Winter Anja, Kämäräinen Outi, Hofmann Andreas
Institute of Structural and Molecular Biology, School of Biological Sciences, The University of Edinburgh, Scotland, United Kingdom.
Proteins. 2007 Jul 1;68(1):353-62. doi: 10.1002/prot.21355.
Prohibitins comprise a family of highly conserved ubiquitous eukaryotic proteins that mainly localize to the mitochondria. They have been implicated in important cellular processes such as cellular signaling and transcriptional control, apoptosis, cellular senescence, and mitochondrial biogenesis. Using molecular modeling techniques, we have generated structural models of human prohibitins BAP32 and BAP37, which have previously been shown to exist as large ringlike oligomers in the membrane-bound state. The middle domain of prohibitins is evolutionary conserved in the family of SPFH (PHB) domain proteins. On the basis of the known structure of flotillin-2, another member of the SPFH-domain family, we have generated homology models for BAP32 and BAP37, and elucidated the implications for formation of high molecular weight oligomers. A model for the dimeric-building block of BAP32: BAP37 for such assemblies was generated and its stability scrutinized by molecular dynamics simulations. The model of BAP32 was also analyzed as to potential ligand-binding sites and the previously identified ligand melanogenin was docked into a membrane-proximal cavity. The results are discussed in the context of prohibitin interactions with mitochondrial AAA-proteases and we suggest two possible interaction interfaces between the BAP32:BAP37 building block and the protease.
禁止素是一类高度保守的普遍存在于真核生物中的蛋白质家族,主要定位于线粒体。它们参与了重要的细胞过程,如细胞信号传导和转录控制、细胞凋亡、细胞衰老以及线粒体生物发生。利用分子建模技术,我们构建了人类禁止素BAP32和BAP37的结构模型,此前已证明它们在膜结合状态下以大环状寡聚体形式存在。禁止素的中间结构域在SPFH(PHB)结构域蛋白家族中是进化保守的。基于SPFH结构域家族的另一个成员flotillin-2的已知结构,我们构建了BAP32和BAP37的同源模型,并阐明了其对形成高分子量寡聚体的影响。生成了用于此类组装的BAP32:BAP37二聚体构建模块的模型,并通过分子动力学模拟对其稳定性进行了研究。还分析了BAP32模型的潜在配体结合位点,并将先前鉴定的配体黑素原对接至膜近端腔中。在禁止素与线粒体AAA蛋白酶相互作用的背景下讨论了结果,我们提出了BAP32:BAP37构建模块与蛋白酶之间的两个可能的相互作用界面。