Tydings Claiborne W, Meiler Jens, Walker Allison S
Department of Chemistry, Center for Structural Biology, Institute of Chemical Biology, Vanderbilt University, Nashville, Tennessee, USA.
Department of Pharmacology, Center for Structural Biology, Institute of Chemical Biology, Center for Applied Artificial Intelligence in Protein Dynamics, Vanderbilt University, Nashville, Tennessee, USA.
Protein Sci. 2025 Sep;34(9):e70252. doi: 10.1002/pro.70252.
Lanthipeptides are a class of thioether-containing ribosomally synthesized and post-translationally modified peptides, which often have antibiotic activity. As a potential starting point for therapeutics, interest in engineering lanthipeptides is growing. Our inability to computationally model and design lanthipeptides in molecular modeling and design software such as Rosetta limits our ability to rationally design lanthipeptides for drug discovery campaigns. We propose that implementing support for the lanthionine rings and dehydrated amino acids found in lanthipeptides will enable accurate lanthipeptide modeling with Rosetta. We find that when compared to the ensembles of lanthipeptides with NMR-determined structures in the PDB, lanthipeptide ensembles generated with Rosetta have similar experimental agreement, lower Rosetta energy scores, and greater flexibility. Our use of ensemble-averaged NOE distances instead of requiring individual structures to satisfy all NOE restraints was key for revealing the flexibility of these peptides. Our Rosetta lanthipeptide ensembles show increased flexibility in non-cyclized peptide regions as well as increased lanthionine ring flexibility when internal hydrogen bonds are absent and glycine residues are present. Support for lanthipeptides in Rosetta enables the design and modeling of lanthipeptides in Rosetta for therapeutic development.
羊毛硫肽是一类含硫醚的核糖体合成及翻译后修饰的肽,通常具有抗生素活性。作为治疗药物的潜在起点,对羊毛硫肽进行工程改造的兴趣与日俱增。我们无法在诸如Rosetta等分子建模和设计软件中对羊毛硫肽进行计算建模和设计,这限制了我们为药物研发项目合理设计羊毛硫肽的能力。我们提出,在Rosetta中实现对羊毛硫肽中存在的丙氨酸环和脱水氨基酸的支持,将能够用Rosetta对羊毛硫肽进行精确建模。我们发现,与PDB中具有NMR确定结构的羊毛硫肽集合相比,用Rosetta生成的羊毛硫肽集合具有相似的实验一致性、更低的Rosetta能量得分以及更大的灵活性。我们使用集合平均的NOE距离,而不是要求单个结构满足所有NOE限制,这是揭示这些肽灵活性的关键。我们的Rosetta羊毛硫肽集合在非环化肽区域显示出更大的灵活性,并且当不存在内部氢键且存在甘氨酸残基时,丙氨酸环的灵活性也增加。Rosetta中对羊毛硫肽的支持能够在Rosetta中进行羊毛硫肽的设计和建模,以用于治疗药物开发。