BBa_K2082005BBa_K2082005 Version 1 (Component)Monobody library: Fusion proteins of Monobody and omega subunit of RNA polymerase (rpoZ)
BBa_K2082237BBa_K2082237 Version 1 (Component)RFP and Tetracycline resistence(tetA) under the control of a modified lacZ promoter; Fusion protein
BBa_K861160BBa_K861160 Version 1 (Component)CRP, cAMP receptor protein
BBa_K079049BBa_K079049 Version 1 (Component)GFP reporter protein under the control of the J23118 constitutive promoter and LexA 2 operator
BBa_K079020BBa_K079020 Version 1 (Component)GFP reporter under the control of J23118 promoter and Lac 2 operator auto-regulated by LacI protein
BBa_K1088009BBa_K1088009 Version 1 (Component)B. subtilis dxs-GFP protein fusion (lac promoter with LVA-tagged lac inhibitor (LacI:LVA) - IPTG ind
BBa_K1088010BBa_K1088010 Version 1 (Component)E. coli dxs-GFP protein fusion (lac promoter with LVA-tagged lac inhibitor (LacI:LVA) - IPTG inducib
BBa_M1530BBa_M1530 Version 1 (Component)Thermal Hysteresis (Antifreeze) Protein (variant YL4) with 8-His tag with secretion tag and GFP
BBa_M1515BBa_M1515 Version 1 (Component)Thermal Hysteresis (Antifreeze) Protein (variant YL3) with 8-His tag with secretion tag and GFP
BBa_M1529BBa_M1529 Version 1 (Component)Thermal Hysteresis (Antifreeze) Protein (variant YL1) with 8-His tag with secretion tag and GFP
BBa_M1541BBa_M1541 Version 1 (Component)Thermal Hysteresis (Antifreeze) Protein (variant YL3) with 8-His tag with secretion tag and GFP
BBa_M1531BBa_M1531 Version 1 (Component)Thermal Hysteresis (Antifreeze) Protein (variant YL1) with 8-His tag with secretion tag and GFP
PrtDEFBBa_K258008 Version 1 (Component)Export of recombinant proteins in Escherichia coli using ABC transporter of Erwinia chrysanthemi
BBa_M1542BBa_M1542 Version 1 (Component)Thermal Hysteresis (Antifreeze) Protein (variant YL3) with 8-His tag with secretion tag and GFP
BBa_M1535BBa_M1535 Version 1 (Component)Thermal Hysteresis (Antifreeze) Protein (variant YL1) with 8-His tag with secretion tag and GFP
BBa_K2150029BBa_K2150029 Version 1 (Component)pCon+RBS+tetR+DT+pTet+RBS+T7RNAP+Ter+RBS+pT7+tetX-GFP(fusion protein)+DT
BBa_M1536BBa_M1536 Version 1 (Component)Thermal Hysteresis (Antifreeze) Protein (variant YL4) with 8-His tag with secretion tag and GFP
BBa_K563010BBa_K563010 Version 1 (Component)Tor2 gene from the genome of the S. cerevisiae, central protein in TOR(target of rapamycin) pathway
BBa_K2027009BBa_K2027009 Version 1 (Component)Control Sequence Peptide for Melanin Binding (Nonpolar-Protic)
BBa_K2088006BBa_K2088006 Version 1 (Component)It encodes a kind of protein named 2Fe-2S ferredoxin, a 2Fe-2S iron-sulfur cluster binding domain. I
BBa_K1051116BBa_K1051116 Version 1 (Component)Actin Targeting Protein
BBa_M1174BBa_M1174 Version 1 (Component)protein1
BBa_K1790001BBa_K1790001 Version 1 (Component)biosensor detect food allergens. A proteins conformation change in response to ligand binding couple
BBa_K1790005BBa_K1790005 Version 1 (Component)biosensor detect food allergens. A proteins conformation change in response to ligand binding couple
BBa_K1790000BBa_K1790000 Version 1 (Component)biosensors detect food allergens. A proteins conformation change in response to ligand binding coupl
BBa_K1790003BBa_K1790003 Version 1 (Component)biosensor detect food allergens. A proteins conformation change in response to ligand binding couple
BBa_K1790004BBa_K1790004 Version 1 (Component)biosensor detect food allergens. A proteins conformation change in response to ligand binding couple
BBa_K1790002BBa_K1790002 Version 1 (Component)biosensor detect food allergens. A proteins conformation change in response to ligand binding couple
PcotYZBBa_K823030 Version 1 (Component)P<sub><i>cotYZ</i></sub>: <i>B. subtilis</i> promoter regulating expression of spore crust proteins
BBa_K896003BBa_K896003 Version 1 (Component)Sulfide quinone reductase(SQR) on neutral site 2 vector
BBa_M45091BBa_M45091 Version 1 (Component)AGA1: Agglutinins, mating type specific cell surface Proteins, are synthesized by haploid cell of Sa
BBa_K2018034BBa_K2018034 Version 1 (Component)phaCAB genes with additional promoter and RBS, that encodes proteins that can create PHB.
BBa_K2018000BBa_K2018000 Version 1 (Component)phaCAB genes with additional promoter and RBS, that encodes proteins that can create PHB.
BBa_K2018036BBa_K2018036 Version 1 (Component)phaCAB genes with additional promoter and RBS, that encodes proteins that can create PHB.
BBa_K2018033BBa_K2018033 Version 1 (Component)phaCAB genes with additional promoter and RBS, that encodes proteins that can create PHB.
BBa_K987000BBa_K987000 Version 1 (Component)This part is a coding part that produces Vip3Ca3, a protein that can deals with different forms of p
enhancedBBa_K2075011 Version 1 (Component)enhanced Green fluorescenc protein (GFP)
enhanced GBBa_K2075012 Version 1 (Component)enhanced Green fluorescenc protein (GFP)
BBa_J58009BBa_J58009 Version 1 (Component)Fusion protein Trg-EnvZ
BBa_M11085BBa_M11085 Version 1 (Component)E coli outer membrane protein C (ompC) with BamHI RE site for insertion of gene to be expressed on o
BBa_K1123017BBa_K1123017 Version 1 (Component)DNA Coding Sequence for EGFP Protein
BBa_I721004BBa_I721004 Version 1 (Component)Lead Binding Protein + Promoter (version a)
BBa_K1014016BBa_K1014016 Version 1 (Component)HrpS Protein Generator
BBa_K125550BBa_K125550 Version 1 (Component)Protein Linker SSGSSG Library
BBa_K079021BBa_K079021 Version 1 (Component)LacI repressor and GFP reporter proteins under the control of the J23118 costitutive promoter and La
Intein_assisted_Bisection_MappingIntein_assisted_Bisection_Mapping_collection Version 1 (Collection)Split inteins are powerful tools for seamless ligation of synthetic split proteins. Yet, their use remains limited because the already intricate split site identification problem is often complicated by the requirement of extein junction sequences. To address this, we augmented a mini-Mu transposon-based screening approach and devised the intein-assisted bisection mapping (IBM) method. IBM robustly revealed clusters of split sites on five proteins, converting them into AND or NAND logic gates. We further showed that the use of inteins expands functional sequence space for splitting a protein. We also demonstrated the utility of our approach over rational inference of split sites from secondary structure alignment of homologous proteins. Furthermore, the intein inserted at an identified site could be engineered by the transposon again to become partially chemically inducible, and to some extent enabled post-translational tuning on host protein function. Our work offers a generalizable and systematic route towards creating split protein-intein fusions and conditional inteins for protein activity control.
BBa_J133568BBa_J133568 Version 1 (Component)Protein Linker SSGSSG Library
BBa_J133564BBa_J133564 Version 1 (Component)Protein Linker SSGSSG Library