DPGLEAN17167 in OGS1.0

New model in OGS2.0DPOGS202659 
Genomic Positionscaffold1620:+ 21075-34681
See gene structure
CDS Length3771
Paired RNAseq reads  6947
Single RNAseq reads  18237
Migratory profilesQuery via corresponding ESTs
Best Bmobyx hitBGIBMGA000858 (0.0)
Best Drosophila hit  drop dead (8e-67)
Best Human hitND
Best NR hit (blastp)  PREDICTED: similar to conserved hypothetical protein [Nasonia vitripennis] (3e-136)
Best NR hit (blastx)  PREDICTED: similar to conserved hypothetical protein [Nasonia vitripennis] (5e-117)
GeneOntology terms






  
GO:0016021 integral to membrane
GO:0048477 oogenesis
GO:0040003 chitin-based cuticle development
GO:0009651 response to salt stress
GO:0016747 transferase activity, transferring acyl groups other than amino-acyl groups
GO:0007586 digestion
GO:0030421 defecation
GO:0022600 digestive system process
InterPro families  IPR006621 Nose resistant-to-fluoxetine protein, N-terminal
Orthology groupMCL17899

Nucleotide sequence:

ATGGTGTGCCACAGATGGACTTTAGCTCTAATTTTATTCGGCCTTCCTATATTAGCTACA
GTAGGCGCATTCCGCGTGCGCTTACCTGGAAGTGTTTCTGAAGTTAGGCCCGATTTAAAA
AAACACAAATGTGAGAATTGTGATATTGGTGACCTTAACTTTGACCGAGTAGATAGTGTT
AGAAAGAGTGAGAAGATTCCGTACGATAACGTGAAAAGTATTCTTAGTGAAAAACGAGAT
TTGCTTAGTGAGAAGTTAAAAAAAATAAGCCATAAAACCATAAAAACTCAAGATGATCTT
GATGAAACTGAACAGAATAAGGTTATGGGCAAAAATGAACACGATATTTCAGTCCACTTA
AAAAAAGATAAAGAATCGAAAACAAAAGTAAAGAAACCGTCAATAATCTTAGACTTTTCT
GATGACGATGATAGTGATATTAACGAAGACGACGATGACGAGGACGAAGATGACATAAAA
AAAGTAGTGAAAGAAGATTACAAGAAGAAAGTAGATATAGTTCCAAAATTTACACCTAAA
GTAGAGAAATTAGTACAGCTACCAAAATCAAAGGACAAACTGATTGTAATAAATGAAAAA
ATATCTGACAAAAAAGAACCAAGTAAGAATGAACCAACGGCACAAATTCAAGAAGAATCG
TTTAAAGATATCAACATAAAAAATGTTAAAACTGTTGCTAAAGATAATAAAGTAAGCGAT
GACATCGAAAAAAAAAGTAAAAGTAAGGAAAATGATTTAAGCAAAAGAAAAATTGAGATC
AAAATAGAAGAAAAAGATATCGACAAAAATAATGTAAAAAATACTAAAAAGTTGTCAGAA
GATAATACAAGTATAAAACACGGTGACAAAAAACACCTAAGCAGTAAGACTTCACAAAAA
AAGGATGAGTTAATGAATGAGAGTGCTAAAGAGAAAAAAAATGAACAGGCGTCGAAAAAG
CTATCTGATCTCAAAGAAAGTATTCATGAGGAATCTAAAAAAGATAAACCTTTAAAAGTA
GTTGATGCTACAAAAAAAGATATTGTAGATCAGAGTACTTCGAAAGACATTCGTATAATC
TCAGATGCATTACAAAGAAAAAATTTGTTACATAGTGAGTTTGAAGACTTCTATTCCTTC
TTACCTACTTTTGCACCAAATTTTACACGAATACACAATCCAGAATGTCGACGTCATGGA
CAAATACTTTTAAGACAGCTACGTGGAAGTAAGCTTTGGGCTTTAAAGATGCTAGATGCT
ACAGCAAAGTTTCCCTCGGGGTTTCTTCAAGGGAACGGAATCCAGTTGGGTGATTTTGAC
CAGTGTTTGGGGGTACGAGCAAGAGTACAACTGGACACTGGCAGCGTTGTTAGACTACAA
GGAAAATATTGTCTAGCCATGATCGATGTCAAAGCTGAACACCCAGAACTTGAAATACCA
GTTCATTTGGCACAGGGCAAGAATTTGTTTAAAAGTCGCATTGATGATCCAGGTCACTTC
GTGCCTAGGTTTTCAACCTTGAGTTGGGGAGTGTGCATACCATCGGCTTGTACTTCAGAA
GATGTGGAGGTGGTTCTCAGAGATGCTGTTAAACATTATCAATACAAGACTGGTATTAGT
ACCCGGATCAGGGTCGATGAACATGATTGTTTTACCAGGAAAGGTAGTAATTGGTGGAAG
GAATGGATAGAGTTACCGACTGTTGTAACTTTATCCTTGTACGCGTTGGTTATCCTGATA
GTATTGATAGCGACAGTCCAAGATATGTCTGCTAGAAATGATTCTAACCACGAGGAACAT
GAAGAGGAGAATAAACAGATGAAAAAGCAAGAGACCAAAACCAGTTCAGGTGGCTTCCTG
AGCTGTTTTTCTTTGTACCATACGCTGAATAAGCTTATAGCACCAGCAAGCGAGGATGAG
ATAGCTTGCATCCATGGCATCCGAGCTGTTGTAACTGTGGCACTCATAGTCGCTCATAAG
TTCCTACCGATGGCTTTAACACCGTACACAAACCGGATACGTTTGAGTGAGATCTTAAGC
TCCTCTTTGTTGTCCTGGTGCAGAGCTGGTTGGATCTTCACAGATTGTTTCCTCCTGATA
AGTGGTACTCTCACTTCATATAGGAAGTCTCCAAGTGATAATGTCGCAACAAAATTATTA
ACGCCGGCTCTTTTAGCAATAGTTTTGTTTTATGCTTATGTTTGGGATAATATATCCTCC
GGTCCCATGTGGGGGACTCTCGTTTGGAAAAATTCTCAGCTGTGTCGCGATGGTTGGTGG
TGGAATATACTATACGTGCAGAACTACTTTGGATTTGAAGATATGTGTGCTCCTCAAACC
CACCACATGGCTATGGATTTTCAACTGACGATCGTAGGAAGTATAATTGTGTGGATGATC
CAATCTGAGGTTCCATTTGCTGGGTCCTTGCTGCCAACGTTACATATACTGTCTGCATAC
TCCAGATACACGACTGTACGGGATCATCGATTGACACTCTTGGCATATCAAGGTGTCAGT
GTCAGCCAACTATACAGGACAGGTCGATTGAGCTACACGTCTATTTATCATCGATGCTCG
CCCTACTTGATCGGACTAAGCTTAGGGCTTTATCTTAGAAACCGCTCACGTCTCACTAAG
CCCTTAGTATACTTAGGTTGGTTCATCTGTGGCACTTTATGGGGGGCAATATTTTGGGCG
GGCTATGATTCCGGATACCTTGATTACCGGTATGACCTCACATACGCCGCGCAATATGCA
ACGCTTGCACCCATCGCCGCTGCGTTAGCCTTTGCCTGGATAATCTATGCTGCTCAAAAT
GGACACTCTGAAACTCTATCTCGAATGCTTTCCGGTCGTCCACTTCTATTTATTAGTAGA
ATATCATATGCGCTTTATCTTGTACAATTTGTTGTCTACCTTACAAACACCGCCTCTATT
AAGGCTTCAAGGGAGTTTTCTCTTACATCGCTAATTGATCTTCAAGAGATCGTTACTATT
CTAGTATCTTCCATAATTCTCACCGTGACCTTGGTACTTCCACTGCAGTCGCTACCAAAG
TTATTTGAAGCTCCAACAATCGATAACTTGGAAAATAACGATAATAAGGATGTTTCGGAA
TATAACAATTTGCAAGAAAAGCTAGAATCGAAATATAAAACAGATGAGAAGGAATTAATT
TCAGAATCTCATCAACCAAGGCGATCATTTTTAGCTCATCGAGAAGTTTTGGAAGAAATA
CCAGAAGTCGAAGTAGAATATGAGGTACAAAGAGATTCACATGACGGTTTAGAAGAAATT
TTAGAAGAAGAAGATGACGAAATGATGGATCGAGAAGAAGATGATTTAGAAATTATTGAG
GAAGAACAAGGAGGTGAAGAAGATTTTTGGGCAGACAGGGAAGAATATTCATCAAGTTAT
TTAAGAAATGGCGATCAAGAAGTTGACGAGTGGGAGTGGACTGCAAATGCTCAAAACATA
GGTTTAGATAAAGATTTTATTGAGAAATTGTCTGGTTCATTGCAAGAATTTAGGGAAGGG
AAGAAAATTGATTCTGGTTACAACGTGTATGAAGATGGAAAGGGGGATTCGTCTAGAGTC
AATCTCATTGCTGAATCTCCTGATTACGCCTCCTCGGTGGTACTGGCTAGTGACTTACTA
TCCCTAACTAGTGCTGTGGCAAATGTAAAAGAAAAAGTTTGCAGAGAACAGGGCTACCGG
TTCCTCGATGGACTTCTGCTGAACAAGAGATGGGCTTTAAAAAGTAAGTAA

Protein sequence:

MVCHRWTLALILFGLPILATVGAFRVRLPGSVSEVRPDLKKHKCENCDIGDLNFDRVDSV
RKSEKIPYDNVKSILSEKRDLLSEKLKKISHKTIKTQDDLDETEQNKVMGKNEHDISVHL
KKDKESKTKVKKPSIILDFSDDDDSDINEDDDDEDEDDIKKVVKEDYKKKVDIVPKFTPK
VEKLVQLPKSKDKLIVINEKISDKKEPSKNEPTAQIQEESFKDINIKNVKTVAKDNKVSD
DIEKKSKSKENDLSKRKIEIKIEEKDIDKNNVKNTKKLSEDNTSIKHGDKKHLSSKTSQK
KDELMNESAKEKKNEQASKKLSDLKESIHEESKKDKPLKVVDATKKDIVDQSTSKDIRII
SDALQRKNLLHSEFEDFYSFLPTFAPNFTRIHNPECRRHGQILLRQLRGSKLWALKMLDA
TAKFPSGFLQGNGIQLGDFDQCLGVRARVQLDTGSVVRLQGKYCLAMIDVKAEHPELEIP
VHLAQGKNLFKSRIDDPGHFVPRFSTLSWGVCIPSACTSEDVEVVLRDAVKHYQYKTGIS
TRIRVDEHDCFTRKGSNWWKEWIELPTVVTLSLYALVILIVLIATVQDMSARNDSNHEEH
EEENKQMKKQETKTSSGGFLSCFSLYHTLNKLIAPASEDEIACIHGIRAVVTVALIVAHK
FLPMALTPYTNRIRLSEILSSSLLSWCRAGWIFTDCFLLISGTLTSYRKSPSDNVATKLL
TPALLAIVLFYAYVWDNISSGPMWGTLVWKNSQLCRDGWWWNILYVQNYFGFEDMCAPQT
HHMAMDFQLTIVGSIIVWMIQSEVPFAGSLLPTLHILSAYSRYTTVRDHRLTLLAYQGVS
VSQLYRTGRLSYTSIYHRCSPYLIGLSLGLYLRNRSRLTKPLVYLGWFICGTLWGAIFWA
GYDSGYLDYRYDLTYAAQYATLAPIAAALAFAWIIYAAQNGHSETLSRMLSGRPLLFISR
ISYALYLVQFVVYLTNTASIKASREFSLTSLIDLQEIVTILVSSIILTVTLVLPLQSLPK
LFEAPTIDNLENNDNKDVSEYNNLQEKLESKYKTDEKELISESHQPRRSFLAHREVLEEI
PEVEVEYEVQRDSHDGLEEILEEEDDEMMDREEDDLEIIEEEQGGEEDFWADREEYSSSY
LRNGDQEVDEWEWTANAQNIGLDKDFIEKLSGSLQEFREGKKIDSGYNVYEDGKGDSSRV
NLIAESPDYASSVVLASDLLSLTSAVANVKEKVCREQGYRFLDGLLLNKRWALKSK