Department of Chemistry, La Trobe Institute for Molecular Science, La Trobe University, Bundoora, Victoria (Australia).
Chembiochem. 2013 Sep 2;14(13):1564-72. doi: 10.1002/cbic.201300351. Epub 2013 Aug 8.
We have used computational methods to improve the affinity of a foldamer ligand for its target protein. The effort began with a previously reported α/β-peptide based on the BH3 domain of the proapoptotic protein Puma; this foldamer binds tightly to Bcl-x(L) but weakly to Mcl-1. The crystal structure of the Puma-derived α/β-peptide complexed to Bcl-x(L) was used as the basis for computational design of variants intended to display improved binding to Mcl-1. Molecular modelling suggested modification of three α residues of the original α/β backbone. Individually, each substitution caused only a modest (4- to 15-fold) gain in affinity; however, together the three substitutions led to a 250-fold increase in binding to Mcl-1. These modifications had very little effect on affinity for Bcl-x(L). Crystal structures of a number of the new α/β-peptides bound to either Mcl-1 or Bcl-x(L) validated the selection of each substitution. Overall, our findings demonstrate that structure-guided rational design can be used to improve affinity and alter partner selectivity of peptidic ligands with unnatural backbones that bind to specific protein partners.
我们已经使用计算方法来提高折叠体配体与其靶蛋白的亲和力。这项工作始于先前报道的基于促凋亡蛋白 Puma 的 BH3 结构域的 α/β-肽;这种折叠体与 Bcl-x(L) 结合紧密,但与 Mcl-1 结合较弱。Puma 衍生的 α/β-肽与 Bcl-x(L) 形成复合物的晶体结构被用作设计旨在改善与 Mcl-1 结合的变体的计算设计基础。分子建模表明,原始α/β 主链的三个α 残基需要进行修饰。单独来看,每个取代只导致亲和力适度(4 到 15 倍)增加;然而,这三个取代导致与 Mcl-1 的结合增加了 250 倍。这些修饰对 Bcl-x(L) 的亲和力影响很小。与 Mcl-1 或 Bcl-x(L) 结合的许多新的α/β-肽的晶体结构验证了每个取代的选择。总的来说,我们的发现表明,结构导向的合理设计可用于提高具有非天然骨架的肽配体与特定蛋白质配体结合的亲和力,并改变其伴侣选择性。