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Showing 1501 - 1550 of 1552 result(s)
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Public
BBa_J01066
BBa_J01066 Version 1 (Component)
TEST arabinose inducible key 1 [pBad/araC][Key1]
Public
BBa_J24673
BBa_J24673 Version 1 (Component)
pBAD promoter with lacI coding region
Public
BBa_K1778001
BBa_K1778001 Version 1 (Component)
TRE is closely related to promoter regulation,can correctly specific binding to regulatory protein r
Public
BBa_J44010
BBa_J44010 Version 1 (Component)
HixC-pBAD-HixC-RBS-TetF-HixC
Public
BBa_K1431301
BBa_K1431301 Version 1 (Component)
TRE-3G promoter+SV40 PolyA, an ideal controller of mammalian gene expression with Tet-On 3G protein
Public
BBa_K1961000
BBa_K1961000 Version 1 (Component)
CYP2A13 is a member of the Cytochrome P450 (CYP) enzymes family, which are critical for the metaboli
Public
BBa_S03534
BBa_S03534 Version 1 (Component)
TetB-RBS<sub>rev</sub>-HixC-TT-RE
Public
BBa_I12029
BBa_I12029 Version 1 (Component)
Test of pBAD/araC promoter (I0500)
Public
BBa_J01119
BBa_J01119 Version 1 (Component)
TEST [pBad/araC][StrRBS][RFP][DblTerm]
Public
BBa_K861160
BBa_K861160 Version 1 (Component)
CRP, cAMP receptor protein
Public
BBa_I741022
BBa_I741022 Version 1 (Component)
CRP gene ORF
Public
BBa_I741111
BBa_I741111 Version 1 (Component)
Lambda Antirepressor Cro
Public
BBa_I715065
BBa_I715065 Version 1 (Component)
Burnt Pancake Tester with RE and backwards Tet resistance
Public
BBa_K1778002
BBa_K1778002 Version 1 (Component)
TRE-CYC1TATA is a recombinant promoter, which is constructed in order to make the Tet-on system func
Public
BBa_B1005_sequence
BBa_B1005_sequence Version 1 (Sequence)

Public
BBa_S03638
BBa_S03638 Version 1 (Component)
HixC-pBad<sub>rev</sub>-HixC : RBS-TetF
Public
BBa_K806003
BBa_K806003 Version 1 (Component)
SeqA regulation of chromosome replication by preventing re-initiation at newly replicated origins
Public
BBa_J44008
BBa_J44008 Version 1 (Component)
pLac-RBS-HinLVA-TT-HixC-pBADrev-HixC-RBS-RE-TT-TetF
Public
BBa_J44007
BBa_J44007 Version 1 (Component)
pLac-RBS-Hin-TT-HixC-pBADrev-HixC-RBS-RE-TT-TetF
Public
BBa_K1075003
BBa_K1075003 Version 1 (Component)
Promoter(const.)-AraC-Term-pBAD-RBS34 (Arabinose inducable promoter system)
Public
BBa_K199070
BBa_K199070 Version 1 (Component)
I13453:K199016 Pbad promotor with the suppressor tRNA of CUAGC
Public
BBa_K1434002
BBa_K1434002 Version 1 (Component)
cAMP receptor protein (CRP) mutant
Public
BBa_K364331
BBa_K364331 Version 1 (Component)
TRE-PolyA in pBSB1A3
Public
BBa_S03674
BBa_S03674 Version 1 (Component)
(-1,2) HixC-pBad<sub>rev</sub>-HixC : RBS-TetF-HixC
Public
BBa_I2031
BBa_I2031 Version 1 (Component)
GFP expression device controlled by an arabinose inducible pBAD promoter
Public
BBa_B1007_sequence
BBa_B1007_sequence Version 1 (Sequence)

Public
BBa_B1003_sequence
BBa_B1003_sequence Version 1 (Sequence)

Public
BBa_B1009_sequence
BBa_B1009_sequence Version 1 (Sequence)

Public
BBa_K199071
BBa_K199071 Version 1 (Component)
I13453:K199014: Pbad promomtor with the suppressor tRNA of the codon AGGAC
Public
BBa_B1008_sequence
BBa_B1008_sequence Version 1 (Sequence)

Public
BBa_I715069
BBa_I715069 Version 1 (Component)
Test part to see if RE and pLac +hixc can be expressed with GFP
Public
BBa_I720010
BBa_I720010 Version 1 (Component)
Ara landing pad (pBBLP 8)
Public
BBa_K323164
BBa_K323164 Version 1 (Component)
VioA and VioB enzymes fused with zinc fingers under pBAD promoter in pSB4K5
Public
BBa_K323163
BBa_K323163 Version 1 (Component)
VioC, VioD and VioE enzymes fused with zinc fingers under pBAD promoter in pSB4C5
Public
BBa_B1002_sequence
BBa_B1002_sequence Version 1 (Sequence)

Public
BBa_K1195004
BBa_K1195004 Version 1 (Component)
Cro from Lamda phage with shine delgarno added.
Public
BBa_M11085
BBa_M11085 Version 1 (Component)
E coli outer membrane protein C (ompC) with BamHI RE site for insertion of gene to be expressed on o
Public
BBa_K1523007
BBa_K1523007 Version 1 (Component)
A Device to reduce Cr(VI)
Public
Bacillus subtilis Collection
bsu_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.
Public
BBa_B1004_sequence
BBa_B1004_sequence Version 1 (Sequence)

Public
BBa_P1006_sequence
BBa_P1006_sequence Version 1 (Sequence)

Public
SBOLDesigner CAD Tool
SBOLDesigner Version 3.1 (Agent)
SBOLDesigner is a simple, biologist-friendly CAD software tool for creating and manipulating the sequences of genetic constructs using the Synthetic Biology Open Language (SBOL) 2 data model. Throughout the design process, SBOL Visual symbols, a system of schematic glyphs, provide standardized visualizations of individual parts. SBOLDesigner completes a workflow for users of genetic design automation tools. It combines a simple user interface with the power of the SBOL standard and serves as a launchpad for more detailed designs involving simulations and experiments. Some new features in SBOLDesigner are the ability to add variant collections to combinatorial derivations, enumerating those collections, and the ability to view sequence features hierarchically. There are also some small changes to the way that preferences work in regards to saving a design with incomplete sequences.
Public
BBa_Y1006_sequence
BBa_Y1006_sequence Version 1 (Sequence)

Public
BBa_B1106_sequence
BBa_B1106_sequence Version 1 (Sequence)

Public
BO_11006_seq
BO_11006_seq Version 1 (Sequence)

Public
BO_31006_seq
BO_31006_seq Version 1 (Sequence)

Public
BBa_M1006_sequence
BBa_M1006_sequence Version 1 (Sequence)

Public
BBa_B1206_sequence
BBa_B1206_sequence Version 1 (Sequence)

Public
BBa_T1006_sequence
BBa_T1006_sequence Version 1 (Sequence)

Public
SEGA
SEGA_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.
Showing 1501 - 1550 of 1552 result(s)
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