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Grafting, Stripping and Stapling of Helical Peptides from the Dimerization Interface of ONFH-Related Bone Morphogenetic Protein-2

机译:腹腔相关骨形态发生蛋白-2二聚化界面的螺旋肽的嫁接,剥离和装订

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Transforming growth factor-/bone morphogenetic protein (TGF-/BMP) signaling plays a fundamental role in embryonic skeletal development and postnatal bone homeostasis. The signaling pivot protein BMP-2 belongs to the TGF- superfamily and has been implicated in the pathogenesis of osteonecrosis of femoral head (ONFH). The biologically functional BMP-2 is a homodimer that has two tightly packed cores at its dimerization interface; each core is defined by the intermolecular interaction between a helical arm from one monomer and a hydrophobic pocket from another monomer. Inhibition and disruption of BMP-2 dimerization have been recognized as an attractive therapeutic strategy against ONFH. Here, we investigate the self-binding behavior of helical arm-derived peptides to the BMP-2 dimerization interface. The native BMP-2 helical arm and its several grafted versions from BMP-4, BMP-6 and BMP-7 are stripped from the intact dimerization interface to generate a number of isolated helical peptides. Computational simulations demonstrate that the stripping does not substantially influence the direct intermolecular interaction between BMP-2 monomer and these helical peptides or desolvation effect upon the interaction. However, the C-terminus of stripped peptides is found to have an intrinsic disorder and large flexibility in the isolated state, which would impair the rebinding of stripped peptides to BMP-2. Next, we rationally design a hydrocarbon bridge across the C-terminal residues 65 and 69 of helical peptides, which can effectively constrain peptide conformational flexibility in the isolated state, thus considerably promoting the binding potency of stripped helical peptides. Circular dichroism (CD) spectroscopy reveals that the peptide helicity increases from 51.8 to 67.9% upon hydrocarbon stapling. Fluorescence polarization assays substantiate that, as designed, the stapling can convert these helical peptides from weak binders to moderate or good binders of BMP-2 protein; their K-d values are improved by up to similar to fourfold.
机译:转化生长因子/骨形态发生蛋白(TGF-/ BMP)信号传导在胚胎骨骼发育和产后骨稳态中起着重要作用。信号枢轴蛋白BMP-2属于TGF-超家族,并且涉及股骨头骨折的发病机制(ONFH)。生物功能性BMP-2是同型二聚体,其在其二聚化界面处具有两个紧密堆叠的核心;每个核心由螺旋臂之间的分子间相互作用与来自另一种单体的疏水袋来定义。 BMP-2二聚化的抑制和破坏已被认为是针对ONFH的有吸引力的治疗策略。在这里,我们研究了螺旋臂衍生的肽对BMP-2二聚化界面的自绑定行为。来自BMP-4,BMP-6和BMP-7的本地BMP-2螺旋臂及其几种接枝版本从完整的二聚化界面中剥离,以产生许多分离的螺旋肽。计算模拟表明,剥离基本上不会影响BMP-2单体和这些螺旋肽或脱酚对相互作用的直接分子间相互作用。然而,发现剥离肽的C-末端具有固有的病症和分离状态的巨大柔韧性,这将损害剥离肽对BMP-2的重新剥离。接下来,我们理性地设计横跨螺旋肽的C末端残留物65和69的烃桥,其可以有效地限制在分离状态中的肽构象灵活性,从而显着促进剥离螺旋肽的结合效力。圆形二色性(CD)光谱揭示肽螺旋在碳氢化合物装订时从51.8增加到67.9%。荧光偏振测定证实,如所设计的那样,缝合可以将这些螺旋肽从弱粘合剂转化为BMP-2蛋白的中等或良好粘合剂;它们的K-D值最多可提高到类似于四倍。

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