Bioinformatics Institute, ASTAR (Agency for Science, Technology and Research), Biopolis, Singapore, Singapore.
PLoS One. 2012;7(8):e43985. doi: 10.1371/journal.pone.0043985. Epub 2012 Aug 31.
Atomistic simulations of a set of stapled alpha helical peptides derived from the BH3 helix of MCL-1 (Stewart et al. (2010) Nat Chem Biol 6: 595-601) complexed to a fragment (residues 172-320) of MCL-1 revealed that the highest affinity is achieved when the staples engage the surface of MCL-1 as has also been demonstrated for p53-MDM2 (Joseph et al. (2010) Cell Cycle 9: 4560-4568; Baek et al. (2012) J Am Chem Soc 134: 103-106). Affinity is also modulated by the ability of the staples to pre-organize the peptides as helices. Molecular dynamics simulations of these stapled BH3 peptides were carried out followed by determination of the energies of interactions using MM/GBSA methods. These show that the location of the staple is a key determinant of a good binding stapled peptide from a bad binder. The good binder derives binding affinity from interactions between the hydrophobic staple and a hydrophobic patch on MCL-1. The position of the staple was varied, guiding the design of new stapled peptides with higher affinities.
对一组源自 MCL-1(Stewart 等人,(2010)Nat Chem Biol 6:595-601)BH3 螺旋的订书肽的原子模拟与 MCL-1 片段(残基 172-320)复合物进行了研究,结果表明,当订书钉与 MCL-1 表面结合时,亲和力最高,这与 p53-MDM2(Joseph 等人,(2010)Cell Cycle 9:4560-4568;Baek 等人,(2012)J Am Chem Soc 134:103-106)的研究结果一致。订书钉的预组织肽的能力也调节了亲和力。对这些订书肽进行了分子动力学模拟,然后使用 MM/GBSA 方法测定了相互作用的能量。结果表明,订书钉的位置是区分良好结合肽和不良结合肽的关键决定因素。良好的结合肽从疏水订书钉与 MCL-1 上的疏水斑块之间的相互作用中获得结合亲和力。改变了订书钉的位置,指导设计具有更高亲和力的新型订书肽。