BBa_K511810BBa_K511810 Version 1 (Component)Repressible Tango Receptor Generator (Hef1a-LacO-AVPR2-TEVs-Gal4-VP16) MammoBlock Device
BBa_K902006BBa_K902006 Version 1 (Component)Beta-D-glucoside glucohydrolase (bglX) inducible generator
BBa_K902005BBa_K902005 Version 1 (Component)Beta-D-glucoside glucohydrolase (bglX) constitutive generator
BBa_K1351036BBa_K1351036 Version 1 (Component)Quorum sensing two component system (AIP-II sensing histidine kinase agrC, response regulator agrA)
BBa_K1164004BBa_K1164004 Version 1 (Component)pTRELX: Modified Gal1 promoter; gal4O replaced w/ tetO; repressable via lacO
BBa_K176089BBa_K176089 Version 1 (Component)TetR repressible AHL->Death Receiver: pCon 0.70->luxR+pLux/Tet->ccdB(weak RBS)
BBa_K223050BBa_K223050 Version 1 (Component)SoxR - SoxS System with Blh and RALDH II system and Lac promoter
BBa_K431007BBa_K431007 Version 1 (Component)Alcohol Oxidase 1 promoter
BBa_K176171BBa_K176171 Version 1 (Component)Repressible AHL->PoPS Receiver: PoPS->tetR-LVA+pCon 0.15->luxR+pLux/Tet->PoPS
BBa_K176172BBa_K176172 Version 1 (Component)Repressible AHL->GFP Receiver: PoPS->tetR-LVA+pCon 0.15->luxR+pLux/Tet->GFP
BBa_K176168BBa_K176168 Version 1 (Component)TetR repressible AHL->Death Receiver: pCon 0.70->luxR+pLux/Tet->lacZalpha-ccdB-LVA
BBa_K176187BBa_K176187 Version 1 (Component)TetR repressible AHL->Death Receiver: pCon 0.04->luxR+pLux/Tet->ccdB(weak RBS)
BBa_K176131BBa_K176131 Version 1 (Component)TetR repressible AHL->Death Receiver: pCon 0.36->luxR+pLux/Tet->ccdB(weak RBS)
BBa_K176185BBa_K176185 Version 1 (Component)TetR repressible AHL->Death Receiver: pCon 0.15->luxR+pLux/Tet->ccdB(weak RBS)
BBa_J06574BBa_J06574 Version 1 (Component)Construction intermediate: cI857 (Lamda II) with RBS and forward terminator (B0034.J06503.B0014)
BBa_K1172205BBa_K1172205 Version 1 (Component)GldA - glycerol dehydrogenase from Escherichia coli with medium Anderson promoter and medium RBS
BBa_M31517BBa_M31517 Version 1 (Component)Refactored M13KO7 genome from HpaI site in gene II through BamHI site in gene III
BBa_K1022126BBa_K1022126 Version 1 (Component)pT7: RBS: His6- SUMO: Magainin II: RBS: TetR:TT : pTet: cI: TT : pcI: Ulp : Lysis
BBa_K179002BBa_K179002 Version 1 (Component)mtlD which catalyses epimerization of D-Fluctose-6-phosphate
BBa_K176090BBa_K176090 Version 1 (Component)TetR repressible AHL->Death Receiver: pCon 0.70->luxR+pLux/Tet->lacZalpha-ccdB(weak RBS)
BBa_K902007BBa_K902007 Version 1 (Component)Beta-D-glucoside glucohydrolase (bglX) with strong RBS
BBa_M11207BBa_M11207 Version 1 (Component)Device containing HXT7/mNarK promoters and GFP/RFP to monitor glucose/oxygen levels in S. cerevisiae
BBa_M11208BBa_M11208 Version 1 (Component)Device containing HXT1/mNarK promoters and GFP/RFP to monitor glucose/oxygen levels in S. cerevisiae
BBa_K176186BBa_K176186 Version 1 (Component)TetR repressible AHL->Death Receiver: pCon 0.15->luxR+pLux/Tet->lacZalpha-ccdB(weak RBS)
BBa_K176132BBa_K176132 Version 1 (Component)TetR repressible AHL->Death Receiver: pCon 0.36->luxR+pLux/Tet->lacZalpha-ccdB(weak RBS)
BBa_K176188BBa_K176188 Version 1 (Component)TetR repressible AHL->Death Receiver: pCon 0.04->luxR+pLux/Tet->lacZalpha-ccdB(weak RBS)
BBa_K176169BBa_K176169 Version 1 (Component)TetR repressible AHL->Death Receiver: pCon 0.70->luxR+pLux/Tet->ccdB-LVA(weak RBS)
BBa_K272501BBa_K272501 Version 1 (Component)TetR repressible promoter-Rbs-ccdB toxin - EYFP-constitutive promoter-Rbs-Streptomycin resistance ma
BBa_K1159309BBa_K1159309 Version 1 (Component)19 AA Linker with N-terminal <i>Strep</i>-tag II and C-terminal TEV cleavage site in RFC[25]
BBa_K896599BBa_K896599 Version 1 (Component)Strophurus rankini voucher AMS R140490 NADH dehydrogenase subunit 4 (ND4) gene, partial cds; tRNA-Hi
BBa_K176170BBa_K176170 Version 1 (Component)TetR repressible AHL->Death Receiver: pCon 0.70->luxR+pLux/Tet->lacZalpha-ccdB-LVA(weak RBS)
BBa_M1641BBa_M1641 Version 1 (Component)Complete proteorhodopsin and hydrogenase device, producing hydrogen gas. Constitutive promoter.
BBa_K887003BBa_K887003 Version 1 (Component)Plac+B0034+alsS+zif268+B0034+PBS II+ilvC+B0034+HIVC+ilvD+Ptet+B0032+kivD+B0015
BBa_M31513BBa_M31513 Version 1 (Component)Refactored portion of M13 genome from unique Hpal site on gene II to the BamHI site on gene III
BBa_M31516BBa_M31516 Version 1 (Component)Refactored portion of M13 genome from unique Hpal site on gene II to the BamHI site on gene III
BBa_K749010BBa_K749010 Version 1 (Component)Formate dehydrogenase device
BBa_K749013BBa_K749013 Version 1 (Component)Formate dehydrogenase device
BBa_K249000BBa_K249000 Version 1 (Component)Tet Repressible YFP
BBa_K1453304BBa_K1453304 Version 1 (Component)pBluescript II KS(+)_5_copy
BBa_K1453303BBa_K1453303 Version 1 (Component)pBluescript II KS(+)_3_copy
BBa_K1676120BBa_K1676120 Version 1 (Component)Mutant 16 of Lactate Dehydrogenase
BBa_K1676114BBa_K1676114 Version 1 (Component)Mutant 10 of Lactate Dehydrogenase
Strep-TagBBa_I757014 Version 1 (Component)Strep-Tag II affinity tag
BBa_J06003BBa_J06003 Version 1 (Component)tetR repressible ECFP reporter
BBa_K208013BBa_K208013 Version 1 (Component)Tet Repressible Promoter (BBa_R0040) and RBS (BBa_B0034)
BBa_M1678BBa_M1678 Version 1 (Component)a construct to detect the presence/absence of glucose
BBa_M31114BBa_M31114 Version 1 (Component)M13, gene II from HpaI to the end [1-831bp]
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.