lac operator

protein_bind binding_site

Feature Information

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).
Type
protein_bind
Category
binding_site

Found in 13,134 Plasmids (showing 7251–7300)

Plasmid Species Position Strand
pCon-IIAl_Con-IIAr 192215 Synthetic 861..878 Fwd
pX1-IFl_Con-IFr 192216 Synthetic 772..789 Fwd
pX2-IFl_Con-IFr 192217 Synthetic 778..795 Fwd
etnppl-pGEMtEasy 192263 Mus musculus 4500..4517 Fwd
pCas-pML-1B_6xHis-Cas12m 192282 Synthetic 6110..6135 Fwd
pDEST_6xUAS:mNeonGreen-Rab5a 192355 Danio rerio 2620..2637 Fwd
pDEST_6xUAS:miRFP670-cetn4 192357 Danio rerio 2500..2517 Fwd
pYZ959 192603 Saccharomyces cerevisiae 38..55 Fwd
pET 28 full-length human PARP1 192635 Homo sapiens 3311..3336 Fwd
pLN-AIDA-Tyr1 192831 Synthetic 1427..1444 Fwd
pLN-AIDA-Tyr1 192831 Synthetic 1450..1467 Fwd
pET28-6xhis-sumo-CeMIGA(106-496) 192832 Caenorhabditis elegans 1002..1027 Fwd
pET29-hMIGA2(170-593)-6xhis 192834 Homo sapiens 5019..5044 Fwd
pET29-hMIGA2(306-593)-6xhis 192837 Homo sapiens 5004..5029 Fwd
pBS-iNOS 19295 Mus musculus 74..91 Fwd
pJLG038 192981 Escherichia coli 3667..3684 Fwd
ZfSp5a-377 192997 Danio rerio 1573..1590 Fwd
ZfSp5l1 192999 Danio rerio 1538..1555 Fwd
pCA528 CAPN7 (1-75) 193031 Homo sapiens 4998..5023 Fwd
pCA528 CAPN7 (81-165) 193032 Homo sapiens 4998..5023 Fwd
pCA528 CAPN7 L61D (1-165) 193033 Homo sapiens 4998..5023 Fwd
pCA528 CAPN7 V18D,F98D (1-165) 193034 Homo sapiens 4998..5023 Fwd
pCA528 IST1 L328D (316-366)(C-Cys) 193035 Homo sapiens 4998..5023 Fwd
pCA528 IST1 L355A (316-366)(C-Cys) 193036 Homo sapiens 4998..5023 Fwd
pCA528 IST1 L328D,L355A (316-366)(C-Cys) 193037 Homo sapiens 4998..5023 Fwd
pCA528 IST1 (322-366) 193038 Homo sapiens 4998..5023 Fwd
pCA528 IST1 (1-366) 193039 Homo sapiens 4998..5023 Fwd
pCA528 IST1 L328D, L355A (1-366) 193040 Homo sapiens 4998..5023 Fwd
NAT-TET-OFF – ubiquitin – LEU – 4MYC 193314 Saccharomyces cerevisiae 5079..5096 Fwd
HYG-TET-OFF – ubiquitin – LEU – 4FLAG 193315 Saccharomyces cerevisiae 5502..5519 Fwd
HYG-TET-OFF – ubiquitin – LEU – 4MYC 193316 Saccharomyces cerevisiae 5535..5552 Fwd
KAN(G418)-TET-OFF – ubiquitin – LEU – 4FLAG 193317 Saccharomyces cerevisiae 5152..5169 Fwd
KAN(G418)-TET-OFF – ubiquitin – LEU – 4MYC 193318 Saccharomyces cerevisiae 5316..5333 Fwd
pETM30-C9ORF78 193367 Homo sapiens 5006..5031 Fwd
pETM30-C9ORF78_R41A 193368 Homo sapiens 5006..5031 Fwd
pETM30-C9ORF78_F8A 193369 Homo sapiens 4998..5023 Fwd
12.4kbVillin-ΔATG 19358 Mus musculus 950..967 Fwd
pET-51b(+) ChemoG1 193799 Synthetic 4885..4910 Fwd
pET-51b(+) ChemoG2 193800 Synthetic 4885..4910 Fwd
pET-51b(+) ChemoG3 193801 Synthetic 4885..4910 Fwd
pET-51b(+) ChemoG 3.1 193802 Synthetic 4885..4910 Fwd
pET-51b(+) ChemoG 3.2 193803 Synthetic 4885..4910 Fwd
pET-51b(+) ChemoG4 193804 Synthetic 4885..4910 Fwd
pET-51b(+) ChemoG5 193805 Synthetic 4885..4910 Fwd
pET-51b(+) ChemoB-CaM 193812 Synthetic 4885..4910 Fwd
pET-51b(+) ChemoC-CaM 193813 Synthetic 4885..4910 Fwd
pET-51b(+) ChemoY-CaM 193814 Synthetic 4885..4910 Fwd
pET-51b(+) ChemoR-CaM 193815 Synthetic 4885..4910 Fwd
pOPINB-HOIL-1 full-length (1–510) 193858 Homo sapiens 5125..5150 Fwd
pOPINB-HOIL-1 helix-RBR (233–510) 193859 Homo sapiens 5047..5072 Fwd

DNA Sequence Variants

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

DNA Sequence (17 bp)
TTGTTATCCGCTCACAA
DNA Sequence (17 bp)
TTGTTATCCGCTCACAA
DNA Sequence (17 bp)
TTGTTATCCGCTCACAA
DNA Sequence (17 bp)
TTGTTATCCGCTCACAA
DNA Sequence (25 bp)
GGAATTGTTATCCGCTCACAATTCC
DNA Sequence (17 bp)
TTGTTATCCGCTCACAA
DNA Sequence (17 bp)
TTGTTATCCGCTCACAA
DNA Sequence (17 bp)
TTGTGAGCGGATAACAA
DNA Sequence (25 bp)
GGAATTGTTATCCGCTCACAATTCC
DNA Sequence (17 bp)
TTGTGAGCGGATAACAA
DNA Sequence (17 bp)
TTGTGAGCGGATAACAA
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (17 bp)
TTGTGAGCGGATAACAA
DNA Sequence (17 bp)
TTGTGAGCGGATAACAA
DNA Sequence (17 bp)
TTGTTATCCGCTCACAA
DNA Sequence (17 bp)
TTGTTATCCGCTCACAA
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (17 bp)
TTGTTATCCGCTCACAA
DNA Sequence (17 bp)
TTGTTATCCGCTCACAA
DNA Sequence (17 bp)
TTGTTATCCGCTCACAA
DNA Sequence (17 bp)
TTGTTATCCGCTCACAA
DNA Sequence (17 bp)
TTGTTATCCGCTCACAA
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (17 bp)
TTGTGAGCGGATAACAA
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC
DNA Sequence (25 bp)
GGAATTGTGAGCGGATAACAATTCC