Basic Vector Information
- Vector Name:
- pBMPGal4LWL
- Antibiotic Resistance:
- Ampicillin
- Length:
- 11213 bp
- Type:
- InSITE enhancer fusion vector
- Replication origin:
- ori
- Source/Author:
- Gohl DM, Silies MA, Gao XJ, Bhalerao S, Luongo FJ, Lin CC, Potter CJ, Clandinin TR.
- Promoter:
- T3
pBMPGal4LWL vector Map
pBMPGal4LWL vector Sequence
LOCUS 40924_6836 11213 bp DNA circular SYN 17-DEC-2018 DEFINITION InSITE enhancer fusion vector pBMPGal4LWL, complete sequence. ACCESSION . VERSION . KEYWORDS . SOURCE synthetic DNA construct ORGANISM synthetic DNA construct REFERENCE 1 (bases 1 to 11213) AUTHORS Gohl DM, Silies MA, Gao XJ, Bhalerao S, Luongo FJ, Lin CC, Potter CJ, Clandinin TR. TITLE A versatile in vivo system for directed dissection of gene expression patterns JOURNAL Nat. Methods 8 (3), 231-237 (2011) PUBMED 21473015 REFERENCE 2 (bases 1 to 11213) AUTHORS Gohl DM, Silies MA, Gao XJ, Bhalerao S, Luongo FJ, Lin C-C., Potter CJ, Clandinin TR. TITLE Direct Submission JOURNAL Submitted (13-JAN-2011) Neurobiology, Stanford University, 299 W. Campus Dr., Stanford, CA 94305, USA REFERENCE 3 (bases 1 to 11213) TITLE Direct Submission REFERENCE 4 (bases 1 to 11213) AUTHORS . TITLE Direct Submission COMMENT SGRef: number: 1; type: "Journal Article"; journalName: "Nat. Methods"; date: "2011"; volume: "8"; issue: "3"; pages: "231-237" COMMENT SGRef: number: 2; type: "Journal Article"; journalName: "Submitted (13-JAN-2011) Neurobiology, Stanford University, 299 W. Campus Dr., Stanford, CA 94305, USA" COMMENT SGRef: number: 3; type: "Journal Article" FEATURES Location/Qualifiers source 1..11213 /mol_type="other DNA" /organism="synthetic DNA construct" rep_origin complement(3..458) /direction=LEFT /label=f1 ori /note="f1 bacteriophage origin of replication; arrow indicates direction of (+) strand synthesis" primer_bind 600..616 /label=M13 fwd /note="common sequencing primer, one of multiple similar variants" promoter 626..644 /label=T7 promoter /note="promoter for bacteriophage T7 RNA polymerase" protein_bind 689..758 /label=attB /note="attB site for the phi-C31 integrase (Groth et al., 2000)" primer_bind 949..965 /label=KS primer /note="common sequencing primer, one of multiple similar variants" protein_bind 1096..1195 /label=phage phi-C31 attP /note="attachment site of phage phi-C31" regulatory 1276..1382 /label=P transposase promoter /note="P transposase promoter" /regulatory_class="promoter" CDS 1458..4100 /label=GAL4 /note="GAL4 transcriptional activator" 3'UTR 4348..4615 /label=hsp70 3'UTR /note="hsp70 3'UTR" primer_bind complement(4599..4615) /label=SK primer /note="common sequencing primer, one of multiple similar variants" misc_recomb 4633..4666 /label=loxP /note="loxP" protein_bind 4633..4666 /label=loxP /bound_moiety="Cre recombinase" /note="Cre-mediated recombination occurs in the 8-bp core sequence (GCATACAT)." gene 4842..8961 /label=mini-white /note="This modified version of the white gene lacks part of the first intron." protein_bind complement(8967..9000) /label=loxP /note="Cre-mediated recombination occurs in the 8-bp core sequence (ATGTATGC) (Shaw et al., 2021)." promoter complement(9025..9043) /label=T3 promoter /note="promoter for bacteriophage T3 RNA polymerase" primer_bind complement(9064..9080) /label=M13 rev /note="common sequencing primer, one of multiple similar variants" protein_bind 9088..9104 /label=lac operator /bound_moiety="lac repressor encoded by lacI" /note="The lac repressor binds to the lac operator to inhibit transcription in E. coli. This inhibition can be relieved by adding lactose or isopropyl-beta-D-thiogalactopyranoside (IPTG)." promoter complement(9112..9142) /label=lac promoter /note="promoter for the E. coli lac operon" protein_bind complement(9157..9178) /label=CAP binding site /note="CAP binding activates transcription in the presence of cAMP." rep_origin complement(9466..10054) /direction=LEFT /label=ori /note="high-copy-number ColE1/pMB1/pBR322/pUC origin of replication" CDS complement(10228..11085) /label=AmpR /note="beta-lactamase" promoter complement(11086..11190) /label=AmpR promoter
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