Als2 (D. melanogaster ) in pDONR223 (Gateway donor/master vector)

Explanation of Terms

Gene:
Gene Symbol: 
Gene Name: 
Original Clone ID:
4301
Keyword:
None
Species:
Drosophila melanogaster
Type:
cDNA
Vector Name:
pDONR223
Format: 
FUSION
Source:
The FlyBi Consortium: BDGP/Celniker, CCSB/Vidal, DRSC/Perrimon
Description:
None
Comments:
None
Mutation / Discrepancy:
No / No
Publications:
None
Authors:
The FlyBi Consortium: BDGP/Celniker, CCSB/Vidal, DRSC/Perrimon
DmCD00770049
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AVAILABLE
No restriction
Special MTA: None
Insert sequence: 4458nts
Open reading frame: 1 to 4458

ATGGCCAGTGCAGCGGATGACTCGGCACTTGGGGGTCAGGAGGAGCGGGAGTCCTTCACC
ATCTATCATGAAGGCAGGGAGCTACAGCTTCACTGGCGCGGATTGCCGCCCCTGCAGCGG
TTTCCCGCATCCCGGATTTGCAGCAATGCCGGCGGGGAACTGCTCCTTCTGACCACTGAC
CACGCCCTCTACTCCGCCAAGCTGCAGGCCAACCGCGAACACATGGATCTTCAACTCCTG
CGTACCGATGTTGTGGATATGGACTTCTGCTCCGGCAGTCAGGAACTATTCGTAGTCCTC
ACCAATGGCTCTGTGCAGCGCCAAGCCACGGGATCTGGCCGGGATGTGGGTCATCCACAT
GCGTGGCAAACCCTCGGTTTCGACCCTCTCGAATTGCATGCTGAGGGCGTACGCATCCGA
CGGGTTTGCTGCTCCGCCCAGGGCGTTGTCTTCGTCGGCGCTAGTGGGGAGACCTATGTC
ATGGGCAGCTGCGGCGAAGTCTTCAAGGCAGAACAACAGCCTCGGCACATGCGCCTTTAC
GAAGAGGGCAAGGAACTGTTGGACTTAGCAGCCGGAAACGAGCACTTTGTGATGTTAGTA
GCTCCCTACAACCTGGCCGACGATGCACTCCAGCTGTCGGTGGCCAGTGCGAAGGAAGAA
CCCGAGGATGAACGGGCCTCTGTAAAATCCATAAGCAGTGGCCACTCGGAGCGCAGCGTT
GCGGCTAACACAAGGCACCTTCTTCACCAAGGATACGCTCTGCTCCACACCCAACTTTTC
ACATTCGGAGCCTCCAATAATGGTCTCCTGGGCAGTGGGGATCATATCCGGAGGGCCAAT
GTGATGCGCTTGCAGAAACTAGACAGCATGGGCGTGTGCAGCATTGCAGCTGGATTAGAG
CACACGGTGGCCCGCACTCTGGACGGAAGGCTCTACCACTGGGGCCTGAACAACCACTCT
CAGTTGGGTGAAGATGTCAGCTCGCCCATGGAGATCACAATTACGGAAAACACGGCAGCA
CTACCCATAGAACAAAACTCGGCGCTTGAGGCGACTTGCGGCGACTACCATACACTACTG
CTCAATGCCTCGGGTCAAATACATTCCCTTCAACCTGCGCCTCCAATGCGACATCTGCAG
CAGTCCAGCACATACGCGCAGACGCTTCTCCAGCTTCAGTTGGGAGCAGCGTGGCCCAGA
CAACTACGTTTGCTTATGTGTTCTGGCGGATACACACTTCAAAACCAAAGGCAGTTCCAG
CGGCAGTATCACTACTATCTGAGTCATCTGCAGTCACAGTTACAACTGCTTCTCAAGCAT
CGACAGGCAGTCCAAACACTCGAAATCTGGCAAAGACAGTCGGCACTGGAGCCGCTCAGC
GCCCTCGGTCCCTTGCTGATCAACTGGGAGAGAATACTGTGCCTGCTAGTGGCCACTTTG
CATTCGCTAGAGGGATTCTACCGAGCGGACTTTGTGCAGCCTGCCGACCTGTTGTTTATC
TGTCATTACAAAGAGTACATCGATCTGTTTGACGGCTACACAAAGGCCTATTGCGATGTG
TTCTCGGTCAATGGATTTGGAGAGGCGGTGGTCGCCATTACTGGACTCAGCAGCCCGCTG
GCCGAGCTCAACGAGGAGAGCTACGTCACTCGGTTGTTCCAGCAACCCTTCAGTATCTAC
CAGCTGTTTGTCCAGTTTATGGAGCTGCTGGTGAGGACGCAATCTGAGTACGGAGAGCAT
AGGGTGGCCTGGTCGGAGTTCGCGCGGCACAGCTGCATCAGCCAGGAGCTCGCCGTGAAT
ACCAAGGATTTCTGGAGCAGCAACGATAGAAACCCGAGGATTGTGCAGTTCAGAGGACGT
CACAGAAGGGTTATTTTGACGTCGGCTTTGGTTCCATTGAAACTAGTCACTTCTGGTATC
AGCAGGTCAAGCAACAGTTTCATTCTCTTTTCGGACTTCCTCTGCCAGGTAAGCGGCAAC
TCGCTGTACTCGTATCCCTTAACTACCCTGTGGGTGTGGACCGAAGGCGACAGCCTGCGC
TTGACCACGCCGGAAAAATCCTTTCTGGTAAGCACCCGTTCGCAGGAGATGCGCAAGGTG
TGGCTGGACCAGTTGCAATCGAGCATTATAGCGTCCTTGGGCAAACCTCTCGGAAGTCCT
GTGCCCAGCTATCGCTCCACGGGGTACGAGTTTAGTCGGGAACACCCAAAGTTCTCCAGG
GTGAAAGCGTGCGGTACCTGGAGAAAGGGCGTTCTCCACGGAAATTGCTACCTTGAGTAT
CCAGACGGAAGTGTATACTGCGGAGAGCTGCAACACGGGATCATTGAAGGTTTCGGCAAA
ATGGTGATTCCGACAACGGGGCTGTATGTAGGTAACTTTAAAGGTGGCCGGTTCCACGGC
CACGGTGTTTACGAAATGCACTGTAAGGATTCCCCCGAGAGCGAAGTCTACGAAGGAAAT
TTTTGCGAGGGCCTGTTTCACGGCCATGGAGTGATGCGGAACAACCGATACATCTACGTG
GGCGAGTACCAGGCCAATGCACGCAGTGGATACGGAGTGATAGAGGATCTGGTTAGCGGG
GACAAGTACATGGGCATGTTTGCGGATAACAAGCGATCTGGAATCGGCAGCTGCATCACC
AACCGCGGCGACTACTTCGAGGGCAGCTTCTCCGGAGACGATCTCACAGGCAGTGGGGTT
GCTGTCTTCGAGAACGACTATTACTACGAGGGCGAACTCACGCTCCTCGGCCCAAACGGA
CGGGGGGAATACTACATGCCCAGTGGAGATGCCTGTGGAGGAAGCGGTGCCATGGGGACC
GGGGAGTTCGACGACACTTGCGAGCTTATTGGGAACAAAATGTTTGGACAGCTTAGTGGT
ACTTGGGACACGGTGCGGATACAGGCCGGTGAACTGGTACTAAATCGGCGCTTTCCTAAG
TACCCCAGCTCCCTTGGGCGCCAAGTGGTAGATCACAATCGCAAGTGGCGATCATTGTTT
AACAACTTTGAATCGGACCTTGCCAATTGCACGGCAAGCACTAGCAGCTCTGGAGGCAAT
CAATCAGCTGGCACCCTCAGAAAATCCTCGAAACCCACTTTGAGCACGGCCCAAATCTGG
AACTGCATAGCGGTGTACATGAGCAAACAGCGGGCTCGGGAAGGAACAAAGCCTGGCAAC
TACTTTAACAACATCCTGCTCAGTCTGCCGCTGCCGCAAAAAACATCATCCCCACTGGCA
AAGGCCCGCACCACCACCAGCGCACTGAGCAAGCTGCAAACGGAGGCTGCATCGGCGCTG
GACTTCTTGGGATTTCCACCGCGACGAATCCAATCCCAAGAGGCACTGAACAGCAAGCCA
GGCGGATTGCAGAGAGCGGATAGCTTAATCTCTATGGGCCACAATACATCTCGTGACTTG
GACAACAGTAGTCTGGCTAGTTTCCAATTGGACCAAAGCCTCATGAACAGCACTGTCAAC
GGCGATGAATCCAGCACGTTCAATGAAAGCTTTTCGAAACTAAGTCACAACAACAATAAC
AGCATTTCGAAGCACATGAACAACATCGATTGCTCGATAACATCAACAACGTCTACAACG
AGTGCAGTGCTGGACCAGGTACCCAGTTTTGGAATGGCTTTGGTGCTTACCGAGCAAGAT
GTGACCTCCATACGTTTGTACCTGGAGCAGGCTTTTAAGGATCGCCATCACCCGCTGTAC
GTGCTGAATGAGCGCATTGCCAACTGTTTCCACTACTCATATGGCTATTGGAAAGTTAAA
CCCACCCCGATTTTGGCCAAGCAAGCCATGAGAGAGTGGGAGTCCATATCGCGTCGCATT
TACCGCTTTGTGCGGAAGATGTTTCCAGCGTTGCCCGAGGAACTTTGCCAGATGGAGGGC
AGCAGGGAAGTCATATCGCATATTACCCTATTATACCCACTCGTGCTATCAGAGGGCATC
TACTCCACTTTGTTTGTGCTGTATGCAAATAAGTACAGTCGAAAGGACGAAATGTATCGG
CAGAATCTGAATCTTGCCGAGAAACTAAAGGACCAAGAGCTTGTTGAACTTATGGGTCAT
GAAAGTTTTCTGCACAATGTAATGTTGGACCCCAAGTTTGTGGAGTCCGTGCAGACGTTA
AAGGAACTGCAGGAGAAGTTTAGTCCACAGGACATGTTGACTGTGATACAGCGGAGCACG
CAGCTACTAACTGAGGCCTACGAACACGCCATGGCAGCTAATGCCGCCCAGCTCAATGCG
GACAACATGATACCGCTCACCATGCTCACGATGCTGCGCGCTGCTGTTCCCCACTTGGGT
GCGGAGCTGGCCTTATTGGACGATCTGACCGGTGGCCCCAATTTCCAAGCCGAGATGAAT
GGAATGGCGGGCTACTGCTACACTACACTGAAGGCCGCATATGAGCACGTGACGTCGAGA
GCTCTGCAAAAAATCCCC

Protein sequence predicted based on nucleotide sequence

MASAADDSALGGQEERESFTIYHEGRELQLHWRGLPPLQRFPASRICSNAGGELLLLTTD
HALYSAKLQANREHMDLQLLRTDVVDMDFCSGSQELFVVLTNGSVQRQATGSGRDVGHPH
AWQTLGFDPLELHAEGVRIRRVCCSAQGVVFVGASGETYVMGSCGEVFKAEQQPRHMRLY
EEGKELLDLAAGNEHFVMLVAPYNLADDALQLSVASAKEEPEDERASVKSISSGHSERSV
AANTRHLLHQGYALLHTQLFTFGASNNGLLGSGDHIRRANVMRLQKLDSMGVCSIAAGLE
HTVARTLDGRLYHWGLNNHSQLGEDVSSPMEITITENTAALPIEQNSALEATCGDYHTLL
LNASGQIHSLQPAPPMRHLQQSSTYAQTLLQLQLGAAWPRQLRLLMCSGGYTLQNQRQFQ
RQYHYYLSHLQSQLQLLLKHRQAVQTLEIWQRQSALEPLSALGPLLINWERILCLLVATL
HSLEGFYRADFVQPADLLFICHYKEYIDLFDGYTKAYCDVFSVNGFGEAVVAITGLSSPL
AELNEESYVTRLFQQPFSIYQLFVQFMELLVRTQSEYGEHRVAWSEFARHSCISQELAVN
TKDFWSSNDRNPRIVQFRGRHRRVILTSALVPLKLVTSGISRSSNSFILFSDFLCQVSGN
SLYSYPLTTLWVWTEGDSLRLTTPEKSFLVSTRSQEMRKVWLDQLQSSIIASLGKPLGSP
VPSYRSTGYEFSREHPKFSRVKACGTWRKGVLHGNCYLEYPDGSVYCGELQHGIIEGFGK
MVIPTTGLYVGNFKGGRFHGHGVYEMHCKDSPESEVYEGNFCEGLFHGHGVMRNNRYIYV
GEYQANARSGYGVIEDLVSGDKYMGMFADNKRSGIGSCITNRGDYFEGSFSGDDLTGSGV
AVFENDYYYEGELTLLGPNGRGEYYMPSGDACGGSGAMGTGEFDDTCELIGNKMFGQLSG
TWDTVRIQAGELVLNRRFPKYPSSLGRQVVDHNRKWRSLFNNFESDLANCTASTSSSGGN
QSAGTLRKSSKPTLSTAQIWNCIAVYMSKQRAREGTKPGNYFNNILLSLPLPQKTSSPLA
KARTTTSALSKLQTEAASALDFLGFPPRRIQSQEALNSKPGGLQRADSLISMGHNTSRDL
DNSSLASFQLDQSLMNSTVNGDESSTFNESFSKLSHNNNNSISKHMNNIDCSITSTTSTT
SAVLDQVPSFGMALVLTEQDVTSIRLYLEQAFKDRHHPLYVLNERIANCFHYSYGYWKVK
PTPILAKQAMREWESISRRIYRFVRKMFPALPEELCQMEGSREVISHITLLYPLVLSEGI
YSTLFVLYANKYSRKDEMYRQNLNLAEKLKDQELVELMGHESFLHNVMLDPKFVESVQTL
KELQEKFSPQDMLTVIQRSTQLLTEAYEHAMAANAAQLNADNMIPLTMLTMLRAAVPHLG
AELALLDDLTGGPNFQAEMNGMAGYCYTTLKAAYEHVTSRALQKIP

Coding Sequence Details

Insert Sequence Verified?:
Y
Verification Method:
NGS Verification
Mutations:
None
Discrepancy:
None
5' Linker Sequence:
None
3' Linker Sequence:
None

Recommended Growth Condition:

Distributed in bacterial strain:
DH5-alpha T1 phage resistant
Antibiotic Selection:
Host Type:  bacterial    Marker:  spectinomycin
Bacterial Selection Condition: 100 ug/mL spectinomycin
Growth Condition: Growth at 37 degrees C in LB supplemented with 100 ug/mL spectinomycin.
Comments: None
Protein Expression Results:
None
Recommended expression in:
Not Applicable