Lucilia cuprina (Australian sheep blowfly): 111678523
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Entry
111678523 CDS
T06013
Name
(RefSeq) cytosolic non-specific dipeptidase-like
KO
K08660
cytosolic nonspecific dipeptidase [EC:
3.4.13.18
]
Organism
lcq
Lucilia cuprina (Australian sheep blowfly)
Pathway
lcq00330
Arginine and proline metabolism
lcq00340
Histidine metabolism
lcq00410
beta-Alanine metabolism
lcq01100
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:
lcq00001
]
09100 Metabolism
09105 Amino acid metabolism
00330 Arginine and proline metabolism
111678523
00340 Histidine metabolism
111678523
09106 Metabolism of other amino acids
00410 beta-Alanine metabolism
111678523
09180 Brite Hierarchies
09181 Protein families: metabolism
01002 Peptidases and inhibitors [BR:
lcq01002
]
111678523
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
lcq04147
]
111678523
Enzymes [BR:
lcq01000
]
3. Hydrolases
3.4 Acting on peptide bonds (peptidases)
3.4.13 Dipeptidases
3.4.13.18 cytosol nonspecific dipeptidase
111678523
Peptidases and inhibitors [BR:
lcq01002
]
Metallo peptidases
Family M20
111678523
Exosome [BR:
lcq04147
]
Exosomal proteins
Exosomal proteins of breast milk
111678523
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Peptidase_M20
M20_dimer
Peptidase_M28
Motif
Other DBs
NCBI-GeneID:
111678523
NCBI-ProteinID:
XP_046809404
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Position
6:complement(60833390..60840405)
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AA seq
479 aa
AA seq
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MSDLPSDLVQLFKFVDDNKSKYIDVLRTAVGIQSVSAWPEKRGEIDRMVRWTEDKLKALG
AETKLVDIGEETLHSGEKIPLPKVLLGTLGKDPKKKTVVVYGHLDVQPALKDDGWATEPF
ELTEKDGKLYGRGASDDKGPVLCWIHAIEAYQKLNIDIPVNVKFVFEGMEESGSLGLDDL
LMSLKDNFLADVDYVCISDNYWLGKTRPCLTYGLRGLVYYTVEVECAQKDLHSGVFGGTV
HEAMPDLCWLLSTLVDKETKIQIPGIERDIAPLLHNEHEIYEKIDYEVEDYKKDIGAQAL
PHKENKTQLLMHRWRYPSLSIHGIEGAFSEAGAKTVIPAKVIGKFSMRLVPNQDPDHITE
CVTKYLNEKWAERGSPNKMSVKLLSAGKPWTEDPNHPHYEAAKQAIKHVFKVEPDMTREG
GSIPVTLTLQEATGKNCILVPVGACDDGAHSQNEKIDIYNYVEGTKLLGAYLYEVGKLN
NT seq
1440 nt
NT seq
+upstream
nt +downstream
nt
atgtctgatttacccagtgatcttgtccagttattcaaatttgttgatgataacaaatcg
aaatacattgatgtcctcagaacagctgtaggcatacaatccgtttcagcatggccagaa
aaacgtggtgaaattgatcgtatggtacgctggactgaagataaattaaaggccttggga
gctgaaaccaaattggtggatattggtgaagaaactctacacagtggtgaaaaaatacca
ttacccaaagttttgttgggcacattaggaaaggatcccaagaagaagaccgttgttgtc
tatggtcacttggatgttcaacctgctcttaaagatgatggttgggctactgaacctttc
gaattgaccgaaaaagatggtaaactttatggtcgtggtgctagtgatgacaaaggtccc
gttttatgctggattcatgccatcgaggcctatcaaaagttaaacattgatataccagtg
aatgttaaatttgtttttgagggcatggaagaaagtggcagtttgggtttggatgatctt
cttatgagtttgaaagataacttcctggctgatgttgattacgtttgcatttccgataac
tattggttgggcaaaactagaccttgtcttacttatggtctacgtggtttagtctactat
actgtggaggttgaatgtgcccaaaaggatttgcatagtggcgtgtttggtggtactgtt
cacgaagctatgcccgatttgtgctggttgctaagcactttggtggataaggagactaaa
attcaaatacctggaattgaaagagacattgccccattgctacacaatgaacatgaaatt
tacgaaaaaattgattatgaagttgaagattacaaaaaagatatcggtgcccaagctttg
ccccacaaagaaaacaaaacccaattgttgatgcacagatggcgttatccctctttgtcc
attcacggcattgaaggtgcgttctctgaggctggtgccaagactgttatacccgccaaa
gttattggtaaattctcaatgcgtttagtgcccaatcaagatcccgatcacatcaccgaa
tgcgttaccaagtatttgaatgaaaaatgggccgaacgtggttcacccaataagatgagt
gtaaaattgttgagtgccggtaaaccctggaccgaagatcccaatcacccccattatgaa
gcagccaagcaggccattaagcatgtctttaaagtagaacccgatatgactcgcgagggt
ggttctatcccagtaactttaactttacaagaagccaccggcaagaattgtattctagtg
cctgtaggtgcttgtgatgatggtgctcattctcaaaatgaaaagattgatatttataat
tatgttgaaggcaccaaattgttgggtgcttatttgtatgaagttggtaaattgaattaa
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