BBa_K1824890BBa_K1824890 Version 1 (Component)The Sequence of the SpeI/XbaI scar in BioBricks standard assembly.
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_K1945002BBa_K1945002 Version 1 (Component)Homologous Recombination Intermediate for Counter-selection in Synechocystis sp. PCC 6803
BBa_K322128BBa_K322128 Version 1 (Component)Phycocyanobilin synthesis genes + Red light detection system (EYFP as reporter)
BBa_M1680BBa_M1680 Version 1 (Component)Standard parts assembly for detection of high glucose levels using FAS promoter
BBa_K782049BBa_K782049 Version 1 (Component)HindIII/SacI equivalent multicloning site for insertion of non standardized parts to BioBrick vector
BBa_K782052BBa_K782052 Version 1 (Component)BamHI/SacI equivalent multicloning site for insertion of non standardized parts to BioBrick vectors
BBa_K782058BBa_K782058 Version 1 (Component)SacI/XhoI equivalent multicloning site for insertion of non standardized parts to BioBrick vectors
BBa_K782057BBa_K782057 Version 1 (Component)SacI/SpeI equivalent multicloning site for insertion of non standardized parts to BioBrick vectors
BBa_K782055BBa_K782055 Version 1 (Component)XbaI/SacI equivalent multicloning site for insertion of non standardized parts to BioBrick vectors
BBa_K782045BBa_K782045 Version 1 (Component)EcoRI/SacI equivalent multicloning site for insertion of non standardized parts to BioBrick vectors
BBa_K782056BBa_K782056 Version 1 (Component)SacI/BamHI equivalent multicloning site for insertion of non standardized parts to BioBrick vectors
BBa_K887003BBa_K887003 Version 1 (Component)Plac+B0034+alsS+zif268+B0034+PBS II+ilvC+B0034+HIVC+ilvD+Ptet+B0032+kivD+B0015
BBa_K1716002BBa_K1716002 Version 1 (Component)NahR Biosensor for detection of acetylsalicylic acid/aspirin with blue chromoprotein reporter
luxR-ndhBBa_K1036000 Version 1 (Component)lux pL controlled luxR with lux pR controlled ndh (LVA-tag) coding for NADH dehydrogenase II
BBa_M45905BBa_M45905 Version 1 (Component)Composite part for fluorescent detection of botulinum neurotoxin A (BoNT A)
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_K299801BBa_K299801 Version 1 (Component)standard biobrick scar (if next sequence does NOT start with ATG)
BBa_K1833996BBa_K1833996 Version 1 (Component)Oligonucleotide synthesis scar
BBa_K1897038BBa_K1897038 Version 1 (Component)Scar site generated by 3A Assembly
Strep-TagBBa_I757014 Version 1 (Component)Strep-Tag II affinity tag
BBa_K1583054BBa_K1583054 Version 1 (Component)Non-coding scar site in between RBS and gene
BBa_K1366101BBa_K1366101 Version 1 (Component)Genetic construct for lpp gene deletion (C1)
BBa_K1897039BBa_K1897039 Version 1 (Component)Scar site generated by 3A Assembly
BBa_K1159991BBa_K1159991 Version 1 (Component)10/10 NC Assembly Scar
BBa_M45102BBa_M45102 Version 1 (Component)Cobalt detection Biobrick. RFP made in presence of Cobalt. Note the receptor also works in the prese
BBa_K299800BBa_K299800 Version 1 (Component)standard biobrick scar (if next part starts with ATG)
BBa_K1159992BBa_K1159992 Version 1 (Component)10/10 C Assembly Scar
BBa_K1452000BBa_K1452000 Version 1 (Component)Pos/neg selection (Bacillus)
BBa_K142205BBa_K142205 Version 1 (Component)Plac + RBS + SceI + double terminator
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.