SenBBa_I726041 Version 1 (Component)Sen-TIC
BBa_K590082BBa_K590082 Version 1 (Component)Ser-Glylinker
SAGBBa_J45300 Version 1 (Component)Salicylic acid generator
BBa_K1321120BBa_K1321120 Version 1 (Component)SmtA metallothionein fused to linker-dCBD
Linker-FOSBBa_K1616015 Version 1 (Component)Linker FOS of 17 aa
Linker-JUNBBa_K1616018 Version 1 (Component)Linker JUN of 5 aa
SETBBa_K1433011 Version 1 (Component)Terminator-RFP-RBS-attB-P-attP-RBS-GFP-Terminator
SenBBa_I726051 Version 1 (Component)Sen-RIC
1xGSBBa_J18920 Version 1 (Component)2aa GS linker
BBa_K1797015BBa_K1797015 Version 1 (Component)dCas9-Long Linker (Gly-Gly-Ser-Gly)x3-Bxb1 gp35
GeABBa_K411101 Version 1 (Component)GFP_split_A + Linker + eIF4A_split_A
Intein C-tBBa_K2075024 Version 1 (Component)Intein and Intein Linker (C-term)
Intein N-tBBa_K2075010 Version 1 (Component)Intein and Intein linker (N-term)
ReBBBa_K411104 Version 1 (Component)RFP_split_B + Linker + eIF4A_split_B
BBa_K1321116BBa_K1321116 Version 1 (Component)Linker-cipA-linker + phytochelatin (PC) EC20 with LacI promoter
BBa_K1033120BBa_K1033120 Version 1 (Component)B0034-ExpTag-Linker-Miraculin-Linker-6xHis
tetR inverBBa_Q04401 Version 1 (Component)TetR-derived transcriptional inverter
BBa_K195401BBa_K195401 Version 1 (Component)Lpp-OmpA-linker -F10scFv
BBa_K1537017BBa_K1537017 Version 1 (Component)GSG linker+T2A
BBa_K416004BBa_K416004 Version 1 (Component)Aga2:(Gly3Ser)4 Linker Composite Part
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_K1321348BBa_K1321348 Version 1 (Component)sfGFP fused to dCBD with linker in RFC 25
BBa_K1321345BBa_K1321345 Version 1 (Component)NiBP fused to dCBD with linker in RFC 25
BBa_I766336BBa_I766336 Version 1 (Component)Ser-Gly-Ser-Gly-Ser ING2 PH Domain
BBa_K1321370BBa_K1321370 Version 1 (Component)NiBP + Linker-CBDcipA-Linker
BBa_M36192BBa_M36192 Version 1 (Component)Bicistronic Linker Sequence
BBa_J52022BBa_J52022 Version 1 (Component)NfΚB-dnTraf6-linker-GFP
ssTorA_CS-BBa_K627012 Version 1 (Component)Fusion of TorA sig-seq, TEV protease cleavage site and b-lactamase
BBa_K1583012BBa_K1583012 Version 1 (Component)Linker in fusion protein
BBa_K1486003BBa_K1486003 Version 1 (Component)Flexible linker 2x (GGGS)
BBa_J52223BBa_J52223 Version 1 (Component)rluc-linker-PEST191
BBa_K323084BBa_K323084 Version 1 (Component)linker sequence [GGSGGGSGGS]
GeBBBa_K411102 Version 1 (Component)GFP_split_B + Linker + eIF4A_split_B