Published February 14, 2025 | Version v1 Dataset Open A Cysteine-Less and Ultra-Fast Split Intein Rationally Engineered from Being Aggregation-Prone to Highly Efficient in Protein trans-Splicing Authors/Creators Humberg, Christoph1, 2 Dörner, Wolfgang1, 2 Mootz, Henning1, 2 Show affiliations 1. Universität Münster, Fachbereich 12 Chemie und Pharmazie 2. Universität Münster Contributors Researcher (3): Humberg, Christoph1, 2 Dörner, Wolfgang1, 2 Mootz, Henning1, 2 Show affiliations 1. Universität Münster, Fachbereich 12 Chemie und Pharmazie 2. Universität Münster Description Split inteins catalyze protein trans-splicing by ligating their extein sequences while undergoing self-excision, enabling diverse protein modification applications. However, many purified split intein precursors exhibit partial or no splicing activity for unknown reasons. The Aes123 PolB1 intein, a representative of the rare cysteine-less split inteins, is of particular interest due to its resistance to oxidative conditions and orthogonality to thiol chemistries. In this work, we identify β-sheet-dominated aggregation of its N-terminal intein fragment as the origin of its low (~30%) splicing efficiency. Using computational, biochemical, and biophysical analyses, we characterize the fully active monomeric fraction and pinpoint aggregation-prone regions. Supported by a crystal structure, we design stably monomeric mutants with nearly complete splicing activity. The optimized CLm intein (Cysteine-Less and monomeric) retains the wild-type's ultra-fast reaction rate and serves as an efficient, thiol-independent protein modification tool. We find that other benchmark split inteins show similar precursor aggregation, suggesting that this general phenomenon arises from the intrinsic challenge to maintain the precursor in a partially disordered state while promoting stable folding upon fragment association. Files Files (17.5 GB) Name Size Download all 230314_RAW1_CH148_DTD-AesN_trypsin_in-gel_2sec.mz5 md5:4df93d9882512cfbe39e45222d4d250e 1.8 GB Download 230314_RAW1_CH271_MDTD-AesN-AesC_trypsin_in-gel_2sec.mz5 md5:22e6f6148311166927ab6ed285b551e8 1.8 GB Download 230314_RAW2_CH148_DTD-AesN_trypsin_in-gel_2sec.mz5 md5:58753373b338ed5a18b47aead581536f 1.8 GB Download 230314_RAW2_CH271_MDTD-AesN-AesC_trypsin_in-gel_2sec.mz5 md5:91fec5b96c842e659b94560ad72ae90a 1.8 GB Download 230422_RAW3_CH148_DTD-AesN_trypsin_in-gel_2sec.mz5 md5:e914cb0567cecc2dff2d37c287c5d5c0 1.6 GB Download 230422_RAW3_CH271_MDTD-AesN-AesC_trypsin_in-gel_2sec.mz5 md5:73d0e14c7a2c1311fee035b615374e02 1.7 GB Download 230422_RAW4_CH148_DTD-AesN_trypsin_in-gel_2sec.mz5 md5:21686926e7dba9f4348274087e9428de 1.7 GB Download 230422_RAW4_CH271_MDTD-AesN-AesC_trypsin_in-gel_2sec.mz5 md5:e6fda7e09a006db09db88dff3903caa3 1.8 GB Download 230422_RAW5_CH148_DTD-AesN_trypsin_in-gel_2sec.mz5 md5:e69080b9735490fbba154a1eddde92b1 1.9 GB Download 230422_RAW5_CH271_MDTD-AesN-AesC_trypsin_in-gel_2sec.mz5 md5:4b3907d1f550f49b0686497eb697bc18 1.7 GB Download Additional details Additional titles Subtitle LC-MS Raw Data of the Carbene Footprinting Funding Deutsche Forschungsgemeinschaft MO1073/6-2 Deutsche Forschungsgemeinschaft MO1073/9-1 Dates Created 2025 Collected 2023-03-14/2023-04-22