Entry |
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Name |
(RefSeq) nuclear elongation and deformation protein 1
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KO |
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Organism |
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Pathway |
fgr01110 | Biosynthesis of secondary metabolites |
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Module |
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Brite |
KEGG Orthology (KO) [BR:fgr00001]
09100 Metabolism
09103 Lipid metabolism
00561 Glycerolipid metabolism
FGSG_00866
00564 Glycerophospholipid metabolism
FGSG_00866
09180 Brite Hierarchies
09181 Protein families: metabolism
01009 Protein phosphatases and associated proteins [BR:fgr01009]
FGSG_00866
Enzymes [BR:fgr01000]
3. Hydrolases
3.1 Acting on ester bonds
3.1.3 Phosphoric-monoester hydrolases
3.1.3.4 phosphatidate phosphatase
FGSG_00866
Protein phosphatases and associated proteins [BR:fgr01009]
HAD phosphatases
Other HAD phosphatases
FGSG_00866
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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 |
1:complement(2833940..2836343)
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AA seq |
784 aa
MQYVRGLSESVSTAWNSINPATLSGAIDVIVVEHEDGSLVCSPFHVRFGKFSLLRPSDKK
VEFKVNGVKQSYSMKLGEGGEAFFVFETTDRIPQSLQTSPLVSPASSPASSPPLNAEQSD
SGLQEPEAFELDASESKPRRPPPAALYKKENDDGLITPLSTSPELPSVRPVSGDWSAKIT
RPHSDDVLRPSARSRGLDGNSSADDEEHFASERSASPPPLSAGEALQRARTLSKGLSAAS
IPTKVTDSGDLMLDMTGFKGNEEDILRAEILARQILSEELDGNYDIGALFGFDEQGNLWI
YSSEEAKQAAMNKTIEASLQSHRRSTAADAISDPGYQSDSSDATASPMPLHRRTESDAGP
MDLQTPPRTPPGSTRHSGDPNRNYAKTLRLTSQQLKDLELKPGANSMAFTVNRATCKANM
YLWRHETPVVISDIDGTITKSDALGHVLNMIGRDWTHSGVAKLYSDISANGYNIMYLTSR
SVGQSDTTRAYLAGIVQEGYKMPPGPTILSPDRTMAALRREVYLRKPHIFKMATLRDIRN
LYGPDRTPFYAGYGNRLTDQISYRTVDVPRNRIFTINSNSEVSLDLLTLNKLKMSYVNIN
EVVDHYFPPVSTLVKGGGEEYTDFTYWRDDPLAVADFSASESDDGDDDEEDDNGPGAPTS
EYGDDEEEYDDEDVEIDEDVDEIGEGLADSYISRASMDEFAEASSVLGGSVDEEKLKASM
TRDLKETYDEDDEDDIYEDGQEGHNEEGEDASTATPLGMKKAAELKEDVLAQHITGVGHL
SIEK |
NT seq |
2355 nt +upstreamnt +downstreamnt
atgcaatacgtacgaggtctcagcgagtccgtctcgacagcatggaattcaatcaacccc
gcgactcttagcggcgctattgatgtcattgtcgtcgaacacgaagatggctctttagtc
tgctctccgttccacgtccgattcggaaagttctctctcctgcggccttctgacaagaag
gtcgaattcaaggtcaatggtgtcaagcaaagttattccatgaagctcggtgaaggtggc
gaggccttcttcgttttcgagaccacagacaggatcccacagtcgttacagacatcacct
cttgtttcgcctgcttctagtcctgcaagcagtccaccactcaatgccgaacagtctgat
tctggtctgcaggaaccagaggcttttgaactggacgcttctgagtccaagccccgacgg
ccgccccctgctgctctctataagaaagagaacgatgacggcctgatcacacctctgtcg
acctcccctgaactgcccagcgtccgccctgtgtccggcgactggtctgcaaaaataaca
cgaccacacagcgatgatgttcttcgaccaagcgcccgaagccgaggcctggacggcaac
agctctgctgacgatgaagaacattttgcttctgagagatctgccagtcctccaccccta
tccgccggcgaagcgcttcaacgtgccaggactttgtctaaaggactgtctgcggcaagc
atccccaccaaggtcactgacagtggcgatctgatgctggatatgaccgggttcaagggt
aacgaagaggacatcctccgtgctgaaattctggctcgccagatcctttctgaggaattg
gatggaaactatgacattggcgcgcttttcgggtttgatgagcaaggaaacttgtggatc
tacagcagcgaggaggccaagcaagctgccatgaacaagaccattgaggcttctctacag
tcgcaccgccgctctactgccgcagatgctatctcggaccctggataccaaagcgacagc
agtgatgcaaccgcttcgcccatgcctctgcatcgacgtactgagtccgatgctggtccc
atggacttgcaaaccccgcctcgcacgccgccaggctctacacgccattcaggtgatcct
aacaggaactatgcgaaaaccttgcggttgactagtcagcagctcaaggatctcgagttg
aagccaggcgcgaactcgatggcattcactgtcaaccgagctacctgcaaagccaacatg
tatctttggagacacgagacacccgtcgtcatttctgatatcgacggcactattaccaag
tcggatgctcttggccatgtgttgaacatgatcggccgtgactggacacactcaggcgtt
gccaagctgtacagcgatatctccgccaacggctacaacatcatgtatttgaccagtcga
tccgtcgggcaatcagatacaaccagagcatacctagcgggtattgtgcaagagggttac
aaaatgcctcctggcccgacaattctgtccccagaccgaacaatggctgctttaaggcga
gaggtctatctccgcaagccacatatcttcaagatggctactctccgagatatcagaaac
ctgtacggccccgaccgtaccccattctacgctggttacggaaaccgattgaccgatcaa
atttcttaccggaccgtcgatgtcccgcgaaaccgcatcttcaccatcaattccaactcc
gaagtatctttggatctcttgactcttaacaagctcaagatgagctacgtgaacatcaac
gaagtcgttgaccactacttccctcctgtaagcacgctggtaaaaggtggcggcgaggag
tacactgatttcacgtactggagagacgaccctctcgccgtagccgacttttcggcaagc
gagagtgacgatggggatgacgatgaggaggacgacaacggtccaggagcacccaccagc
gagtatggagatgacgaagaagaatacgacgacgaagacgtggaaattgacgaagatgtc
gatgagattggcgaaggactcgccgacagctatatttcccgcgcatccatggacgaattt
gccgaagcctccagtgtgttgggtggcagcgtcgatgaggagaaactgaaagcgtctatg
acacgtgatctgaaagaaacttacgacgaggacgacgaagacgatatctacgaagatggc
caagaaggtcacaacgaggagggtgaggatgcatccaccgctaccccacttggaatgaag
aaggcagccgaacttaaggaggacgttctcgcccagcacatcacaggggttggtcatctc
tccatcgagaaatga |