Department of Biochemistry, University of Zurich, 8057 Zurich, Switzerland.
Department of Biochemistry, University of Zurich, 8057 Zurich, Switzerland.
J Struct Biol. 2014 Feb;185(2):147-62. doi: 10.1016/j.jsb.2013.07.012. Epub 2013 Aug 3.
Several binding scaffolds that are not based on immunoglobulins have been designed as alternatives to traditional monoclonal antibodies. Many of them have been developed to bind to folded proteins, yet cellular networks for signaling and protein trafficking often depend on binding to unfolded regions of proteins. This type of binding can thus be well described as a peptide-protein interaction. In this review, we compare different peptide-binding scaffolds, highlighting that armadillo repeat proteins (ArmRP) offer an attractive modular system, as they bind a stretch of extended peptide in a repeat-wise manner. Instead of generating each new binding molecule by an independent selection, preselected repeats - each complementary to a piece of the target peptide - could be designed and assembled on demand into a new protein, which then binds the prescribed complete peptide. Stacked armadillo repeats (ArmR), each typically consisting of 42 amino acids arranged in three α-helices, build an elongated superhelical structure which enables binding of peptides in extended conformation. A consensus-based design approach, complemented with molecular dynamics simulations and rational engineering, resulted in well-expressed monomeric proteins with high stability. Peptide binders were selected and several structures were determined, forming the basis for the future development of modular peptide-binding scaffolds.
已经设计了几种不基于免疫球蛋白的结合支架作为传统单克隆抗体的替代品。其中许多是为结合折叠蛋白而开发的,但细胞信号转导和蛋白质运输网络通常依赖于结合蛋白质的未折叠区域。这种结合可以很好地描述为肽-蛋白质相互作用。在这篇综述中,我们比较了不同的肽结合支架,强调了类骨质蛋白重复蛋白 (ArmRP) 提供了一个有吸引力的模块化系统,因为它们以重复的方式结合伸展的肽段。与其通过独立选择生成每个新的结合分子,不如设计预先选择的重复序列 - 每个重复序列与靶肽的一部分互补 - 并根据需要将其组装到新的蛋白质中,然后该蛋白质结合规定的完整肽。堆叠的类骨质蛋白重复序列 (ArmR),每个通常由排列在三个 α-螺旋中的 42 个氨基酸组成,形成一个长的超螺旋结构,使伸展构象的肽能够结合。基于共识的设计方法,辅以分子动力学模拟和合理的工程设计,得到了表达良好的单体蛋白,具有很高的稳定性。选择了肽结合物,并确定了几个结构,为模块化肽结合支架的未来发展奠定了基础。