BBa_K611101BBa_K611101 Version 1 (Component)Truncated LVA (5' -11bp) Tag with Double Stop Codon and Truncated Barcode (3' -16bp)
BBa_K611100BBa_K611100 Version 1 (Component)Truncated LVA (5' -22bp) Tag with Double Stop Codon and Truncated Barcode (3' -8bp)
BBa_K611102BBa_K611102 Version 1 (Component)Truncated LVA (5' -22bp) Tag with Double Stop Codon and Truncated Barcode (3' -16bp)
BBa_K112219BBa_K112219 Version 1 (Component){ihfB!} The ihf beta gene with start and stop codons, BBb format
BBa_K1085020BBa_K1085020 Version 1 (Component)RBS Start-codon EstA SpiderSilkSubunitN1 SpiderSilkSubunitN2 SilkTail Strep-tag Stop-codon
BBa_K1085019BBa_K1085019 Version 1 (Component)RBS Start-codon EstA Strep-tag SpiderSilkSubunitE1 SpiderSilkSubunitE2 SilkTail Stop-codon
BBa_K1085028BBa_K1085028 Version 1 (Component)RBS Start-codon SpiderSilkSubunitE1 SpiderSilkSubunitE2 x2 SilkTail Strep-tag Stop-codon
BBa_K235036BBa_K235036 Version 1 (Component)[K235030][K235005] (constituitive promoter+32??C RBS thermometer+mCherry CDS+stop)
BBa_J119395BBa_J119395 Version 1 (Component)tClone Red containing the RS3 Riboswitch
BBa_K1848003BBa_K1848003 Version 1 (Component)Human Gut Hormone Ghrelin (28) (Sequence Lacks Stop Codon, but part possesses it)
BBa_K112212BBa_K112212 Version 1 (Component){rbs.int!} The integrase gene with native rbs site and stop codon, BBb format
BBa_K323080BBa_K323080 Version 1 (Component)CMV ATG cYFP link Zif268 link His stop - part of mammalian split/FRET system
BBa_K323029BBa_K323029 Version 1 (Component)CMV ATG cCFP link ZNF HIVC His stop - part of mammalian split/FRET system
BBa_K1162014BBa_K1162014 Version 1 (Component)protmoter+rbs+N-terminal 10x His-Tag+GFP with no translational stop codon
xisBBa_K112205 Version 1 (Component){rbs.xis!} The xis gene with native rbs site and stop codon; assembly standard 21
BBa_K1051036BBa_K1051036 Version 1 (Component)BBa_K1051105(non stop codon to Mitochondria Outer Membrane)+BBa_K1051008( CAA terminator with stopco
BBa_K892999BBa_K892999 Version 1 (Component)red light responsive inverter driving luciferase
BBa_K1848002BBa_K1848002 Version 1 (Component)Human Gut Hormone Peptide YY (3-36) (Sequence Lacks Stop Codon, but part possesses it)
BBa_K1456012BBa_K1456012 Version 1 (Component)Human Tissue Plasminogen Activator reverse primer with restriction site, 2 stop codons and 6X His
BBa_K1456010BBa_K1456010 Version 1 (Component)Glutathione Peroxidase (GPx) enzyme reverse primer with restriction site, two stop codon and 6X His
BBa_K1456008BBa_K1456008 Version 1 (Component)Superoxide Dismutase enzyme reverse primer with restriction site, two stop codon and 6X His-Tag
haltBBa_M36296 Version 1 (Component)Stop Codon TAA
BBa_K1456022BBa_K1456022 Version 1 (Component)Glutathione Peroxidase(GPx1) enzyme reverse primer-2 with restriction site, two stop codon and 6xHis
BBa_K1456024BBa_K1456024 Version 1 (Component)Human Tissue Plasminogen Activator reverse primer-2 with restriction site, 2 stop codons and 6XHis
BBa_K112217BBa_K112217 Version 1 (Component){a~ihfA!} The ihf alpha gene ready to have rbs attached with stop codon, BBb format
BBa_K112223BBa_K112223 Version 1 (Component){a~ihfB!} The ihf beta gene ready to have rbs attached and stop codon, BBb format
BBa_K112211BBa_K112211 Version 1 (Component){a~int!} The integrase gene with rbs ready to be attached with stop codon, BBb format
BBa_K1332003BBa_K1332003 Version 1 (Component)The 5?? side of the intron(+exon fragment) from td gene of T4 phage without stop codon
xisBBa_K112204 Version 1 (Component){a~xis!} The bacteriophage lambda xis gene ready to have rbs attached and stop codon; assembly stand
BBa_K1848001BBa_K1848001 Version 1 (Component)Human Gut Hormone Glucagon-like peptide 1 (7-37) (Sequence Lacks Stop Codon, but part possesses it)
BBa_K541715BBa_K541715 Version 1 (Component)Multi-host vector pTG262 converted to BioBrick vector wtih LALF protein and SacB signal peptide
BBa_K209000BBa_K209000 Version 1 (Component)cAR1 (Dictyostelium discoideum), no STOP
BBa_K1051356BBa_K1051356 Version 1 (Component)K1051301(clb2 promoter) + K1051053(K1051001 (non stop codon ECFP + K1051006 (Stop codon + TBY-1 term
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.