Division of Structural Biology, Wellcome Trust Centre for Human Genetics, University of Oxford, Roosevelt Drive, Oxford, OX3 7BN, UK.
Cell Mol Life Sci. 2013 Jun;70(12):2083-98. doi: 10.1007/s00018-012-1153-8. Epub 2012 Sep 15.
Recent work on the MACPF/CDC superfamily of pore-forming proteins has focused on the structural analysis of monomers and pore-forming oligomeric complexes. We set the family of proteins in context and highlight aspects of their function which the direct and exclusive equation of oligomers with pores fails to explain. Starting with a description of the distribution of MACPF/CDC proteins across the domains of life, we proceed to show how their evolutionary relationships can be understood on the basis of their structural homology and re-evaluate models for pore formation by perforin, in particular. We furthermore highlight data showing the role of incomplete oligomeric rings (arcs) in pore formation and how this can explain small pores generated by oligomers of proteins belonging to the family. We set this in the context of cell biological and biophysical data on the proteins' function and discuss how this helps in the development of an understanding of how they act in processes such as apicomplexan parasites gliding through cells and exiting from cells.
最近对 MACPF/CDC 孔形成蛋白超家族的研究集中在单体和孔形成寡聚体复合物的结构分析上。我们将该蛋白家族置于背景中,并强调了其功能的某些方面,而直接将寡聚体与孔等同起来并不能解释这些方面。首先描述了 MACPF/CDC 蛋白在生命领域的分布,然后展示了如何根据它们的结构同源性来理解它们的进化关系,并重新评估了穿孔素形成孔的模型,特别是。我们还强调了表明不完全寡聚环(弧)在孔形成中的作用的数据,以及这如何可以解释属于该家族的蛋白的寡聚体产生的小孔。我们将这一情况置于这些蛋白功能的细胞生物学和生物物理数据的背景下,并讨论了这如何有助于理解它们在诸如疟原虫等锥虫在细胞中滑行和从细胞中逸出等过程中的作用。