1.Sekar G, Stevens A, Mostafavi A, Sashi P, Muir T, Cowburn D. A Conserved Histidine Residue Drives Extein Dependence in an Enhanced Atypically Split Intein. J Am Chem Soc. 2022;144(41):19196–19203. PMID: 36194550 Reference Link
1.Stevens A, Sekar G, Gramespacher J, Cowburn D, Muir T. An Atypical Mechanism of Split Intein Molecular Recognition and Folding. J Am Chem Soc. 2018;140(37):11791–11799. PMCID: PMC7232844 Reference Link
1.Gramespacher J, Burton A, Guerra L, Muir T. Proximity Induced Splicing Utilizing Caged Split Inteins. J Am Chem Soc. 2019;141(35):13708–13712. PMCID: PMC6903685 Reference Link
1.Gramespacher J, Stevens A, Nguyen D, Chin J, Muir T. Intein Zymogens: Conditional Assembly and Splicing of Split Inteins via Targeted Proteolysis. J Am Chem Soc. 2017;139(24):8074–8077. PMCID: PMC5533455 Reference Link
1.Bradley L, Kleiner R, Wang A, Hecht M, Wood D. An intein-based genetic selection allows the construction of a high-quality library of binary patterned de novo protein sequences. Protein Eng Des Sel. 2005;18(4):201–7. PMID: 15849217 Reference Link
1.Gramespacher J, Stevens A, Thompson R, Muir T. Improved protein splicing using embedded split inteins. Protein Sci. 2018;27(3):614–619. PMCID: PMC5818749 Reference Link
1.Stevens A, Sekar G, Shah N, Mostafavi A, Cowburn D, Muir T. A promiscuous split intein with expanded protein engineering applications. Proc Natl Acad Sci U S A. 2017;114(32):8538–8543. PMCID: PMC5559002 Reference Link
1.Stevens A, Brown Z, Shah N, Sekar G, Cowburn D, Muir T. Design of a Split Intein with Exceptional Protein Splicing Activity. J Am Chem Soc. 2016;138(7):2162–5. PMCID: PMC4894280 Reference Link