Bxb1 attP

protein_bind binding_site

Feature Information

Note
Minimal attP site for the Mycopbacteriophage Bxb1 integrase (Voutev and Mann, 2017)
Type
protein_bind
Category
binding_site

Found in 15 Plasmids

Plasmid Species Position Strand
3SP5 126539 Synthetic 2770..2818 Fwd
pASPIre1 154842 Synthetic 2791..2839 Fwd
pASPIre2 154843 Synthetic 2791..2839 Fwd
pASPIre3 154844 Synthetic 227..275 Fwd
pASPIre4 196656 Synthetic 221..269 Fwd
pMA-Thermal_CTLA-4 199751 Mus musculus 6645..6693 Fwd
pCIFR-2 227663 Synthetic 1001..1049 Fwd
pCIFR-4 227664 Synthetic 1001..1049 Fwd
pCIFR-6 227665 Synthetic 2027..2075 Fwd
pCIFR-8 227666 Synthetic 969..1017 Fwd
MB 94C thsS(t3)R-Bxb1_P7-sfGFP_mCherry 232471 Synthetic 7608..7656 Fwd
MB 103C ttrSR(m13)-Bxb1_P7-sfGFP_mCherry 232475 Synthetic 7592..7640 Fwd
pOP437 85936 Synthetic 5434..5492 Fwd
pOP440 85937 Synthetic 7279..7337 Fwd
pOP447 85938 Synthetic 6253..6311 Fwd

DNA Sequence Variants

Sequence context may differ across plasmids due to position and neighboring features.

DNA Sequence (48 bp)
GGTTTGTCTGGTCAACCACCGCGGTCTCAGTGGTGTACGGTACAAACC
DNA Sequence (48 bp)
GGTTTGTACCGTACACCACTGAGACCGCGGTGGTTGACCAGACAAACC
DNA Sequence (48 bp)
GGTTTGTACCGTACACCACTGAGACCGCGGTGGTTGACCAGACAAACC
DNA Sequence (48 bp)
GGTTTGTACCGTACACCACTGAGACCGCGGTGGTTGACCAGACAAACC
DNA Sequence (48 bp)
GGTTTGTACCGTACACCACTGAGACCGCGGTGGTTGACCAGACAAACC
DNA Sequence (48 bp)
GGTTTGTCTGGTCAACCACCGCGGTCTCAGTGGTGTACGGTACAAACC
DNA Sequence (48 bp)
GGTTTGTCTGGTCAACCACCGCGGTCTCAGTGGTGTACGGTACAAACC
DNA Sequence (48 bp)
GGTTTGTCTGGTCAACCACCGCGGTCTCAGTGGTGTACGGTACAAACC
DNA Sequence (48 bp)
GGTTTGTCTGGTCAACCACCGCGGTCTCAGTGGTGTACGGTACAAACC
DNA Sequence (48 bp)
GGTTTGTCTGGTCAACCACCGCGGTCTCAGTGGTGTACGGTACAAACC
DNA Sequence (48 bp)
GGTTTGTACCGTACACCACTGAGACCGCGGTGGTTGACCAGACAAACC
DNA Sequence (48 bp)
GGTTTGTACCGTACACCACTGAGACCGCGGTGGTTGACCAGACAAACC
DNA Sequence (58 bp)
GTCGTGGTTTGTCTGGTCAACCACCGCGGTCTCAGTGGTGTACGGTACAAACCCCGAC
DNA Sequence (58 bp)
GTCGGGGTTTGTACCGTACACCACTGAGACCGCGGTGGTTGACCAGACAAACCACGAC
DNA Sequence (58 bp)
GTCGGGGTTTGTACCGTACACCACTGAGACCGCGGTGGTTGACCAGACAAACCACGAC