BBa_K861042BBa_K861042 Version 1 (Component)FadA, gene for fatty acid degradation from <i>Salmonella enterica</i> LT2
BBa_J06701BBa_J06701 Version 1 (Component)mCherry with RBS and forward terminator
recAp-cheZBBa_K629010 Version 1 (Component)recAp-cheZ-eGFP
BBa_K1796005BBa_K1796005 Version 1 (Component)Pnif+GFP reporter
BBa_J100080BBa_J100080 Version 1 (Component)Riboswitch and GFP
BBa_J119020BBa_J119020 Version 1 (Component)GFP-RBS-pT7
BBa_K649207BBa_K649207 Version 1 (Component)PlacIQ-lox2272-gfp
BBa_K1150033BBa_K1150033 Version 1 (Component)Constitutive GFP Reporter
BBa_K1555009BBa_K1555009 Version 1 (Component)GFP+copa+T7polymerase
BBa_K1461009BBa_K1461009 Version 1 (Component)GFP (AAV tag +)
BBa_J100201BBa_J100201 Version 1 (Component)RBS (BD24) + GFP
BBa_K1195007BBa_K1195007 Version 1 (Component)promoter ydiV + GFP
BBa_K1195008BBa_K1195008 Version 1 (Component)promoter FtSQAZ + GFP
BBa_K1615079BBa_K1615079 Version 1 (Component)CBDcenA+Linker fused to TVEL5 driven by LacI promoter
BBa_K1615036BBa_K1615036 Version 1 (Component)Linker+dCBD fused to MaoA driven by LacI promoter
BBa_K1615101BBa_K1615101 Version 1 (Component)CBDcenA+Linker fused to mRFP driven by LacI promoter
BBa_K1615037BBa_K1615037 Version 1 (Component)MaoA fused to Linker+dCBD driven by LacI promoter
BBa_K1615104BBa_K1615104 Version 1 (Component)mRFP fused to Linker+dCBD driven by LacI promoter
BBa_K1615060BBa_K1615060 Version 1 (Component)HerE fused to Linker+dCBD driven by LacI promoter
BBa_K1615103BBa_K1615103 Version 1 (Component)Linker+dCBD fused to mRFP driven by LacI promoter
BBa_K1615081BBa_K1615081 Version 1 (Component)Linker+dCBD fused to TVEL5 driven by LacI promoter
BBa_K1615012BBa_K1615012 Version 1 (Component)CBDcenA+Linker fused to MorA driven by LacI promoter
BBa_K1615014BBa_K1615014 Version 1 (Component)Linker+dCBD fused to MorA driven by LacI promoter
BBa_K1615034BBa_K1615034 Version 1 (Component)CBDcenA+Linker fused to MaoA driven by LacI promoter
BBa_K1615015BBa_K1615015 Version 1 (Component)MorA fused to Linker+dCBD driven by LacI promoter
BBa_K1758105BBa_K1758105 Version 1 (Component)mRFP generator under control of T7 promoter
BBa_J100283BBa_J100283 Version 1 (Component)rClone Red with RBS: Device for GGA Cloning and Testing RBS elements and Riboswitches
eGFP-PTSBBa_K678017 Version 1 (Component)eGFP-PTS-module
BBa_K2116019BBa_K2116019 Version 1 (Component)RBS designed for sfgfp
BBa_K1725346BBa_K1725346 Version 1 (Component)<i>luxC</i> with optimised RBS for expression in <i>E. coli</i>
BBa_K1725349BBa_K1725349 Version 1 (Component)<i>luxE</i> with optimised RBS for expression in <i>E. coli</i>
BBa_K1725347BBa_K1725347 Version 1 (Component)<i>luxG</i> with optimised RBS for expression in <i>E. coli</i>
BBa_K1725348BBa_K1725348 Version 1 (Component)<i>luxD</i> with optimised RBS for expression in <i>E. coli</i>
BBa_K1725345BBa_K1725345 Version 1 (Component)<i>luxB</i> with optimised RBS for expression in <i>E. coli</i>
BBa_K1725344BBa_K1725344 Version 1 (Component)<i>luxA</i> with optimised RBS for expression in <i>E. coli</i>
eGFP-TSBBa_K678008 Version 1 (Component)eGFP-TS
BBa_K2144006BBa_K2144006 Version 1 (Component)Coding sequence for ESP with His6 and LPXTG-tag regulated by T7-promoter
BBa_K2144100BBa_K2144100 Version 1 (Component)Coding sequence for Nuclease with His6 and LPXTG-tag regulated by T7-promoter
BBa_K2144012BBa_K2144012 Version 1 (Component)Coding sequence for ESP with His6 and LPXTG-tag regulated by T7-promoter
BBa_K2144007BBa_K2144007 Version 1 (Component)Coding sequence for Defensin with His6 and LPXTG-tag regulated by T7-promoter
BBa_K091131BBa_K091131 Version 1 (Component)pLacIQ1 controlled GFP generator
BBa_K944002BBa_K944002 Version 1 (Component)Transcriptional Regulator for Cyanide Inducible Promoter
BBa_K1132042BBa_K1132042 Version 1 (Component)R1-pLac riboregulator switch with with pTET and pLac
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_K1431503BBa_K1431503 Version 1 (Component)Upstream Activation Sequence(UAS) bind to the GAL4 protein and then activate gene transcription
BBa_K1431501BBa_K1431501 Version 1 (Component)Upstream Activation Sequence(UAS) bind to the GAL4 protein and then activate gene transcription
BBa_K1431502BBa_K1431502 Version 1 (Component)Upstream Activation Sequence(UAS) bind to the GAL4 protein and then activate gene transcription
BBa_J176091BBa_J176091 Version 1 (Component)HPK-10xGal4-CFP
BBa_K364146BBa_K364146 Version 1 (Component)Zinc Finger Protein CTG
BBa_K364123BBa_K364123 Version 1 (Component)Zinc Finger Protein GGC