLPDAGGGSSDLQLSGTQAMVRDHWESALGTRVTTLDADFFDLGGGSLTAAQMVSLLRR
THPEVTVADIYDHPRLADLAHHLDEMAAPLSQLNANVRPVPVKTQRGQLLALLPLRTIAG
LRWTIWAAAGANLGNAAGLTWLPTLSWWWVLLGALLLIFTPGRLLLTAIGVRVILGGLAP
GSYPRGGRVHLRLWLAERFADEMGAESIAAAVLLRWYARLLGVTVEPHVDLHSAPPVTGL
LHLGEGCSVEPEVDLTGHWLDGDQLIVGAITVGRGARVGARSTLVAGADVGAGAEVAPGS
AVFGRVGAGEYWSGSPAVKVRDQARGPWPHRPNNNPAWLAGYAGMGVLIAALPLLATLAG
LAVVWPALRGAASVGSALVAVLPWLLPATLVGYVTLALLIWVLVRLLGIGLVAGHHPVQS
RISWQAWSTIRVLDEARTWLFPLYSSFATPAWLRSLGATIGHEVEASTTLMIPKLVTVAD
GAFLADDTLIGGYELGGGWLRIEEVRIGKHAFVGNSGMAAPGRKVPKGGLVAVLSAAPAR
ARAKRGTSWIGSPPTKLRRTAGNADTSRTYAPTTALKLARAGVELCRLLAPLTLVTLTLV
CVAAVVALAGVGWWLAALASGVVLAVGGVLAAASASIAKWVLLGRLKPSDHPLWSSLVWR
NELADMFVELLAAPWFAHPTMGTPALNAWFRTMGAKVGEGVWCETYWLPEADLIDLRAGV
TVNAGCVVQTHLFHDRVLSMDTVTLRAGATLGPNSVILPAATIGRHATIGPVSLVMRGES
VPDKTRWIGNPIAPWPASEPTTEE
NT seq
3855 nt
NT seq
+upstream
nt +downstream
nt
gtgaccctgttgcgcggcccgttcgccccaccaccgcgcaccctggtggacgtctttcgc
gaaaccgtcgccgaatgcggcgacgacgaggcactcgacaacggcgtgatcgtgctgacc
tacgacgagttcgcggacgccgccgacgacgtcgccgacgacctggccgagctgggcatc
ggccccggcgacaaggtcggcgtgcgcatcgcttcgggcaccaccgagttgtacgtggcg
atcatgggcattctgctggccggcgcagcctacgtgccggtcgacgccgacgatcccgac
gagcgcgcccgcaccgtgttcaccgaggccgacgtgcgcgcggtgatcggcaacgatctc
gagatcacccgccggggcccggtcaggccacccgcagaacgggtcgacccgacacccgac
gacgacgcctgggtgatcttcacctcgggctcgaccggcaagcccaagggggtggcggtc
acccaccgcaacgccgccgcgttcgtcgacgccgaggcccgcatctttctcactgacgcc
ccgctcggggtgggcgaccgggtcatggccgggctgtcggtggccttcgacgcctcgtgc
gaagagatgtggctggcgtggcgctacggggcctgcctggtgccggcgccacgctcgctg
gtgcgctcgggcatggacctagggccctggctgcaggccaaccgcatcaccgtggtgagc
accgtgccgaccctggtgtcgctgtggccgatggaagccctggccagggtgcggctgctg
attctgggcggcgaggcctgcccgcccgaactgggcgcccggctggtcaccccgcagcgc
gaggtctggaacacctacggccccaccgaggccaccgtggtcgcctgcggcgccaagctg
accggcgaaccgccgattcgcatcggcctgccactggacggctgggaccttgcggtcgtc
gacccggccggccacccggtgccgcccgacggcaccggcgagctgatcatcggtggggtc
ggcctggcccgctacctcgaccccgtcaaggacgccgagaagtacgctccgctgccgtct
ctagggtgggagcgggcctaccggtcgggcgatctggtggtgaacgacgaggccgggctg
ctgttcgtgggccgcgccgacgaccaggtgaaggtcggcggacggcgcatcgaactgggt
gagatcgacaacgccctgctcgacctgccgggggtcagcggtgcggccgcggcggtgcgg
cgcaccacctcgggcagccagttgctggtgggctacgtcgccgtcgaacccggcttcgac
gcccacgaatcgctggccctgctgcgcgaacgactgcccgctcccctggtgccccggctg
gcggtggtgcccgaactgcccacccgcacctcaggcaagatcgaccgcgacgccctgccc
tggccgctgcccgacgcgggcggagggtcgtccgacctgcaactcagcggcacccaggcg
atggtgcgcgaccactgggaatcggcgctcggcacgcgggtgacaacgctcgatgccgac
ttcttcgatctcggcggcggctcgctgaccgcggcgcagatggtgtcgttgctgcgccgc
acccacccggaggtgacggtcgccgacatctacgaccacccgcggctggccgatttggcc
caccacctcgacgagatggccgcgcccctgtcgcaactcaacgccaacgtgcggccggtg
ccggtcaagacccaacgcggccaactgctggcgctgctgccgttgcgcaccatcgccggg
ctgcgctggacgatctgggccgcggccggcgccaacctcggcaacgccgccgggctgacc
tggctgccgaccctgtcgtggtggtgggtgctgctcggtgccctgctgctgatcttcacc
ccgggacggctgctgctcaccgccattggcgtgcgggtgattctgggcggtctcgcgccc
ggcagctacccacgcggcgggcgggtgcacctgcggctctggctggccgaacggttcgcc
gacgagatgggggccgagtcgatcgccgccgccgtcctgctgcgctggtacgcccggctg
ctgggcgtcaccgtcgaaccgcacgtcgacctgcacagcgccccgcccgtcaccggcctg
ctgcatctgggcgagggctgttcggtcgaaccagaggtcgacctgaccgggcactggttg
gacggcgaccaactgatcgtcggggccatcacggtgggcaggggtgcccgggtgggtgcg
cgcagcactctggtcgccggtgccgacgtgggcgccggtgccgaggtggcccccggttcg
gcagtgttcggacgggtcggggccggcgagtactggtcgggctcgcccgcggtgaaggtg
cgcgatcaggcacgggggccgtggccgcatcgtccgaacaacaacccggcgtggttggcc
ggctatgcgggcatgggcgtgctgatcgccgccctgccgttgctggccacgctcgccggg
ctggccgtggtgtggccggcgctgcgcggggcggcctcggtgggctcggccctggtggca
gtgctgccctggctgctgcccgccaccctggtgggctacgtcacgctggccctgctgatc
tgggtgctggtgcggttgctcggcatcggcctggtggccgggcatcacccggtgcagtca
cgcatctcgtggcaggcctggtcgacgatccgagtgctcgacgaggcccgcacctggttg
tttccgttgtattcgagcttcgccaccccggcctggctgcgcagcctgggcgccaccatc
ggccacgaggtcgaagcgagcaccacgctgatgattcccaagctggtcaccgtcgccgac
ggggcgtttctggccgacgacaccctgatcggtggctacgagctgggcggcggctggctg
cgcatcgaagaggtgcgcatcggcaagcacgccttcgtcggcaactcgggcatggccgcc
ccgggccgcaaggtgcccaagggtgggctggtcgcggtgttgtcggcggccccggccagg
gcgcgggccaagcgagggacgtcctggatcggctcgccgcccaccaagctgcgccgcacc
gcaggcaacgccgacacctcacgcacctacgcccccaccacggcgctgaagctggcccgg
gccggcgtcgagctgtgccggctgctcgccccgctgaccctggtgacgctcactttggtg
tgcgtcgcggcagtggtggcgttggccggcgtcggttggtggcttgccgcattggcgtcc
ggggtggtgctcgcggtgggcggagtgctggcggcagcgtcggcgtccatcgccaaatgg
gtgctgctgggcaggctgaagccgtcggaccacccgctgtggagctcgctggtgtggcgc
aacgagctggccgacatgttcgtcgaactgctggccgcgccgtggttcgcgcaccccacc
atgggtacgcccgcgctgaacgcgtggtttcgcaccatgggcgccaaggtgggcgagggc
gtgtggtgcgagacctactggttgcccgaggccgacctgatcgacctgcgcgccggcgtg
accgtgaacgccggctgtgtggtgcagacccacctgtttcacgaccgggtgctcagcatg
gacaccgtcaccctgcgggcgggcgcgacactgggccccaacagtgtgattctgcccgcg
gccaccatcggacgacacgctacgatcggcccggtatcgctggtcatgcgcggtgaatcc
gtacctgacaagacccgttggatcggcaatccgatcgccccgtggccggcgtccgagccg
accacggaggaatga
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