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Showing 1 - 9 of 9 result(s)



Public
BBa_K1362251
BBa_K1362251 Version 1 (Component)
Intein protease
Public
CWE
BBa_K1362433 Version 1 (Component)
CWE (extein)
Public
RGK
BBa_K1362434 Version 1 (Component)
RGK (extein)
Public
BBa_K1362050
BBa_K1362050 Version 1 (Component)
Intein protease - T7RBS-His-SspDnaBC
Public
BBa_K1362051
BBa_K1362051 Version 1 (Component)
Intein protease with arabinose inducible regulatory promoter/ repressor araC-Pbad-T7RBS-His-SspDnaBC
Public
BBa_K1362444
BBa_K1362444 Version 1 (Component)
GGG linker with RGK (extein)
Public
BBa_K1362460
BBa_K1362460 Version 1 (Component)
RGK (extein)
Public
BBa_K1362466
BBa_K1362466 Version 1 (Component)
Intein protease extein
Public
Intein_assisted_Bisection_Mapping
Intein_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.
Showing 1 - 9 of 9 result(s)