BBa_K609004BBa_K609004 Version 1 (Component)A Nisin resistance gene nisI for Streptococcus thermophilus
BBa_K609003BBa_K609003 Version 1 (Component)A Nisin resistance gene nisI for Lactobacillus bulgaricus
DigitalizerDigitalizer_collection Version 1 (Collection)A genetic device to digitalize gene expression into a sharp on/off signal.
BBa_I12223BBa_I12223 Version 1 (Component)TetR-4C protein generator
BBa_K091177BBa_K091177 Version 1 (Component)pMnt/tetR-RBS-GFP-TT-pBAD-RBS-tetR-TT
BBa_K091175BBa_K091175 Version 1 (Component)pBAD-RBS-tetR-TT-pMnt/tetR-RBS-GFP-TT
BBa_I739102BBa_I739102 Version 1 (Component)Double Promoter (cI, negative / TetR, negative)
BBa_K165063BBa_K165063 Version 1 (Component)pRS306 yeast shuttle vector, URA3 selection
BBa_K165061BBa_K165061 Version 1 (Component)pRS304* yeast shuttle vector, TRP1 selection
BBa_K1351023BBa_K1351023 Version 1 (Component)upp cassette as counter-selection marker
BBa_K165062BBa_K165062 Version 1 (Component)pRS305 yeast shuttle vector, LEU2 selection
BBa_K133048BBa_K133048 Version 1 (Component)TetR-UreB-Histop
BBa_K332031BBa_K332031 Version 1 (Component)Constitutive promoter + 37℃ induced RBS + tetR + double terminator
BBa_K1473018BBa_K1473018 Version 1 (Component)gRNA for tetR 2
BBa_K613022BBa_K613022 Version 1 (Component)TetR E37A P39K mutant
BBa_K1473021BBa_K1473021 Version 1 (Component)gRNA for tetR 5
BBa_K1473017BBa_K1473017 Version 1 (Component)gRNA for tetR 1
BBa_K613018BBa_K613018 Version 1 (Component)TetR Y42F K108E mutant
BBa_K1936002BBa_K1936002 Version 1 (Component)tetR-Pif6 for yeast
BBa_K1473020BBa_K1473020 Version 1 (Component)gRNA for tetR 4
BBa_K1473019BBa_K1473019 Version 1 (Component)gRNA for tetR 3
BBa_K2066121BBa_K2066121 Version 1 (Component)Synthetic Enhancer Project: 2X TetO Binding Cassette(55aS) + NRII + TetR + sfGFP on UNS
BBa_K2066122BBa_K2066122 Version 1 (Component)Synthetic Enhancer Project: 3X TetO Binding Cassette(52S) + NRII + TetR + sfGFP on UNS
BBa_K1076001BBa_K1076001 Version 1 (Component)Flanking genes for FadR deletion
BBa_J119368BBa_J119368 Version 1 (Component)Ptac mutant -40 G Deletion
BBa_K1124103BBa_K1124103 Version 1 (Component)clock device (plux/tet) (-luxI, +tetR, +aiiA, ++sRNA, +amilGFP)(negative feedback only)
BBa_K1366022BBa_K1366022 Version 1 (Component)Genetic construct for msbB gen deletion
BBa_K1366021BBa_K1366021 Version 1 (Component)Genetic construct for lpp gen deletion
BBa_J13011BBa_J13011 Version 1 (Component)TetR repressed Cph8
BBa_J24810BBa_J24810 Version 1 (Component)R0040 promoter + pbrt (lead resistance gene)
BBa_K1486027BBa_K1486027 Version 1 (Component)R.reniformis luciferase + ADH1 terminator + Kanamycin resistance
SEGASEGA_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.
BBa_K1475903BBa_K1475903 Version 1 (Component)tetR with LVA and terminator
BBa_K336015BBa_K336015 Version 1 (Component)p(tetR)+RBS+α-amylase+stop
BBa_K1673010BBa_K1673010 Version 1 (Component)Partially UV-Resistant RFP
iGEM 2019 DistributioniGEM2019Distribution_collection Version 1 (Collection)Distribution of parts for the 2019 iGEM competition
iGEM 2018 DistributioniGEM2018Distribution_collection Version 1 (Collection)Distribution of parts for the 2018 iGEM competition
BBa_K577892BBa_K577892 Version 1 (Component)TetR Expression Plasmid
BBa_K611009BBa_K611009 Version 1 (Component)TetR Characterization Construct
BBa_K145113BBa_K145113 Version 1 (Component)Constitutive PoPS -> TetR
BBa_K561005BBa_K561005 Version 1 (Component)Pvgb+bglX+tetR
BBa_K577891BBa_K577891 Version 1 (Component)TetR Expression Plasmid
BBa_K081018BBa_K081018 Version 1 (Component)tetR constitutive generator
iGEM DistributionsiGEMDistributions_collection Version 1 (Collection)Part distributions for the iGEM competition
Bacillus subtilis Collectionbsu_collection Version 1 (Collection)This collection includes information about promoters, operators, CDSs and proteins from Bacillus subtilis. Functional interactions such as transcriptional activation and repression, protein production and various protein-protein interactions are also included.
iGEM Parts Registryigem_collection Version 1 (Collection)The iGEM Registry is a growing collection of genetic parts that can be mixed and matched to build synthetic biology devices and systems. As part of the synthetic biology community's efforts to make biology easier to engineer, it provides a source of genetic parts to iGEM teams and academic labs.
BBa_K1520003BBa_K1520003 Version 1 (Component)Pcons2-rbs-luxR-Ter
BBa_I739106BBa_I739106 Version 1 (Component)Double Promoter (TetR, negative / P22 cII, negative)
BBa_K678041BBa_K678041 Version 1 (Component)pyrG-DR cassette, for selection of Aspergillus nidulans