Keller Rob C A
Section Chemistry, Charlemagne College, Wilhelminastraat 13-15, 6524 AJ, Nijmegen, The Netherlands.
3 Biotech. 2015 Dec;5(6):1041-1051. doi: 10.1007/s13205-015-0310-9. Epub 2015 May 23.
Over the last two decades, an impressive progress has been made in the identification of novel factors in the translocation machineries of the mitochondrial protein import and their possible roles. The role of lipids and possible protein-lipids interactions remains a relatively unexplored territory. Investigating the role of potential lipid-binding regions in the sub-units of the mitochondrial motor might help to shed some more light in our understanding of protein-lipid interactions mechanistically. Bioinformatics results seem to indicate multiple potential lipid-binding regions in each of the sub-units. The subsequent characterization of some of those regions in silico provides insight into the mechanistic functioning of this intriguing and essential part of the protein translocation machinery. Details about the way the regions interact with phospholipids were found by the use of Monte Carlo simulations. For example, Pam18 contains one possible transmembrane region and two tilted surface bound conformations upon interaction with phospholipids. The results demonstrate that the presented bioinformatics approach might be useful in an attempt to expand the knowledge of the possible role of protein-lipid interactions in the mitochondrial protein translocation process.
在过去二十年中,线粒体蛋白导入转运机制中新型因子的鉴定及其可能作用方面取得了令人瞩目的进展。脂质的作用以及可能的蛋白质 - 脂质相互作用仍是一个相对未被探索的领域。研究线粒体马达亚基中潜在脂质结合区域的作用,可能有助于从机制上进一步阐明我们对蛋白质 - 脂质相互作用的理解。生物信息学结果似乎表明每个亚基中存在多个潜在脂质结合区域。随后对其中一些区域进行的计算机模拟表征,为深入了解这种有趣且重要的蛋白质转运机制部分的功能机制提供了线索。通过使用蒙特卡罗模拟,发现了这些区域与磷脂相互作用的方式细节。例如,Pam18 含有一个可能的跨膜区域,与磷脂相互作用时会出现两种倾斜的表面结合构象。结果表明,所提出的生物信息学方法可能有助于扩展我们对蛋白质 - 脂质相互作用在线粒体蛋白质转运过程中可能作用的认识。