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Showing 1001 - 1033 of 1033 result(s)
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Public
BBa_K091230
BBa_K091230 Version 1 (Component)
cI promoter+RBS+RFP+TT
Public
BBa_I744111
BBa_I744111 Version 1 (Component)
Tc-driven cI (lambda) generator
Public
BBa_I10200
BBa_I10200 Version 1 (Component)
434 cI repressor protein generator
Public
BBa_K1647000
BBa_K1647000 Version 1 (Component)
CI operator site with GFP
Public
BBa_J13101
BBa_J13101 Version 1 (Component)
LacI repressed lambda CI generator
Public
PL GFP
BBa_K193000 Version 1 (Component)
GFP reporter regulated by CI.
Public
BBa_K1053300
BBa_K1053300 Version 1 (Component)
PLtetO-1-RBS-cI-DT
Public
BBa_K909004
BBa_K909004 Version 1 (Component)
cI with strong ribosomal binding site
Public
BBa_M11402
BBa_M11402 Version 1 (Component)
5' UTR and RBS of psbA2 gene in Synechocystis sp. PCC 6803
Public
BBa_I719022
BBa_I719022 Version 1 (Component)
cI promoter with GFP reporter
Public
BBa_K648032
BBa_K648032 Version 1 (Component)
Slightly weaker RBS with cI repressor
Public
BBa_K648033
BBa_K648033 Version 1 (Component)
Very weak RBS with cI repressor
Public
BBa_K318509
BBa_K318509 Version 1 (Component)
lacI pL + RBS + cI LVA + TT
Public
Plamda-GFP
BBa_I763011 Version 1 (Component)
promoter lambda (cI regulated) with GFP (+LVA) reporter
Public
BBa_K1707004
BBa_K1707004 Version 1 (Component)
TetR-ssRA repressor with the promoter of cI
Public
BBa_K188222
BBa_K188222 Version 1 (Component)
RBS+cI repressor from phage 434 (+LVA)
Public
BBa_K415011
BBa_K415011 Version 1 (Component)
PtetR : RBS : LuxR : Term : PluxR/cI-OR : RBS : mCherry : Term : Plux/cI-OR : RBS : LuxI
Public
BBa_K077039
BBa_K077039 Version 1 (Component)
cI under control of the plac promotor
Public
BBa_J06570
BBa_J06570 Version 1 (Component)
Construction intermediate: 434 cI with RBS (B0034.C0052)
Public
BBa_K145105
BBa_K145105 Version 1 (Component)
cI under T7 and P<sub>R</sub> dual promotor
Public
BBa_K077019
BBa_K077019 Version 1 (Component)
pluxR with cI (lambda) behind a normal RBS
Public
BBa_I3401
BBa_I3401 Version 1 (Component)
Lambda cI switch input device (B0034.C0051.B0015)
Public
BBa_K584011
BBa_K584011 Version 1 (Component)
Lac-Lux hybrid promotor + CrtEBI + CI repressor + INP
Public
BBa_K611017
BBa_K611017 Version 1 (Component)
cI Lambda Repressor and Promoter Wild Type Control
Public
PLac-LacY-
BBa_I763013 Version 1 (Component)
LacY and cI coding device switched on by IPTG
Public
BBa_K077016
BBa_K077016 Version 1 (Component)
cI (lambda) promoter with normal RBS, AiiA and terminators
Public
BBa_I758601
BBa_I758601 Version 1 (Component)
Screen for binding affinity of mutant cI lambda to promotor sites
Public
BBa_I758600
BBa_I758600 Version 1 (Component)
Screen for binding affinity of mutant cI lambda to promotor sites
Public
BBa_K145112
BBa_K145112 Version 1 (Component)
cI under T7 and PR<sub>R</sub> dual promotor
Public
BBa_K177035
BBa_K177035 Version 1 (Component)
cI repressor from E. coli phage lambda (+LVA) under control of RBS.3 (medium)
Public
BBa_K584008
BBa_K584008 Version 1 (Component)
Lambda cI and LuxR regulated hybrid promotor + RBS + MelA + RBS + AFP + term
Public
BBa_K415005
BBa_K415005 Version 1 (Component)
pLux/cI-OR : RBS-mCherry : Term : p(tetR) : RBS-luxR : Term
Public
SEGA
SEGA_collection Version 1 (Collection)
In the Standardized Genome Architecture (SEGA), genomic integration of DNA fragments is enabled by λ-Red recombineering and so-called landing pads that are a common concept in synthetic biology and typically contain features that i) enable insertion of additional genetic elements and ii) provide well-characterized functional parts such as promoters and genes, and iii) provides insulation against genome context-dependent effects. The SEGA landing pads allow for reusable homology regions and time-efficient construction of parallel genetic designs with a minimal number of reagents and handling steps. SEGA bricks, typically synthetic DNA or PCR fragments, are integrated on the genome simply by combining the two reagents (i.e. competent cells and DNA), followed by incubation steps, and successful recombinants are identified by visual inspection on agar plates. The design of the SEGA standard was heavily influenced by the Standard European Vector Architecture (SEVA). SEGA landing pads typically hosts two major genetic “control elements” that influence gene expression on the transcriptional (C1), and translational (C2) level. Furthermore, landing pads contain gadgets such as selection and counterselection markers.
Showing 1001 - 1033 of 1033 result(s)
Previous 16 17 18 19 20 21